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Titlebook: Organic Solar Cells; Energetic and Nanost Masahiro Hiramoto,Seiichiro Izawa Book 2021 Springer Nature Singapore Pte Ltd. 2021 Organic solar

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A Path to the Blended Junction,rising report by C. W. Tang regarding his two-layer organic semiconductor cell. The author then examined the photovoltaic behaviors as a function of interface fabrication and found that the molecular contact between perylene (PTC) and phthalocyanine (Pc) pigments is a key for the excellent photocarr
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,OPV with a Crystalline Organic Pigment Active Layer Up to 10 μm,ersion layer has usually been limited to a thickness on the order of nm. This is because when the photoelectric conversion layer is prepared by mixing the organic pigment, the electric resistance often increases. For example, in organic light-emitting diodes that have been used for large-screen TVs
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,Polymer Solar Cells: Development of π-Conjugated Polymers with Controlled Energetics and Structuralschalcogenadiazoles as the acceptor unit. It is found that careful design of the molecular structure, the crystallinity and the backbone orientation of the polymers can be controlled. With the crystalline structure and favorable face-on backbone orientation, the polymers show high power conversion e
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First-Principles Investigations of Electronically Excited States in Organic Semiconductors,nto the electronically excited states are essential for understanding the charge photogeneration process in organic solar cells. However, despite recent developments of quantum chemistry and ab initio software packages, it is still challenging to predict the electronic states of disordered organic m
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Proposal for Future Organic Solar Cells,iconductors, doped organic single-crystal substrates with a long exciton diffusion length, and lateral cells showing the efficiency beyond SQ-limit. A critical advantage of organic semiconductors is their suitability for a fine division of the solar spectrum. Suppression of non-radiative recombinati
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