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Quantum Dot-Sensitized Solar Cells via Integrated Experimental and Modeling Study

机译:通过综合实验和建模研究量子点敏化太阳能电池

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摘要

The solar energy is one of the potential renewable green energy source considering the availability of sunlight in abundance and the need for clean and renewable source of energy. Quantum dots are semiconductor nanocrystals having considerable interest in photovoltaic research areas. Cadmium sulfide-sensitized solar cells are synthesized by Chemical bath deposition and titanium nanowires were fabricated by hydrothermal method. The synthesized CdS quantum dots are sensitized to nanoporous TiO_2 films to form quantum dots-sensitized solar cell applications. The introduction of TNWs enables the electrolyte to penetrate easily inside the film which increases the interfacial contact between the nanowires, the quantum dots and the electrolyte results in improvement in efficiency of solar cell. The goal of our research is to understand the fundamental physics and performance of quantum dot-sensitized solar cells with improved photoconversion efficiency at the low cost based on selection of Ti02 nanostructures, sensitizers and electrodes through an integrated experimental and modeling study.
机译:太阳能是考虑到丰富的阳光和清洁和可再生能源来源的潜在可再生绿色能源之一。量子点是在光伏研究领域具有相当兴趣的半导体纳米晶体。通过化学浴沉积合成硫化镉敏化太阳能电池,通过水热法制造钛纳米线。合成的CDS量子点被敏化至纳米多孔TiO_2薄膜以形成量子点敏化太阳能电池应用。 TNW的引入使电解质能够容易地穿透薄膜内,这增加了纳米线之间的界面接触,量子点和电解质导致太阳能电池的效率提高。我们的研究目的是了解量子点敏化太阳能电池的基本物理和性能,通过综合实验和建模研究选择了TiO 2纳米结构,敏化剂和电极的低成本。

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