UWinChem

Showing posts with label research. Show all posts
Showing posts with label research. Show all posts

Tuesday, July 3, 2018

Chemistry research centre to build on strengths in organic materials

Chemistry research centre to build on strengths in organic materials
Three researchers will head up a new Functional Organic Materials Research Centre with grants totaling $700,000 from the Canada Foundation for Innovation(CFI), the Ontario Research Fund and contributions from industry partners.
The centre will allow chemistry and biochemistry professors Tricia Carmichael, John Trant, and Simon Rondeau-Gagné to expand on their current research into designing and synthesizing new organic materials to create wearable electronics, stretchable transistors, and highly specified drug delivery methods.
“This supports the infrastructure we already have in place, and provides new and essential instrumentation that will bolster our ability to do leading edge research,” says Dr. Trant.
Dr. Carmichael is a leader in stretchable electronic devices. This centre will give her new tools to characterize electrically functional materials and devices for stretchable and wearable electronics applications, and she says this new infrastructure will create a world-class interdisciplinary facility.
“The research we can now pursue will lead to new innovative materials for use in the rapidly growing wearable electronics market, ‘smart’ drug-delivery technologies and biomedical devices, as well as new self-healing materials,” says Carmichael.
Synthetic chemist Trant investigates triggerable drug delivery devices to help fight cancer and certain autoimmune diseases. He says this infrastructure is necessary to move forward on this research, which includes designing chemotherapy drug delivery methods that would target cancer cells and avoid healthy cells.
“I will get a custom-built peptide synthesizer — which is essentially a robot that makes peptides,” says Trant. “This made-to-order robot will be designed specifically to work with unnatural, high-value amino acids and allow ready recovery of them and will be the first of its type in the world.”
Dr. Rondeau-Gagne’s lab uses materials to build new types of transistors needed for innovative bio-electronics. He requires specialized tools to measure difficult-to-define polymers.
“We are designing the centre to be able to create new biomaterials and polymers to go from design, to preparation at large scale, and get to the final application in electronics,” says Rondeau-Gagné.
“The centre is the connection between all our capabilities and this is about delivering innovative, final applications with state-of-the-art materials. It is why we call it functional materials, because it won’t give us just the capabilities of working with our research program, but also to expand and really get that materials expertise.”
Dean of science Chris Houser says with recent strategic research hires, the University of Windsor has attained a critical mass of researchers focusing on organic materials, which makes it one of the strongest departments in Canada in this field. Together with this new research centre, they can start training the next generation of materials scientists.
“This builds momentum with research, but with Science UWindsor’s commitment to undergraduate training, we are also going to have undergrads working with this state-of-the-art equipment so that when they graduate, they will have worked with the absolute top line in equipment and materials science methods,” says Dr. Houser.
“This also makes us highly competitive, with researchers around the province, the country, and even from Michigan, wanting to come and use this equipment.”
The centre will be housed in the Faculty of Science’s new research facility and will be divided into two major biomaterials and bioelectronics platforms, and includes advanced instrumentation such as a custom-built peptide synthesizer, an ultra-high-temperature gel permeation chromatography system, and a cutting-edge transistor fabrication station.

Sara Elliott
For the original story, please visit:

Wednesday, April 4, 2018

Undergrad research success at the Southern Ontario Undergraduate Student Chemistry Conference (SOUSCC)

Undergrad research success at the Southern Ontario Undergraduate Student Chemistry Conference (SOUSCC)

Leslie Ventimiglia, Greg Yousif, Louae Abdulla, Matthew McLaughlin, Kacper Wojtkiewicz, Max Nascimento, Kathy Nguyen, Calum Noade, Blake St. Onge, Galen Suh, Brett Rickeard, Adam Altenhof, and Fatima Naveed represented the Chemistry and Biochemistry undergraduate researchers at the 46th Southern Ontario Undergraduate Student Chemistry Conference at Wilfred Laurier University on March 24, 2018.

https://www.fourwav.es/view/513/info/

Congratulations to the following award winners:

Kathy Nguyen (4th place, Inorg. and Mater. Chem.)
Matthew McLaughlin (3rd place, Inorg. and Mater. Chem.)
Greg Yousif (2nd place, Gen. Chem.)

and to all of our undergrads for presenting their research.

Reminder: Senior Undergraduate Thesis Presentations (59-410) will be taking place on April 23-24, 2018 (more information to come).



Wednesday, January 3, 2018

You should hire an undergrad for your lab - by Prof. John Trant

You should hire an undergrad for your lab
Undergraduate colleagues make you a better researcher and teacher. Here’s how.
By JOHN TRANT | DEC 29 2017

Read Prof. John Trant's article at the University Affairs web site!

https://www.universityaffairs.ca/opinion/in-my-opinion/hire-undergrad-lab/




Thursday, October 26, 2017

Biochemist to study how proteins contribute to neurodegenerative diseases

Biochemist to study how proteins contribute to neurodegenerative diseases


UWindsor biochemistry graduate student Cody Caba and professor Bulent Mutus display the crystal structure of protein disulfide isomerase. Mutus received an NSERC Discovery Grant to examine cell proteins and structures and how they contribute to diseases.

Bulent Mutus is a micro mechanic.

But instead of fixing cars with wrenches and grease, the biochemist rolls up his sleeves and chops up and rebuilds proteins using microscopes and Petri dishes.

“If this enzyme were a car we would know where the engine is, but now we are looking at turning that engine off so the pathology will go away,” the UWindsor professor said.

Dr. Mutus recently received a $100,000 Discovery Grant over five years from the Natural Sciences and Engineering Research Council of Canada (NSERC) to examine cell proteins and structures and how they contribute to diseases like cystic fibrosis and Alzheimer’s.

The human body is made up of about 10 trillion cells that intricately interact with one another to ensure the body functions properly. When cell-to-cell and internal cell signaling is disturbed, the body cannot function properly, and acute diseases and physiological or neurological disorders occur.

“It’s similar to a teeter-totter, wherein a normal situation everything is balanced,” Mutus explained.

Every cell contains strings of amino acid molecules that fold onto themselves, forming structures called proteins.


The crystal structure of protein disulfide isomerase is pictured in this computer visualization. 

“If there’s something that messes up the balance within the cell, then the proteins don’t fold properly, and you get something called unfolded protein response,” he said.

Diseases reactive to the unfolded protein response include Alzheimer’s, Parkinson’s and Huntington’s — as well as many others.

Proteins are encoded from DNA instructions and form in ways that allow them to combine with other substrates to perform work. When proteins do work, they are called enzymes and help the body to function properly.

Mutus’ NSERC research focuses on a sequence of amino acids containing sulfur, called cysteine amino acids, and the role they play in the regulation of enzymes. In the sequence, called the CXXC motif, two amino acids represented by the letter C for cysteine, are separated by any other two of the 23 amino acids, which are represented by X. These cysteine amino acids have a sulfur group that often binds to itself to create a stronger bond or fold within the protein structure.

Mutus said the sequence affects structure which in turn affects the function, and so improper sequences or structures can cause harmful pathologies in the body.

“Structure is related to function, and so if you build a building and you don’t have any doors it’s not going to be very functional,” the researcher said. “The same goes with a protein, and if a sequence works well in one particular protein, then it’s copied and repeatedly used somewhere else.”

By studying this CXXC protein sequence and its function in various cellular pathways, researchers can develop therapies to treat diseases caused by improper function.

Mutus’ lab has created probes that will bind to CXXC enzymes within the cells which can be followed to see their functions in internal cellular pathways.

He said an example of this is found in patients with cystic fibrosis. Within these patients, an enzyme called S-Nitrosoglutathione Reductase (GSNOR) is unable to form at appropriate levels in the lungs and can’t function in ion transport.

“If that ion transport protein can’t mature and enter into the cell membrane where it belongs, then fluid essentially starts to accumulate in the lungs and leads to infections,” Mutus said. “So if an enzyme contains this CXXC motif, and we think we can tweak onto something that’s a very small run of four or five amino acids, where we can play with one of the amino acids and really regulate the enzyme, like turning a car engine on and off to control negative pathologies in the body.”

Mutus’ research will eventually have implications in drug design as a means of controlling these important enzymes involved in pathologies and diseases that may affect all of us.

See the full story at the UWindsor Daily News

Saturday, April 22, 2017

FINAL SCHEDULES - 59-410 4th Year Research Thesis Symposium - Apr. 25 & 26, 2017

Department of Chemistry and Biochemistry’s 4th Year Research Thesis Symposium

Tues. April 25 and Wed. April 26, 2017
186 Essex Hall
8:55 am - 4:00 pm each day

Undergraduates, graduate students, faculty, staff, friends and family are all welcome!

The final schedule is below! (revision on Apr. 23/17, 11:40 AM)












Monday, March 20, 2017

ChemiConn, Chemical & Biochemical Connections Event

ChemiConn: Chemical & Biochemical Connections Event

Registration deadline: April 14, 2017

May 11, 2017 | 12:30 – 17:30 p.m.
University of Windsor, Ambassador Auditorium
401 Sunset Ave. Windsor, ON, N9B3P4

The Department of Chemistry and Biochemistry cordially invites you to join us for the ChemiConn, Chemical & Biochemical Connections Event 2017 at the University of Windsor Ambassador Auditorium. This event will offer you an opportunity to connect with several local, provincial, and national industries involved in various areas of chemical and biochemical sciences, and to learn more about their expertise and challenges.

Program highlights:
1) Several industrial participants from different areas of chemical and biochemical sciences to discuss R&D in industry, and related challenges.
2) A networking session and mixer to connect with researchers from Chemistry and Biochemistry and potential future employers.
3) Representatives from Federal and Provincial funding agencies to discuss various funding programs available for collaborative projects with academia.

To register, please visit www.chemiconn.wixsite.com/uwindsor or write to chemiconn@uwindsor.ca

* Smart, business casual dress expected

Registration deadline: April 14, 2017



Undergrad researchers attend SOUSCC

Undergrad researchers attend SOUSCC

This Year’s Southern Ontario Undergraduate Chemistry Conference (SOUSCC) was held at York University on Sat March 18. There was a total of 127 presentations (Analytical, 21; Bio/Med, 28; Computational, 12; Inorg/Materials, 22; Organic, 32; Phys, 12) from all the universities in Southern Ontario plus Laurentian U and Nipissing U.  



The brilliant undergraduate researchers that represented our Department were:

BRENT ST. ONGE
JOHNNY LUO
JESSE ROPAT
MITCHELL DIPASQUALE
ALEXA DICECCO
ROSE FAYOUMI
ADVAIT DESAI
GREG YOUSIF
MOHAMED HARB
AUSTIN PEACH
JACQUELINE GEMUS
NADIA STEPHANIUK
NATAN VEINBERG
AUSTIN LINDQUIST
MILOSZ BRZOZOWSKI

Faculty attendees: Loeb, Green and Mutus

Two of our students received prizes:

JACQUELINE GEMUS (Schurko Group)- 1st Prize Physical Chemisty
MITCHELL DIPASQUALE (Mutus Group)- 2nd Prize in Bio/Medicinal Chemistry

Congratulations to all!

Submitted by Bulent Mutus, Department Head

Saturday, March 18, 2017

University of Windsor professors exploring new frontier of stretchable electronics

University of Windsor professors exploring new frontier of stretchable electronics



In the thin layers of the polymers oozing out of a machine that looks an expensive version of an ink jet printer lays the next frontier of electronics.

The research being done into new synthetic polymers in Simon Rondeau-Gagne’s University of Windsor lab is the first step in creating wearable electronics.

“Probably in the next decade every object is going to be connected through the Internet,” said Rondeau-Gagne, who accepted an assistant chemistry professor’s position at Windsor last July after completing his post-doctoral work at Stanford University.

“There’s a want for smart electronics. Stretchable electronics will be an important piece of the Internet of things.

“Once we have a material that is stretchable, robust enough to take repeated use and can self-repair, the potential is whatever industry’s designers can imagine.”

Rondeau-Gagne is combining his expertise in designing synthetic materials with Professor Tricia Carmichael, who has already built an international reputation for her work in the stretchable electronics field.

Carmichael, a researcher at IBM’s headquarters in Armonk, New York before returning to her hometown in 2005, said the two research teams offer complimentary skill sets.

“My team’s strength is we’re good at building things and working with different materials and integrating them into stretchable electronics that are stable and maintain their functionality,” Carmichael said.

“Simon is an expert in synthetizing different materials and designing them for different functions.

“Together we can do stuff that no one has ever done before.”

Beyond smart clothing that could monitor in real time the body’s condition, Rondeau-Gagne envisions such possibilities as stretchable electronics helping restore the electrical impulse connections in a damaged spinal cord or new materials in car doors that self-repair after being dented.

“I think one of the emerging uses will be in elder care,” Carmichael said.

“It allows for constant monitoring of pulse, blood pressure, sweat or where they are,” said Carmichael, who oversees a team of nine student researchers.

“However, there are still huge challenges to doing all these things.”

The first step is for Rondeau-Gagne to find the right material.

Rondeau-Gagne said what his research team of six students is doing is akin to building a foundation for stretchable electronics.

“It’s like sci-fi stuff,” said Rondeau-Gagne, a native of Chicoutimi-Saguenay.

“The material I’m working with looks like ink, but when it’s solid it looks like blue plastic.

“It makes a film, but it’s only 40 Nano-millimeters thick.”
Rondeau-Gagne already has been successful in creating a polymer containing transistors that could be ‘re-healed’ with heat.

He hopes to soon finish developing self-healing materials that don’t require an outside stimulus to allow Carmichael to use her expertise in stretchable electronics.

“I believe within a year we’ll reach that point,” Rondeau-Gagne said.

“Tricia has a real expertise in these electronic devices and stretchable materials. She’s had great results already using rubber materials.”

Indeed Carmichael’s team has already created a new type of rubber. It’s clear and impermeable to gases and was modification of the rubber used for the inner tubing in car tires.

“What we were able to do is develop a transparent version of this material,” Carmichael said. “That means we make displays to use in it.”

However, the ultimate goal is to find a synthetic compound that is more stretchable, can take repeated use, self-repairs and can handle the heat produced by the transistors and circuitry embedded in it.

“We already have materials that can be stretched 100 per cent,” Rondeau-Gagne said.

“However, even if it can stretch 10,000 per cent, if it can’t be stretched more than a couple times without the circuit breaking, we can’t use it. There’s going to be pressure and stretching all the time with wearable electronics.”

Carmichael said the field of stretchable electronics is developing rapidly with the growing investment from major corporations and foundations.

“Simple demos (of stretchable electronics) are real,” Carmichael said.

“There’s a huge community who make wearable electronics by sewing things into their clothes. There’s already a cottage industry.

“I visited a wearable electronics company in Toronto making real products – sweat sensors for clothing. It’s coming.”


Thursday, September 1, 2016

NSERC Scholarship Information Session - Sept. 12, 2016 at 9 a.m.

NSERC Scholarship Information Session - Sept. 12, 2016 at 9 a.m.

ATTENTION:  4TH YEAR UNDERGRADUATE STUDENTS, MASTER'S AND PHD STUDENTS

If you are planning to apply for NSERC graduate scholarships/fellowships for next year (2017), please plan to attend the following information session:

Date:  Monday, September 12, 2016
Time:  9:00 a.m.
Location:  McPherson Lounge, Alumni Hall, 750 Sunset Avenue

This session will be an overview of the various scholarships available, including the Canada Graduate Scholarship (Master’s), Postgraduate Scholarships, and Postdoctoral Fellowships

In preparation for the session, please visit the NSERC website and view the resources available on-line (tutorials, videos), as follows:

Natural Science and Engineering Research Council (NSERC):
(Canadian or Permanent Residents only)




If you are unable to attend at this time, we will have the presentation materials available afterwards on our website (http://www.uwindsor.ca/grad).

Note that these scholarships are available only to Canadian citizens and Permanent Residents. 

Tuesday, July 26, 2016

Dr. Pandey is honoured for research in cancer therapeutics and neurodegeneration

Prof. Siyaram Pandey is to be honoured with “Mahatma Gandhi Pravasi Samman” at the House of Lords, London UK on Sept 30, 2016 by the Non Resident Indian (NRI) Welfare Society.





The Non-Resident Indians Welfare Society (NRI Welfare Society) of India was established with the noble objective of strengthening the interaction and bonds between India and Non-Resident Indians sprawling throughout the world strongly desire to see their motherland prosper and the common man should have better resources for bringing up his family. With this aim, thousands and thousands of NRIs have shown their readiness to make investments in India.

The Society organizes, seminars, conferences and symposia on national and International levels in different parts of the world and also honours NRI men and women from various parts of the world to recognize their work.

NRI Welfare society of India is organizing the Global Indian Summit in House of Lords, London, UK on 29-30 September and 1 October, 2016.

One of the highlight of the function will be presentation of Mahatma Gandhi Pravasi Samman at House of Lords, London, to those who have made India made Shine. These Awards will be presented to 25 Indians from all over the Globe.

Professor Pandey was nominated and has been selected for this honour for his outstanding achievements as a researcher in the area of cancer therapeutics and neurodegeneration. He will be presented with Mahatma Gandhi Pravasi Samman on Sept 30th 2016 at the Global Indian Summit in House of Lords, London UK.


Tuesday, June 21, 2016

Student success at CSC 2016 in Halifax

Student success at CSC 2016 in Halifax

Congratulations to the following students, who were awarded prizes for their presentations at the Canadian Society for Chemistry Conference in Halifax, NS:

Mitch Nascimento (Rawson group) - 1st place, poster, materials division
Stephanie Kosnik (Macdonald group) - 2nd place, poster, inorganic division
Yiting Chen (Carmichael group) - 2nd place,m oral presentation, materials - Xerox
Sarah Salloum (Eichhorn group) - Hon. mention, poster, organic division





Monday, April 4, 2016

Undergrad researchers win prizes at SOUSCC

Undergrad researchers win prizes at SOUSCC

Congratulations to this year’s participants at SOUSCC:  Kathleen Fontana, Sara Mechael,  Alexander Tang, Paul Meister, Dominque Leckie, Grace Teskey and Nathan Bazinski (left to right). Our students made us proud with their excellent presentations.


Three students were awarded prizes:

Materials Chemistry: (10 presentations; Prizes Available: 1st, 2nd, Honorable Mention)                                                                                                                                       Sara Mechel (Carmichael Lab)- 2nd Prize: Highly Stretchable Gold Films by Replica Molding Microstructure in PDMS

Kathleen Fontana (Mutus Lab)- Honorable Mention: Chitosan Derivatives For Wound Healing

Biological Chemistry: (15 presentations; Prizes Available, 1st 2nd, 3rd)

Grace Teskey (Pandey Lab)- 3rd Prize: The Anti-Cancer Activity of Hibiscus and Lemon Grass on U-937 Non-Hodgkin Lymphoma Cells 

For more information on the SOUSCC, visit: http://www.souscc2016.com/ 

Tuesday, January 5, 2016

Attention: Undergrads interested in summer research - NSERC USRA deadline is Thurs. Jan. 7, 2016

Attention: Undergrads interested in summer research
NSERC USRA deadline is Thurs. Jan. 7, 2016

You need to have a supervisor and they need to complete Form 202 Part 11.

A printed copy of the application (Form 202 Part 1), Department Ranking form (attached) and the official transcript, should be given to Marlene Bezaire, room #273-1 Essex Hall by January 7, 2015.

Please follow instructions provided by Faculty of Graduate Studies and submit applications to Marlene Bezaire, Essex Hall, Room 273-1.

Visit this link for more info:

http://www1.uwindsor.ca/chemistry/summer-research

Tuesday, November 24, 2015

CBC highlight: Pamela Ovadje recognized for anti-cancer work


Windsor's dandelion tea researcher Pamela Ovadje recognized for anti-cancer work
Pamela Ovadje was 'a little bit skeptical' that dandelions could have cancer-fighting properties


A post-doctoral fellow at the University of Windsor is being recognized for the work she has done investigating the anti-cancer properties of several natural extracts, including those of dandelions.

Pamela Ovadje will receive the Mitacs Award for Outstanding Innovation-Postdoctoral at a ceremony in Ottawa on Tuesday.

Mitacs is a non-profit organization that works with universities, governments and companies in Canada, to build partnerships to promote social and industrial innovation.



Close-up of a dandelion plant

Pamela Ovadje's research has examined the anti-cancer properties of several natural extracts, including dandelion roots. 

Ovadje told CBC Radio's Windsor Morning that the story of the work she has been doing tracks back to 2009.

"We had information from an oncologist, a collaborator here in Windsor, who had patients that showed improvement after taking dandelion-root tea," Ovadje told Windsor Morning.

"And so, with a phone call, we decided to start studying what was in this tea that made patients respond to it, so we started digging up dandelions."





Sunday, October 25, 2015

Windsor Research Spotlight - Stretching the Limit

NSERC Research Spotlight - Stretching the Limit

A research team at the University of Windsor has found that working with a problem, instead of against it, can result in incredible breakthroughs. Chemistry professor Tricia Carmichael and co-investigator Heather Filiatrault have successfully created stretchable electronics able to continue conducting electricity even after stretching to the point of cracking.

Stretchable light-emitting devices are the building blocks of foldable and expandable display screens and electronics-integrated clothing, as well as other soft devices designed to go inside a body, like a stretchable balloon catheter that can mend damaged areas of the heart.



“The dilemma with the design of these devices is that when we use electrically conductive materials, like aluminum or copper, these materials will crack when stretched even a minimal amount,” says Dr. Carmichael.

Stretchable electronics integrate a thin film of electrically conductive material with a film of rubber, but the conductive materials crack when they are stretched, which breaks the circuit and renders the device useless.

Carmichael and her lab team investigated the theory that when a rough surface is stretched it generates multiple micro-cracks, instead of a few large debilitating cracks. To manipulate the cracking, she simply added a layer of inexpensive white glue before the thin sheet of metal was attached.

“Instead of eliminating cracks, we encouraged a lot of cracking, like a spider web of cracks that don’t form a continuous pathway through the sheet,” says Carmichael. “The cracks purposefully interfere with each other, relieving the strain, so the current can flow along a jagged but continuous pathway.”

The glue layer is watered down to control the film thickness. It is spread over the rubber layer and creates the required roughness by forming blobs. Members of Carmichael’s lab built a strain sensor out of rubber, glue and gold and wrapped it around a thumb. The sensor successfully monitored when the digit was extended, and when it was not.

Carmichael says this is a low-cost, green solution, which uses simple components that could potentially scale up to larger surface devices.

“We made the system more defective in order to make it work better,” she says. “I love this concept of embracing the natural tendency of cracking, and then pushing it further.”


This research is published as the cover story in the September 30th edition of This link will take you to another Web site ACS Applied Materials & Interfaces

To see the original story on the NSERC web site, click here.

Mike Jaroszewicz awarded Marie Curie fellowship

Mike Jaroszewicz just completed his M.Sc. (Chemistry) at the University of Windsor under the supervision of Prof. Rob Schurko.  He is now heading to the Weizmann Institute in Rehovot, Israel to work on his Ph.D. in the research group of Prof. Lucio Frydman.

He has been awarded an Early Stage Researcher (ESR) Marie Curie fellowship under the framework of the H2020 Innovative Training Network (ITN) entitled “Europol”.  The approximate value of the fellowship is about 200000 CAD over 36 months.  We wish Mike all the best in his new position!


Friday, October 16, 2015

Chemistry grad turns in gold-medal doctoral performance

Chemistry grad turns in gold-medal doctoral performance

Soon after taking up graduate study, Nick Vukotic was drawn into sessions brainstorming a problem that had eluded his advisor Stephen Loeb—and others around the world—for years. Dr. Vukotic’s design solution led to a cover article in Nature Chemistry that is now ranked as the most-accessed article of May 2012 in any chemistry journal.


His creativity and problem-solving ability saw Vukotic complete his doctorate in chemistry with a grade average of 96 percent, earning him the Governor General’s Gold Medal for the highest academic standing at the graduate level among his cohort. He will receive the award during the first session of Convocation at the St. Denis Centre on Saturday, October 17.

Vukotic received his BSc in 2009, then began Master’s studies before early transfer to a PhD program. He received graduate scholarships from 2009 to 2014 and the Ontario Graduate Scholarship in 2009 and 2010; the NSERC Canada Graduate Master’s Scholarship in 2010 and 2011; and the NSERC Graduate Doctoral Scholarship from 2011 to 2014. He is the author of 16 publications in refereed journals and a book chapter. Four more manuscripts based on his work are currently in progress.

Serving a post-doctoral fellowship under the Ontario Centres of Excellence TalentEdge program, Vukotic works on the development of x-ray diffraction instrumentation for Proto Manufacturing.

See the original story on the UWindsor Daily News

Thursday, October 1, 2015

Besa Xhabija wins poster prize at the 10th Biannual Great Lakes Glia Meeting

The Vacratsis lab participated in the 10th Biannual Great Lakes Glia Meeting that took place on Sept 27-29th, 2015 in Traverse City, Michigan. Besa Xhabija was awarded the Best Poster Award, which carried a cash prize of $200.  Congratulations Besa!


Tuesday, September 1, 2015

UWindsor making strides in protecting waterways from toxic algae blooms

UWindsor making strides in protecting waterways from toxic algae blooms

UWindsor researcher Bulent Mutus has designed and built a filter that can remove potentially harmful phosphates from contaminated water. Phosphates are a naturally occurring mineral, but increased levels in waterways, will substantially reduce water quality.


Phosphates are found in sewage and used in detergents and commercial fertilizers, so runoff from these practices and industries, will throw off the chemical balance of streams, rivers and the lakes. An abundance of phosphates create a nutrient rich environment that can encourage massive growth of some plants and algae.

Mutus’ research project, Large Scale Total Phosphate Filtration System, received almost $160,000 from Environment Canada, Lake Simcoe Georgian Bay Clean-Up Fund (LSGBCUF), for a two-year project to build and test a large scale version of the filtration unit at the Holland Canal in the Holland Marsh, near Barrie Ontario.

“Our filtration technology is a simple and cost effective alternative to current methods,” says Dr. Mutus, biochemistry professor. “It uses inexpensive, environmentally safe methods to remove phosphorus from point sources such as municipal and agricultural wastewater.”

To read more, click here for the Daily News page

Monday, June 8, 2015

Advanced NMR Workshop June 10 and 11

Announcement Advanced NMR Workshop: June 10 and 11

To register click here

With the fume hoods down do you have nothing fun to do this week, how about some NMR:

Advanced NMR Workshop

Wednesday June 10 and Thursday June 11, 9am to noon each day

This advanced workshop is available to undergraduate students and/or graduate students/postdocs who have already taken the Introductory NMR Workshop or who have completed the third year Spectroscopic Structure Identification course (59-330/332) and who have demonstrated sufficient competence to the NMR Facility Manager. No experience in solid state NMR is required.


The workshop will briefly cover the physical theory behind the advanced NMR experiments but the focus will be on demonstrating the uses of these experiments and practical aspects of experimental set up .

The schedule will consist of a mixture of lectures and of hands-on sessions on the NMR spectrometers where participants will get the opportunity to set up experiments and collect data.

 The topics covered include:

  • DOSY
 
  • COSY 
  • 
NOESY/ROESY
 
  • HMQC/HMBC
 
  • Differences between solution and solid state NMR
 
  • Solid State NMR sample preparation
 
  • Magic-angle spinning – MAS (tuning the angle with KBr)
 
  • Cross-polarization (CP) MAS
 
  • Basic 1H and 13C SSNMR experiments 
  • 
Pulse field gradients
 
  • Shaped Pulses
 
  • Selective 1D NOESY
 
  • HOMODEC
 
  • DEPTQ



 
Enrolment is free but numbers are limited.



Registration can be done using the link below or at the Department of Chemistry and Biochemistry-NMR Facility webpage