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Experimental investigation of double barrier structures for energy selective contacts for hot carrier solar cells

机译:热载太阳能电池能量选择触点的双势垒结构的实验研究

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The hot carrier cell (HCSCs) is a promising advanced photovoltaic concept. It aims to minimize major losses in p-n junction solar cells and is predicted to have energy conversion efficiency over 65% at one sun. Energy selective contacts (ESCs) is a critical component of the HCSC. In this paper, potential of ESCs based on quantum dot and quantum well double barrier resonant tunneling structures is presented. Results of I-V measurements these show negative differential resistance (NDR) characteristics both at low temperature and room temperature, thus indicating that these structures can be suitable for ESC application.
机译:热载流子(HCSC)是一种有前途的先进光伏概念。它的目的是最大程度地减少p-n结太阳能电池的主要损耗,并预计在一天阳光下的能量转换效率超过65%。能量选择触点(ESC)是HCSC的重要组成部分。本文提出了基于量子点和量子阱双势垒共振隧穿结构的静电潜能。 I-V测量的结果在低温和室温下均显示出负差分电阻(NDR)特性,因此表明这些结构可适用于ESC应用。

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