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Titania-germanium nanocomposite for photo-thermo-electric application

机译:钛锗锗纳米复合材料的光热电应用

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The introduction of germanium (Ge) into titania (TiO2) creates an attractive semiconductor. The new semiconductor is named titania-germanium (TiO2-Ge). Ge dots are dispersed in the distorted TiO2 matrix of TiO2-Ge. The quantum Bohr radius of Ge is 24.3 nm, and hence the properties of the Ge dot can be varied by tailoring its size if it is smaller than its Bohr radius due to the quantum confinement effect (QCE). Therefore, simply by changing the Ge concentration, the morphology of TiO2-Ge can be varied within a wide range. Consequently, the optical, electronic and thermal properties of TiO2-Ge can be tailored. TiO2-Ge becomes a promising material for the next generation of photovoltaics as well as thermoelectric devices. It could also be used for photo-thermo-electric applications.
机译:将锗(Ge)引入二氧化钛(TiO2)中可产生有吸引力的半导体。新的半导体称为二氧化钛锗(TiO2-Ge)。 Ge点分散在TiO2-Ge变形的TiO2基体中。 Ge的量子玻尔半径为24.3nm,因此,由于量子限制效应(QCE),如果Ge点小于其玻尔半径,则可以通过调整其大小来改变Ge点的性质。因此,仅通过改变Ge浓度,就可以在宽范围内改变TiO 2 -Ge的形态。因此,可以调整TiO2-Ge的光学,电子和热学性质。 TiO2-Ge成为下一代光伏以及热电设备的有前途的材料。它也可以用于光热电应用。

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