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200401s2020 enk o 001 0 eng d |
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|a YDX
|b eng
|e rda
|e pn
|c YDX
|d OPELS
|d EBLCP
|d UKAHL
|d OCLCF
|d GZM
|d OCLCO
|d OCLCQ
|d COM
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|d OCLCQ
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|a 1148212369
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|a 9780081028919
|q (electronic bk.)
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|a 0081028911
|q (electronic bk.)
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|z 9780081028902
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|z 0081028903
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|a (OCoLC)1147902234
|z (OCoLC)1148212369
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|a QD716.P45
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|a 541/.395
|2 23
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|a Surface science of photocatalysis /
|c edited by Jiaguo Yu, Mietek Jaroniec, Chuanjia Jiang.
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|a London :
|b Academic Press,
|c 2020.
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|a 1 online resource
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
|2 rdacarrier
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|a Interface Science and Technology ;
|v 31
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|a Includes index.
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|a Front Cover -- Surface Science of Photocatalysis -- Interface Science and Technology -- Surface Science of Photocatalysis -- Copyright -- Contents -- Contributors -- 1 -- Principle and surface science of photocatalysis -- 1.1 A brief history of photocatalysis -- 1.2 Fundamentals of photocatalysis -- 1.2.1 Thermodynamics of photocatalysis -- 1.2.2 Dynamics of photocatalysis -- 1.3 Surface and interface science of photocatalysis -- 1.3.1 Adsorption and activation -- 1.3.2 Surface redox reactions -- 1.3.3 Interfacial charge separation -- 1.4 Design and evaluation of photocatalysts
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|a 1.4.1 Design principles -- 1.4.2 Modification strategies -- 1.4.3 Characterization and evaluation methods -- 1.4.3.1 Bandgap -- 1.4.3.2 Band-edge positions -- 1.4.3.3 Lifetime of photogenerated carriers -- 1.4.3.4 Evaluation of photocatalytic activity -- 1.5 Conclusions and perspectives -- References -- 2 -- Fundamentals of adsorption for photocatalysis -- 2.1 Introduction -- 2.2 Langmuir adsorption model -- 2.3 Adsorption kinetics equations -- 2.3.1 Pseudo-first-order rate equation -- 2.3.2 Pseudo-second-order rate equation -- 2.4 Photocatalytic kinetic mechanism -- 2.5 Summary -- Note A
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|a 4.2 Thermodynamic driving force for charge carrier transfer of photocatalysis and the Gibbs energy landscape -- 4.2.1 Conventional thermodynamic illustration -- 4.2.2 Thermodynamic driving force and Gibbs-energy landscape -- 4.2.3 Relation between charge transfer and catalytic reactions -- 4.2.4 Experimental determination of thermodynamic driving force -- 4.3 Overall physiochemical kinetic picture and fundamental theory for charge carrier transfer of photocatalysis -- 4.4 The effect of intrinsic traps in charge carrier transfer -- 4.4.1 Chemical entities and physiochemical nature of gap states
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|a 4.4.2 Kinetics of trapping process -- 4.4.3 Charge carrier transport modulated by traps -- 4.4.4 Recombination via multitrapping -- 4.4.5 The effect of trapping on interfacial transfer -- 4.4.6 Gap states as a relay for double-photon induced intrabandgap response -- 4.5 Interparticle and interphasic charge transfer -- 4.5.1 Interparticle charge transfer -- 4.5.2 Interphasic charge transfer -- 4.6 Phenomenological and numerical modeling of charge transfer -- 4.7 Thermal activation feature of charge carrier transfer -- 4.8 Relation between thermodynamics and kinetics of charge transfer
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|a Photocatalysis.
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|a Surface chemistry.
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|a Photocatalyse.
|0 (CaQQLa)201-0247110
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650 |
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|a Chimie des surfaces.
|0 (CaQQLa)201-0000376
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650 |
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|a Photocatalysis.
|2 fast
|0 (OCoLC)fst01061500
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650 |
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|a Surface chemistry.
|2 fast
|0 (OCoLC)fst01139210
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700 |
1 |
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|a Yu, Jiaguo,
|e editor.
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700 |
1 |
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|a Jaroniec, M.,
|e editor.
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700 |
1 |
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|a Jiang, Chuanjia,
|e editor.
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776 |
0 |
8 |
|i Print version:
|t Surface science of photocatalysis.
|d London, United Kingdom ; San Diego, CA, United States : Academic Press, an imprint of Elsevier, [2020]
|z 0081028903
|w (OCoLC)1108564558
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830 |
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0 |
|a Interface science and technology ;
|v v. 31.
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856 |
4 |
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|u https://sciencedirect.uam.elogim.com/science/bookseries/15734285/31
|z Texto completo
|