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Lithium Ion Batteries Based On Nanoporous Silicon

Technology Benefits
Low cost and simple fabricationCompatible with standard lithography techniquesHigh power capacity and extended cycling life
Technology Application
Portable electronicsMEMS, mobile phones, music players, notebooks, sensors
Detailed Technology Description
Researchers at UCLA have formed novel Li+ secondary battery electrodes that demonstrate high power capacity and retention of structure through many charge/discharge cycles. The conventional graphite electrode is replaced with a porous film of silicon nanowires, with a structure that is controllable during the alloying/dealloying process eliminating its associated volume changes. Furthermore, because the porous nanowires are made by etching of Si wafers, this technology also has the potential to be integrated with other lithographically produced devices.
Application No.
9142833
Others

Background

As the popularity for portable electronics increases, the performance of small-scale secondary batteries is even more critical. New generation Li+ batteries are being investigated in order to obtain higher power capacity and extended cycling life.

Additional Technologies by these Inventors


Tech ID/UC Case

21576/2010-823-0


Related Cases

2010-823-0

*Abstract
Researchers at UCLA have developed a novel three-dimensional porous silicon Lithium ion (Li+) micro-battery that demonstrates high power density and extended cycling life, offering a low space and light weight alternate to standard rechargeable batteries
*Applications
Portable electronics
  • MEMS, mobile phones, music players, notebooks, sensors
*IP Issue Date
Sep 22, 2015
*Principal Investigator

Name: Chris Byung-Hwa Kang

Department:


Name: Eric Joseph Nemanick

Department:


Name: Sarah Tolbert

Department:

Country/Region
USA

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