Semiconductors for Photocatalysis, Volume 97 covers the latest breakthrough research and exciting developments in semiconductor photocatalysts and electrodes for water splitting and CO2 reduction. It includes a broad range of materials such as metal-oxides, metal-nitrides, silicon, III-V semiconductors, and the emerging layered compounds. New to this volume are chapters covering the Fundamentals of Semiconductor Photoelectrodes, Charge Carrier Dynamics in Metal Oxide Photoelectrodes for Water Oxidation, Photophysics and Photochemistry at the Semiconductor/Electrolyte Interface for Solar Water…mehr
Semiconductors for Photocatalysis, Volume 97 covers the latest breakthrough research and exciting developments in semiconductor photocatalysts and electrodes for water splitting and CO2 reduction. It includes a broad range of materials such as metal-oxides, metal-nitrides, silicon, III-V semiconductors, and the emerging layered compounds. New to this volume are chapters covering the Fundamentals of Semiconductor Photoelectrodes, Charge Carrier Dynamics in Metal Oxide Photoelectrodes for Water Oxidation, Photophysics and Photochemistry at the Semiconductor/Electrolyte Interface for Solar Water Splitting, V Semiconductor Photoelectrodes, III-Nitride Semiconductor Photoelectrodes, and Rare Earth Containing Materials for Photoelectrochemical Water Splitting Applications. In addition, the design and modeling of photocatalysts and photoelectrodes and the fundamental mechanisms of water splitting and CO2 reduction is also discussed.
Zetian Mi is a Professor in the Department of Electrical Engineering and Computer Science at the University of Michigan, Ann Arbor. He received the PhD degree in Applied Physics at the University of Michigan in 2006. His teaching and research interests are in the areas of III-nitride semiconductors, LEDs, lasers, quantum photonics, solar fuels, and artificial photosynthesis. Prof. Mi has edited 2 books, 12 book chapters, 20 patents/patent applications, more than 200 journal papers, and over 300 conference papers/presentations on these topics. He was a faculty member at McGill University from 2007 to 2016, where he received several awards, including the Hydro-Québec Nano-Engineering Scholar Award in 2009, the William Dawson Scholar Award in 2011, the Christophe Pierre Award for Research Excellence in 2012, and the Engineering Innovation Award in 2105. Prof. Mi has received the Young Investigator Award from the 27th North American Molecular Beam Epitaxy (MBE) Conference in 2010 and
the Young Scientist Award from the International Symposium on Compound Semiconductors in 2015. Prof. Mi serves as the Editor of Progress in Quantum Electronics. He also served as the Associate Editor of IEEE J. Lightwave Technol. as well as the Chair of many international conferences, including the General Chair of IEEE Photonics Conference in 2020, General Chair of IEEE Photonics Society Summer Topicals Meeting in 2016-2017, and Co-Chair of International Symposium on Semiconductor Light Emitting Devices in 2017. Prof. Mi is a fellow of SPIE and OSA.
Inhaltsangabe
Part I: Fundamentals of Semiconductor Photoelectrodes 1. Charge Carrier Dynamics in Metal Oxide Photoelectrodes for Water OxidationAndreas Kafizas, Robert Godin and James R. Durrant2. Photophysics and Photochemistry at the Semiconductor/Electrolyte Interface for Solar Water SplittingXiaogang Yang and Dunwei Wang3. III-V Semiconductor PhotoelectrodesGeorges Siddiqi, Zhenhua Pan and Shu Hu4. III-Nitride Semiconductor Photoelectrodes Katsushi Fujii5. Rare Earth Containing Materials for Photoelectrochemical Water Splitting ApplicationsJennifer Leduc, Yakup Goenuellue, Aida Raauf, Thomas Fischer and Sanjay Mathur
Part II: Nanostructured Photocatalysts and Photoelectrodes6. Artificial Photosynthesis on III-Nitride Nanowire ArraysSheng Chu, Xianghua Kong, Srinivas Vanka, Hong Guo and Zetian Mi7. Light-Induced Water Splitting Using Layered Metal Oxides and NanosheetsTakayoshi Oshima, Miharu Eguchi and Kazuhiko Maeda8. Nanostructured Photoelectrodes via Template-Assisted FabricationRowena Yew, Siva Krishna Karuturi, Hark Hoe Tan and Chennupati Jagadish9. Nanostructured Semiconductors for Bifunctional Photocatalytic and Photoelectrochemical Energy Conversion Songcan Wang, Jung-Ho Yun and Lianzhou Wang10. Facet Control of Photocatalysts for Water SplittingJian Pan and Gang Liu11. Black Titanium Dioxide for PhotocatalysisYan Liu and Xiaobo Chen12. Effective Charge Carrier Utilization in Visible-Light-Driven CO2 ConversionXiaoxia Chang, Tuo Wang and Jinlong Gong
Part I: Fundamentals of Semiconductor Photoelectrodes 1. Charge Carrier Dynamics in Metal Oxide Photoelectrodes for Water OxidationAndreas Kafizas, Robert Godin and James R. Durrant2. Photophysics and Photochemistry at the Semiconductor/Electrolyte Interface for Solar Water SplittingXiaogang Yang and Dunwei Wang3. III-V Semiconductor PhotoelectrodesGeorges Siddiqi, Zhenhua Pan and Shu Hu4. III-Nitride Semiconductor Photoelectrodes Katsushi Fujii5. Rare Earth Containing Materials for Photoelectrochemical Water Splitting ApplicationsJennifer Leduc, Yakup Goenuellue, Aida Raauf, Thomas Fischer and Sanjay Mathur
Part II: Nanostructured Photocatalysts and Photoelectrodes6. Artificial Photosynthesis on III-Nitride Nanowire ArraysSheng Chu, Xianghua Kong, Srinivas Vanka, Hong Guo and Zetian Mi7. Light-Induced Water Splitting Using Layered Metal Oxides and NanosheetsTakayoshi Oshima, Miharu Eguchi and Kazuhiko Maeda8. Nanostructured Photoelectrodes via Template-Assisted FabricationRowena Yew, Siva Krishna Karuturi, Hark Hoe Tan and Chennupati Jagadish9. Nanostructured Semiconductors for Bifunctional Photocatalytic and Photoelectrochemical Energy Conversion Songcan Wang, Jung-Ho Yun and Lianzhou Wang10. Facet Control of Photocatalysts for Water SplittingJian Pan and Gang Liu11. Black Titanium Dioxide for PhotocatalysisYan Liu and Xiaobo Chen12. Effective Charge Carrier Utilization in Visible-Light-Driven CO2 ConversionXiaoxia Chang, Tuo Wang and Jinlong Gong
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