UWinChem

Showing posts with label Simon Rondeau-Gagne. Show all posts
Showing posts with label Simon Rondeau-Gagne. Show all posts

Saturday, September 8, 2018

ChemBiochem internships to apply student knowledge

ChemBiochem internships to apply student knowledge

Undergraduate students studying chemistry or biochemistry will now have the opportunity to apply for a paid internship in their third year of study.

The new internship program will ensure that placements are relevant to each student’s interest, and will be a valuable asset for any students wanting to use their classroom knowledge to conduct research in a professional setting.

The program will also offer a job preparation module designed to help students create resumes, write cover letters, and prepare for interviews.


Chemistry and biochemistry students will get the chance to use knowledge attained in the classroom to conduct research in a professional setting.

“Students have come forward saying they want this real-life experience,” says Simon Rondeau-Gagné, assistant professor in the Department of Chemistry and Biochemistry, the first department in the Faculty of Science to offer a paid internship program.

“Students will now get to use their knowledge gained from inside the classroom within the context of the workplace.”

Dean of science Chris Houser says students become more employable when they get out of the classroom and experience hands-on research while working in the industry.

“We understand that a degree is important, but to succeed in today’s world you need to be a well-rounded individual with a background of related experience,” says Dr. Houser. “And this is what the new internship program will offer our students.”

While other schools have been offering co-op programs, most places offer multiple single-semester placements, each with a different employer.

“That type of program often does not allow for students to build a strong relationship with their employer,” says Dr. Rondeau-Gagné.

The offered internships are instead one single placement with the same employer over a longer period of time. This also means that companies will invest more time and effort into training students, which will lead to a stronger relationship between interns and their employers.

“This stronger relationship allows for a better training of the students directly in the workplace, ultimately helping them to enter the job market after completing their degree,” Rondeau-Gagné says.

The Department of Chemistry and Biochemistry is accepting applications through Monday, September 17. To learn more about the internship opportunity or submit an application, visit the program website.

—Darko Milenkovic

Original story:
http://www.uwindsor.ca/dailynews/2018-09-05/chembiochem-internships-apply-student-knowledge

Internship Program Website:
http://www.uwindsor.ca/coop-workplace-partnerships/335/chemistry-biochemistry-internship

Tags:
Simon Rondeau-Gagné
Chris Houser
Strategic Priority: 
Provide an exceptional undergraduate experience
Academic Area: 
Science
Chemistry & Biochemistry

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 11, 2018

Registration is open for ChemiConn 2018 - Deadline April 20, 2018

Registration is open for ChemiConn 2018  - Deadline April 20, 2018

Click below to register:
https://www.chemiconn.com/registration


Chemical and Biochemical Connections Event
May 10th, 2018 | 10:00 a.m. – 6:00 p.m.
at the Fogolar Furlan Windsor – Dante Costa Hall
1800 N Service Rd, Windsor, ON, N8W 1Y3

Department of Chemistry and Biochemistry cordially invites you to join us for the second annual Chemical and Biochemical Connections Event, ChemiConn 2018, to be held in the Dante Costa Hall at the Fogolar Furlan Windsor. This event offers you the opportunity to connect with several chemical and biochemical companies from across North America, as well as to learn about their expertise and challenges in industry.

Lab groups interested in attending are requested to present a 3 – 5 minute talk showcasing specific techniques used in their respective research projects. Presentations should highlight the relevance of these techniques to industry, with hopes of stimulating collaboration.

Program Highlights:
1) Companies in chemical and biochemical industry will discuss R&D as well as challenges industry present.
2) Funding agencies will present various funding streams available for collaborative projects between industry and academia.
3) A networking session and mixer to form connections between researchers and potential future employers.

Registration at:
or contact chemiconn@uwindsor.ca

Deadline: April 13th, 2018
*Business casual attire is expected.




Thursday, March 15, 2018

CHEMICONN 2018 - Chemical and Biochemical Connections Event - May 10, 2018 - 10 am - 6 pm



Chemical and Biochemical Connections Event
May 10th, 2018 | 10:00 a.m. – 6:00 p.m.
at the Fogolar Furlan Windsor – Dante Costa Hall
1800 N Service Rd, Windsor, ON, N8W 1Y3

Department of Chemistry and Biochemistry cordially invites you to join us for the second annual Chemical and Biochemical Connections Event, ChemiConn 2018, to be held in the Dante Costa Hall at the Fogolar Furlan Windsor. This event offers you the opportunity to connect with several chemical and biochemical companies from across North America, as well as to learn about their expertise and challenges in industry.

Lab groups interested in attending are requested to present a 3 – 5 minute talk showcasing specific techniques used in their respective research projects. Presentations should highlight the relevance of these techniques to industry, with hopes of stimulating collaboration.

Program Highlights:
1) Companies in chemical and biochemical industry will discuss R&D as well as challenges industry present.
2) Funding agencies will present various funding streams available for collaborative projects between industry and academia.
3) A networking session and mixer to form connections between researchers and potential future employers.

Registration at:
or contact chemiconn@uwindsor.ca

Deadline: April 13th, 2018
*Business casual attire is expected.



Thursday, November 2, 2017

Seminar: Prof. Jean-Francois Morin (Laval University) - Fri. Nov. 3, 2017 @ 3 pm

Seminar: Prof. Jean-Francois Morin (Laval University)

UWinChemBiochem Seminar Series - Fall 2017


Prof. Jean-Francois Morin
Department of Chemistry
Université Laval Québec
http://labnanoorg.chm.ulaval.ca/en/about

Title: Structurally Precise Nanographenes and Graphene Nanoribbons: from Stable Biradicals to Carbon Nanotubes Wrapping

Friday, Nov. 3, 2017 @ 3:00 p.m.
Room #186 Essex Hall

**Everyone Welcome**

Monday, May 1, 2017

Spring 2017 UWinChem Newsletter

Spring 2017 UWinChem Newsletter 

The Spring 2017 edition of the UWinChem Newsletter is now available for download!

Click here to download!


In this issue:

PAGE 1
ANOTHER YEAR...
John McIntosh talks about what
happened in 2016.

PAGE 4
NEW SCIENCE WING
Our new Science Research and
Innovation Facility (SRIF)

PAGE 5
NEW FACULTY
Welcome to John Trant, Simon
Rondeau-Gagné, & Scott Mundle!

PAGE 6
BRUCE MCGARVEY
An autobiography from a pioneer
in electron paramagnetic
resonance and magnetic
resonance spectroscopy

CONTACT US
WEB:
http://www.uwindsor.ca/chemistry
NEWS BLOG:
http://uwinchem.blogspot.ca
TWITTER:
https://twitter.com/uwinchem
CONTACT US:
Email: chembiohead@uwindsor.ca
DONATE:
http://www.uwindsor.ca/donations

Thursday, April 13, 2017

Registration deadline for ChemiConn - This Week!

Dear faculty and graduate students,

The inaugural ChemiConn networking event is fast approaching.  It is a day for researching faculty and students to meet and interact with industry professionals right here on campus.  Registration for the event is FREE and is open until Friday, April 14th.  Registration is limited to 80 people, so please do so ASAP to ensure you do not miss out.

Registration along with more details about the event can be found here:
https://chemiconn.wixsite.com/uwindsor/registration


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



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.”