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978-981-13-4354-4Springer Nature Singapore Pte Ltd. 2018
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Springer Theseshttp://image.papertrans.cn/d/image/268830.jpg
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Book 2018 and general method to prepare more novel heterostructures. The band gap structure simulations, detailed charge carrier behaviour and unique solar energy conversion properties of the prepared hybrid nanostructures are deeply investigated. This work would open a new door to rationally designing hybri
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2190-5053 ions, detailed charge carrier behaviour and unique solar energy conversion properties of the prepared hybrid nanostructures are deeply investigated. This work would open a new door to rationally designing hybri978-981-13-4354-4978-981-13-0188-9Series ISSN 2190-5053 Series E-ISSN 2190-5061
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2190-5053 tudy of hetero-nanomaterials for band gap engineering.InvestThis thesis focuses on the design and synthesis of novel one-dimensional colloidal chalcogenide hetero-nanostructures for enhancing solar energy conversion applications. Semiconducting nanomaterials are particular attractive for energy conv
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Book 2018rsion applications. Semiconducting nanomaterials are particular attractive for energy conversion due to the quantum confinement effects dictating their unique optical and electronic properties. Steering the photo-induced charge-flow based on unique bandgap alignment in semiconductor heterojunctions
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Seeded Mediated Growth for Binary Chalcogenide Heteronanostructures,S-PbS heteronanostructures have good photothermal conversion effect due to the synergistic effect. Using tiny Ag.S nanocrystals as catalysts can prepare ultrathin ZnS nanorods/nanowires. Chloride ions introduced in the reaction induced the controlled morphology transition from straight to kinking.