Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Shrirang Chhatre"'
Autor:
Peter Sitarik, Samadhan S. Nagane, Shrirang Chhatre, Yuhang Wu, Quintin Baugh, David C. Martin
Publikováno v:
Materials Advances. 3:6037-6049
Electrochemical deposition of maleimide-functionalized 3,4-ethylenedioxythiophene (EDOT+) monomers and their conducting polymer derivatives (PEDOT+). PEDOT+ can be created by depositing EDOT-MA, or by exposing PEDOT-MA to the functionalized thiol.
Autor:
Yuhang Wu, Samadhan S. Nagane, Peter Sitarik, Shrirang Chhatre, Junghyun Lee, David C. Martin
Publikováno v:
Journal of Materials Chemistry A. 10:8440-8458
Polymer films formed by the electrodeposition of EDOT-maleimide are smoother, stiffer, and have higher capacitance than unmodified PEDOT.
Publikováno v:
ACS applied materialsinterfaces. 14(37)
Organic electrochemical transistors (OECTs) are promising bioelectronic devices, especially because of their ability to transport charge both ionically and electronically. Conductive polymers are typically used as the active materials of OECTs. Cross
Autor:
Samadhan S. Nagane, Shrirang Chhatre, David C. Martin, Yuhang Wu, Peter Sitarik, Quintin Baugh, Junghyun Lee
Publikováno v:
MRS Advances. 5:943-956
We continue to investigate the design, synthesis, and characterization of electrically and ionically active conjugated polythiophene copolymers for integrating a variety of biomedical devices with living tissue. This paper will describe some of our m
Autor:
Blake N. Johnson, Seth Currlin, Adrienne E Widener, Yuxin Tong, Jamie M. Murbach, Shrirang Chhatre, Vivek Subramanian, Kevin J. Otto, David C. Martin
Publikováno v:
MRS Commun
The goal of this study was to perform in situ electrochemical polymerization of poly(3,4-ethylenedioxythiophene) (PEDOT) in peripheral nerves to create a soft, precisely located injectable conductive polymer electrode for bi-directional communication
Autor:
Vivek Subramanian, Mario I. Romero-Ortega, Blake N. Johnson, David C. Martin, Francisco Delgado, Shrirang Chhatre, Yuxin Tong, Jamie M. Murbach, Kevin J. Otto
Publikováno v:
MRS Advances. 3:2365-2372
The ability to interface electronic materials with the peripheral nervous system is required for stimulation and monitoring of neural signals. Thus, the design and engineering of robust neural interfaces that maintain material-tissue contact in the p