The subject matter disclosed herein relates generally to the field of the energy storage in Li-ion type batteries. More specifically, the subject matter disclosed herein relates to materials for the anode of a Li-ion battery, to their method of preparation and to their use in the anode of a Li-ion battery. Another subject matter disclosed herein are Li-ion batteries manufactured by incorporating the disclosed materials. Devices comprising the disclosed Li-ion batteries are also disclosed.
The subject matter disclosed herein relates generally to the field of the energy storage in Li-ion type batteries. More specifically, the subject matter disclosed herein relates to materials for the anode of a Li-ion battery, to their method of preparation and to their use in the anode of a Li-ion battery. Another subject matter disclosed herein are Li-ion batteries manufactured by incorporating the disclosed materials. Devices comprising the disclosed Li-ion batteries are also disclosed.
- Austin TX, US Praveen K. Pasupathy - Austin TX, US Sheng Zhang - Austin TX, US Brad Leonhardt - Austin TX, US John G. Ekerdt - Austin TX, US Brian A. Korgel - Round Rock TX, US Vincent C. Holmberg - Austin TX, US Catherine D. Shipman - Austin TX, US Timothy D. Bogart - Austin TX, US Aaron Chockla - Austin TX, US
Assignee:
BOARD OF REGENTS, THE UNIVERSITY OF TEXAS SYSTEM - Austin TX
International Classification:
G01N 27/04
US Classification:
324636, 324633
Abstract:
A sensor for detecting one or more materials includes a substrate, a passivation layer formed on the substrate, a self-resonant structure and a high surface area material disposed on the passivation layer. The self-resonant structure includes a planar spiral inductor and a plurality of planar interdigitated capacitor electrodes disposed within the passivation layer. The planar spiral inductor includes an electrically conductive trace formed on the substrate in a planar spiral pattern having at least two turns and an inter-winding space between parallel segments of the electrically conductive trace. The plurality of planar interdigitated capacitor electrodes are electrically connected to the electrically conductive trace of the planar spiral inductor and formed on the substrate within the inter-winding space of at least one outermost turn of the planar spiral inductor. The high surface area material includes a conformal polymer coating to increase a sensitivity to the one or more materials.
Nexeon Ltd Oct 1, 2016 - Feb 2017
Senior Scientist
Nexeon Ltd Feb 2015 - Oct 2016
Scientist
The University of Texas at Austin Aug 2010 - Dec 2014
Ndseg Research Fellow
Ibm Almaden Research Center Jun 2009 - Aug 2009
Summer Research Intern
E.i. Du Pont De Nemours and Company Jun 2008 - Aug 2008
Process Engineering Intern
Education:
The University of Texas at Austin 2010 - 2014
Doctorates, Doctor of Philosophy, Chemical Engineering, Philosophy
University of Delaware 2006 - 2010
Bachelors, Chemical Engineering
Skills:
Scanning Electron Microscopy Nanoparticles Powder X Ray Diffraction Tem Afm Sem Xrd Materials Science Nanotechnology Xps Uv Vis Nir Ftir Electrochemistry Characterization Research and Development Nmr Chemical Engineering Tga Edx Electrochemical Characterization Lithium Ion Batteries Impedance Spectroscopy Cyclic Voltammetry Silicon Chemistry