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Titlebook: Energy Conversion in Natural and Artificial Photosynthesis; Katharina Brinkert Book 2018 Springer International Publishing AG, part of Spr

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发表于 2025-3-21 18:18:34 | 显示全部楼层 |阅读模式
书目名称Energy Conversion in Natural and Artificial Photosynthesis
编辑Katharina Brinkert
视频video
概述Provides a direct comparison and overview of solar energy conversion processes in natural photosynthesis and artificial, biomimetic analogs.Includes essential information for the design of solar water
丛书名称Springer Series in Chemical Physics
图书封面Titlebook: Energy Conversion in Natural and Artificial Photosynthesis;  Katharina Brinkert Book 2018 Springer International Publishing AG, part of Spr
描述.This book discusses the basic principles and processes of solar energy conversion in natural photosynthesis. It then directly compares them with recent developments and concepts currently being pursued in artificial photosynthetic systems that are capable of utilizing sunlight to convert carbon dioxide and water into a chemical fuel. .In this regard, the main focus is on photoelectrochemical cells, in which semiconducting photoanodes and -cathodes modified with (electro-) catalysts are used to oxidize water, produce hydrogen and reduce carbon dioxide in a monolithic device. The fundamental photochemical and photophysical processes involved are presented and discussed, along with protection mechanisms and efficiency calculations for both natural and artificial photosynthesis. In turn, key parameters that are crucial for the efficient operation of natural photosynthesis are identified. Lastly, their validity and applicability in the design of artificial solar-driven water-splitting systems are examined. .
出版日期Book 2018
关键词Principles of Solar Energy Conversion; Photosystem II, Mn4CaO5 Cluster; Solar-Driven Water Splitting; P
版次1
doihttps://doi.org/10.1007/978-3-319-77980-5
isbn_softcover978-3-030-08591-9
isbn_ebook978-3-319-77980-5Series ISSN 0172-6218 Series E-ISSN 2364-9003
issn_series 0172-6218
copyrightSpringer International Publishing AG, part of Springer Nature 2018
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Carbon Fixation,ease from 7.2 to 9.7 billion. This doubled energy consumption let us face a new challenge in the 21st century: new energy sources are required, which allow us to step away from the use of fossil fuels.
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0172-6218 cient operation of natural photosynthesis are identified. Lastly, their validity and applicability in the design of artificial solar-driven water-splitting systems are examined. .978-3-030-08591-9978-3-319-77980-5Series ISSN 0172-6218 Series E-ISSN 2364-9003
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ty of converting solar energy into chemical energy, oxygenic photosynthesis remains one of the most important biological processes on earth, producing directly or indirectly the building blocks of all living organisms and also of oil, gas and coal. In contrast to some anaerobic photosynthetic organi
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ch are separated by relatively large distances, often in the 10–20 Å range. In order to separate an electron and hole over 25 Å across a membrane (Fig. .), PSII utilizes multistep charge hopping on many different time scales aiming while loosing minimal amounts of free energy (Rappaport, Diner in Co
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