Description

Book Synopsis
The importance of developing new, clean and renewable sources of energy will continue to grow in the foreseeable future and so will the need for the education of researchers in this field of research. The interest and challenges of the field continue to shift from simple homogeneous solutions to increasingly more complex heterogeneous systems and interfaces. Over the past decade there have been numerous theoretical and experimental breakthroughs many of which still exist only in the primary literature. The aim of this book is to gather in one volume the description of modern, sometimes exploratory, experimental and theoretical techniques applied to the dynamics of interfacial electron and electronic excitation transfer processes studied in the context of solar energy conversion. The intended treatment will be fundamental in nature and thus applicable to a broad range of hybrid photovoltaic and photocatalytic materials and interfaces. The book will focus on the dynamic aspects of the electron injection, exciton and carrier relaxation processes, as well as coherence effects, which continue to provide the impetus and the greatest challenge for the development of new methodologies.

Table of Contents
Design and characterization of molecular adsorbates for solar energy conversion; Charge and exciton dynamics in semiconductor quantum dots: a time-domain, ab initio view; Multiscale modelling of interfacial electron transfer; Plasmon-enhanced solar chemistry: electrodynamics and quantum mechanics; Charge carrier generation, separation, recombination and transport in nanostructured materials; Two-dimensional photon echo spectroscopy and energy transfer; Ultrafast imaging and microscopy of energy conversion materials; Ultrafast multiphoton photoemission microscopy of solid surfaces in the real and reciprocal space; Light at the tip: hybrid scanning tunnelling/optical spectroscopy microscopy; Time resolved IR spectroscopy of metal oxides and interfaces; Carrier dynamics in photovoltaic structures and materials studied with time-resolved terahertz spectroscopy; Time-resolved x-ray absorption spectroscopy for solar energy research.

Solar Energy Conversion: Dynamics of Interfacial

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    A Hardback by Piotr Piotrowiak

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      Publisher: Royal Society of Chemistry
      Publication Date: Publication Date: 09/10/2013
      ISBN13: 9781849733878, 978-1849733878
      ISBN10: 1849733872

      Description

      Book Synopsis
      The importance of developing new, clean and renewable sources of energy will continue to grow in the foreseeable future and so will the need for the education of researchers in this field of research. The interest and challenges of the field continue to shift from simple homogeneous solutions to increasingly more complex heterogeneous systems and interfaces. Over the past decade there have been numerous theoretical and experimental breakthroughs many of which still exist only in the primary literature. The aim of this book is to gather in one volume the description of modern, sometimes exploratory, experimental and theoretical techniques applied to the dynamics of interfacial electron and electronic excitation transfer processes studied in the context of solar energy conversion. The intended treatment will be fundamental in nature and thus applicable to a broad range of hybrid photovoltaic and photocatalytic materials and interfaces. The book will focus on the dynamic aspects of the electron injection, exciton and carrier relaxation processes, as well as coherence effects, which continue to provide the impetus and the greatest challenge for the development of new methodologies.

      Table of Contents
      Design and characterization of molecular adsorbates for solar energy conversion; Charge and exciton dynamics in semiconductor quantum dots: a time-domain, ab initio view; Multiscale modelling of interfacial electron transfer; Plasmon-enhanced solar chemistry: electrodynamics and quantum mechanics; Charge carrier generation, separation, recombination and transport in nanostructured materials; Two-dimensional photon echo spectroscopy and energy transfer; Ultrafast imaging and microscopy of energy conversion materials; Ultrafast multiphoton photoemission microscopy of solid surfaces in the real and reciprocal space; Light at the tip: hybrid scanning tunnelling/optical spectroscopy microscopy; Time resolved IR spectroscopy of metal oxides and interfaces; Carrier dynamics in photovoltaic structures and materials studied with time-resolved terahertz spectroscopy; Time-resolved x-ray absorption spectroscopy for solar energy research.

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