By Mary D. Archer
During this e-book, professional authors describe complex sunlight photon conversion methods that promise hugely effective photovoltaic and photoelectrochemical cells with refined architectures at the one hand, and plastic photovoltaic coatings which are low-cost adequate to be disposable at the different. Their leitmotifs comprise light-induced exciton new release, junction architectures that bring about effective exciton dissociation, and cost assortment by means of percolation via mesoscale levels. Photocatalysis is heavily on the topic of photoelectrochemistry, and the basics of either disciplines are lined during this quantity.
Contents: assessment (M D Archer); basics in Photoelectrochemistry (R J D Miller & R Memming); basics and purposes of Quantum-Confined buildings (A J Nozik); basics and functions in Electron-Transfer Reactions (M D Archer); basics in Metal-Oxide Heterogeneous Photocatalysis (N Serpone & A V Emeline); Inorganic Extended-Junction units (R Könenkamp); natural Donor Acceptor Heterojunction sunlight Cells (J J Benson-Smith & J Nelson); Dye-Sensitised Mesoscopic sunlight Cells (M Grätzel & J R Durrant); Semiconductor/Liquid Junction Photoelectrochemical sunlight Cells (S Maldonado et al.); Photoelectrochemical garage Cells (S Licht & G Hodes); Measuring Ultrafast Photoinduced Electron-Transfer Dynamics (X Ai & T Lian); Experimental options in Photoelectrochemistry (L M Peter & H Tributsch).
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