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PROTOTYPE OF A DOUBLE-HETEROJUNCTION HOT CARRIER SOLAR CELL

机译:双重异性结载热载体太阳能电池原型

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A prototype of the double-heterostructure hot-carrier solar cell was built by the cost effective and upscalable processes such as electrodeposition and magnetron sputtering. Device under test is based on InP/PbSe/ZnO:Al thin film structure. Chemical composition of the deposited PbSe films was checked by energy dispersive X-ray spectrometry (EDX). Structure analysis of the substrates and films was carried out by electron backscatter diffraction (EBSD). Band alignment at InP/PbSe and PbSe/ZnO heterojunctions was estimated by X-ray photoelectron spectroscopy (XPS). The full double-heterojunction structure was tested with respect to the ability to extract hot carriers from absorber by exposure to the laser beam radiation at selected wavelengths. Functionality of the proposed material combination is in agreement with reconstructed from XPS band structure at InP/PbSe and PbSe/ZnO interfaces.
机译:双异质结构热载体太阳能电池的原型由诸如电沉积和磁控溅射的成本有效和上升的过程构建。被测设备基于INP / PBSE / ZnO:Al薄膜结构。通过能量分散X射线光谱法(EDX)检查沉积的PBSE膜的化学成分。通过电子反向散射衍射(EBSD)进行衬底和薄膜的结构分析。通过X射线光电子能谱(XPS)估计了InP / PBSE和PBSE / ZnO异质结的带对准。通过在所选波长下暴露于激光束辐射,对从吸收器中提取热载体的能力来测试全双异质结结构。所提出的材料组合的功能与INP / PBSE和PBSE / ZNO接口的XPS频带结构重建一致。

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