Chemical and structural modification of porous silicon for energy storage and conversion

This thesis describes the fabrication and modification of porous silicon and titania structures for the purposes of energy storage and conversion. The first chapter provides the reader with background information on porous silicon, batteries, and photocatalysis. The second chapter describes porous s...

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Main Author: Corno, James A.
Published: Georgia Institute of Technology 2008
Subjects:
Online Access:http://hdl.handle.net/1853/22700
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spelling ndltd-GATECH-oai-smartech.gatech.edu-1853-227002013-01-07T20:26:00ZChemical and structural modification of porous silicon for energy storage and conversionCorno, James A.Self-assemblyPhotocatalysisMicrofilterLithium batteryPorous siliconPorous siliconEnergy storageEnergy conversionThis thesis describes the fabrication and modification of porous silicon and titania structures for the purposes of energy storage and conversion. The first chapter provides the reader with background information on porous silicon, batteries, and photocatalysis. The second chapter describes porous silicon fabrication methods and the equipment used in these studies. The third and fourth chapters are journal articles which describe the results of efforts to produce a porous silicon electrode for lithium ion batteries. The fifth chapter is a journal article detailing the fabrication of a thin, free-standing porous silicon film which can be activated for possible photovoltaic and microreactor applications. The last chapter describes the formation of novel silver/silver oxide seed structures for titania photocatalyst nanostructures to be prepared for deposition on a porous silicon support interface.Georgia Institute of Technology2008-06-10T20:46:42Z2008-06-10T20:46:42Z2008-01-15Dissertationhttp://hdl.handle.net/1853/22700
collection NDLTD
sources NDLTD
topic Self-assembly
Photocatalysis
Microfilter
Lithium battery
Porous silicon
Porous silicon
Energy storage
Energy conversion
spellingShingle Self-assembly
Photocatalysis
Microfilter
Lithium battery
Porous silicon
Porous silicon
Energy storage
Energy conversion
Corno, James A.
Chemical and structural modification of porous silicon for energy storage and conversion
description This thesis describes the fabrication and modification of porous silicon and titania structures for the purposes of energy storage and conversion. The first chapter provides the reader with background information on porous silicon, batteries, and photocatalysis. The second chapter describes porous silicon fabrication methods and the equipment used in these studies. The third and fourth chapters are journal articles which describe the results of efforts to produce a porous silicon electrode for lithium ion batteries. The fifth chapter is a journal article detailing the fabrication of a thin, free-standing porous silicon film which can be activated for possible photovoltaic and microreactor applications. The last chapter describes the formation of novel silver/silver oxide seed structures for titania photocatalyst nanostructures to be prepared for deposition on a porous silicon support interface.
author Corno, James A.
author_facet Corno, James A.
author_sort Corno, James A.
title Chemical and structural modification of porous silicon for energy storage and conversion
title_short Chemical and structural modification of porous silicon for energy storage and conversion
title_full Chemical and structural modification of porous silicon for energy storage and conversion
title_fullStr Chemical and structural modification of porous silicon for energy storage and conversion
title_full_unstemmed Chemical and structural modification of porous silicon for energy storage and conversion
title_sort chemical and structural modification of porous silicon for energy storage and conversion
publisher Georgia Institute of Technology
publishDate 2008
url http://hdl.handle.net/1853/22700
work_keys_str_mv AT cornojamesa chemicalandstructuralmodificationofporoussiliconforenergystorageandconversion
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