| 1 | 1/1 | 返回列表 |
| 查看: 952 | 回復(fù): 0 | |||
zx53376876木蟲 (著名寫手)
|
[交流]
招收短期交流本科學(xué)生一名 12周 蒙特利爾工學(xué)院
|
|
蒙特利爾工學(xué)院Prof. Fabio Cicoira研究組招收短期交流本科學(xué)生一名12 weeks internship,我想,如果是碩士在讀的話,似乎也可以聯(lián)絡(luò),但是Prof說(shuō)要求本科生,很好的機(jī)會(huì),期間費(fèi)用由 MITACS提供http://www.mitacs.ca/ 祝大家好運(yùn) 另外,只有下面這些學(xué)校的同學(xué)可以申請(qǐng)這個(gè)項(xiàng)目 Universities List of Project 985 Fudan University Harbin Institute of Technology Nanjing University Xi'an Jiao Tong University Beihang University Beijing Institute of Technology Beijing Normal University Central South University Central University for Nationalities (Minzu University of China) Chongqing University Dalian University of Technology East China Normal University Huazhong University of Science and Technology Hunan University Jilin University Ocean University of China Tianjin University Tongji University University of Electronic Science and Technology of China Wuhan University Xiamen University Shandong University Sichuan University South China University of Technology Southeast University Sun Yat-sen University Peking University Shanghai Jiao Tong University Tsinghua University University of Science and Technology of China Zhejiang University China Agricultural University Lanzhou University Nankai University National University of Defense Technology Northeastern University Northwest A&F University Northwestern Polytechnical University Renmin University of China Conducting polymer devices for bioelectronics生物電子導(dǎo)電裝置 Organic Electrochemical Transistors are playing a key role in the nascent field of organic bioelectronics because of their ability to operate in liquid environment at low operating voltages. OECTs can be used as converters between ionic currents in the electrolyte and electronic currents in the conducting polymer active layer. Sensors that detect gating through a bilayer lipid membrane in which the ion channel gramicidin was incorporated were built based on this principle. Glucose and peroxide sensors were developed based on OECT faradaic mode of operation and their performance has been continuously improved. More recently OECT have shown ability to detect other species of biological interest, such as DNA and dopamine. This exciting scenario calls for a more comprehensive understanding of the fundamental processes taking place in conducting polymer devices, which is the main objective of this project. In particular, we will explore the effect of the electrical conductivity of the polymer on device switching speed and modulation. The effect of electrical conductivity will be studied by using different PEDOTSS formulations in combination with several secondary dopants, such as ethylene glycol or dimethyl sulfoxide. This will permit to obtain films with conductivities ranging from 10 to 1000 S/cm. Device modulation and switching speed will be evaluated from current versus time plots acquired at fixed drain-source voltage while pulsing the gate-source to switch the device ON and OFF. The modulation will be related to the difference between the ON current (no gate voltage applied) and the OFF current (gate voltage applied) at various gate voltages. The switching speed will correspond to the time employed by the device to reach its steady state ON or OFF current. These experiments offer an opportunity to verify the device modeling prediction that an increase in channel conductivity yields an improved current modulation. The student is expected to have background in the following fields: microfabrication, thin film deposition, electrochemistry, organic chemistry, electronic device characterization. GPA must be 8/10 The student will be responsible of his own project. She/he is expected to carry out an experimental work and accomplish the following tasks: i) device microfabrication by photolithography, etching and thin film deposition ii) conducting polymers deposition by solution processing iii) measurement of polymer film electrical conductivity and transistor figure of merit This project will produce state-of-the-art scientific and technical training. Organic Electronics is an intriguing discipline for students wishing to pursue their careers both in academia and industry, since it is capable to generate high impact science and to enable the development of novel technologies. The skills the student will acquire in my laboratory are highly required in several science and engineering disciplines. The activity will be carried out at the campus of the Université de Montréal/ École Polytechnique de Montréal, which offers an outstanding training environment. The student will have access to state-of-the-art facilities, i.e the laboratory of microfabrication of EPM, several microscopy techniques (atomic force microscopy and scanning electron microscopy), electrical and electrochemical characterization tools and novel system for the film deposition and printing of organic materials. He will also have the opportunity to meet with prominent international scientists who visit periodically the campus for seminars and lectures. The student will also be asked to report about her/his laboratory activity in weekly group meetings and to give a conference-style presentation in a broader meeting. Overall, I look forward to host a MITACS student in my group. I commit to help him with her/his research in anyway possible, and make available to her/him the necessary infrastructure to carry out his research project 下面是申請(qǐng)網(wǎng)址, http://www.mitacs.ca/globalink/2012-student-application 也可以直接聯(lián)系fabio.cicoira@polymtl.ca 因?yàn)轫?xiàng)目申請(qǐng)時(shí)間較短,請(qǐng)盡快聯(lián)系。 [ Last edited by flyingskynk on 2012-4-14 at 10:22 ] |

找到一些相關(guān)的精華帖子,希望有用哦~
| 1 | 1/1 | 返回列表 |
| 最具人氣熱帖推薦 [查看全部] | 作者 | 回/看 | 最后發(fā)表 | |
|---|---|---|---|---|
|
[考研] 331環(huán)境科學(xué)與工程求調(diào)劑 +3 | 熠然好運(yùn)氣 2026-03-27 | 3/150 |
|
|---|---|---|---|---|
|
[考研] 291求調(diào)劑 +7 | 孅華 2026-03-22 | 7/350 |
|
|
[考研] 考研調(diào)劑 +4 | Sanmu-124 2026-03-26 | 4/200 |
|
|
[考研] 一志愿華東理工大學(xué)081700,初試分?jǐn)?shù)271 +6 | kotoko_ik 2026-03-23 | 7/350 |
|
|
[考研] 298調(diào)劑 +3 | jiyingjie123 2026-03-27 | 3/150 |
|
|
[考研] 085600材料與化工306 +10 | z1z2z3879 2026-03-21 | 11/550 |
|
|
[考研] 0703化學(xué)/290求調(diào)劑/本科經(jīng)歷豐富/工科也可 +7 | 丹青奶蓋 2026-03-26 | 8/400 |
|
|
[考研] 調(diào)劑 +3 | 李嘉圖·S·路 2026-03-27 | 3/150 |
|
|
[考研] 292求調(diào)劑 +4 | 求求了收下我吧?/a> 2026-03-26 | 4/200 |
|
|
[考研] 324求調(diào)劑 +8 | hanamiko 2026-03-26 | 10/500 |
|
|
[考研] 一志愿華理,數(shù)一英一285求A區(qū)調(diào)劑 +8 | AZMK 2026-03-25 | 10/500 |
|
|
[考研] 333求調(diào)劑 +7 | 87639 2026-03-21 | 12/600 |
|
|
[考研] 321求調(diào)劑 +5 | 材料cailiao 2026-03-21 | 5/250 |
|
|
[考研] 求調(diào)劑 +8 | Auroracx 2026-03-22 | 8/400 |
|
|
[考研] 085600 材料與化工 329分求調(diào)劑 +9 | Mr. Z 2026-03-25 | 9/450 |
|
|
[考研] 調(diào)劑310 +3 | 溫柔的晚安 2026-03-25 | 4/200 |
|
|
[考研] 材料專碩331求調(diào)劑 +4 | 鮮當(dāng)牛 2026-03-24 | 4/200 |
|
|
[考研] 求調(diào)劑 +7 | 十三加油 2026-03-21 | 7/350 |
|
|
[考研] 一志愿國(guó)科過(guò)程所081700,274求調(diào)劑 +3 | 三水研0水立方 2026-03-23 | 3/150 |
|
|
[考研] 求調(diào)劑 +3 | .m.. 2026-03-21 | 4/200 |
|