首页> 外文会议>Symposium on atomic layer deposition applications;Meeting of the Electrochemical Society >Quantum Dot Formation in Polymer Wires by Three-Molecule Molecular Layer Deposition (MLD) and Applications to Electro-Optic/Photovoltaic Devices
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Quantum Dot Formation in Polymer Wires by Three-Molecule Molecular Layer Deposition (MLD) and Applications to Electro-Optic/Photovoltaic Devices

机译:三分子分子层沉积(MLD)在聚合物导线中形成量子点及其在光电/光伏器件中的应用

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Using Molecular Layer Deposition (MLD), three kinds of molecules, that is, terephthalaldehyde (TPA), p-phenylenediamine (PPDA), and oxalic dihydrazide (ODH), were connected one-by-one with designated sequences to construct multiple quantum dots (MQDs) in conjugated polymer wires. With decreasing the quantum dot lengths, absorption peak energy of the quantum dots shifts to the higher energy side, indicating that the quantum confinement effect arises. As applications of the polymer wires with the MQDs, electro-optic materials for optical switches, and efficient and robust light absorption layers for waveguide type dye-sensitized photo-voltaic devices are described.
机译:使用分子层沉积(MLD),将三种分子,即对苯二醛(TPA),对苯二胺(PPDA)和草二酰肼(ODH)与指定序列一一连接,以构建多个量子点共轭聚合物线中的(MQD)。随着量子点长度的减小,量子点的吸收峰能量移至较高能量侧,这表明出现了量子限制效应。作为具有MQD的聚合物线的应用,描述了用于光开关的电光材料以及用于波导型染料敏化的光伏器件的有效且坚固的光吸收层。

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