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The Advent of Mesoscopic Injection Solar Cells

机译:介观注射太阳能电池的出现

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Mesoscopic injection solar cells operate in an entirely different fashion than conventional solar p-n junction devices. Mimicking the principles that natural photosynthesis has used successfully over the last 3.5 billion years in solar energy conversion, they achieve the separation of light harvesting and charge carrier transport. The semiconductors used in conventional cells assume both functions simultaneously imposing stringent demands on purity and entailing high material and production costs. The prototype of this new PV family is the dye-sensitized solar cell (DSC). The DSC has made phenomenal progress since its discovery was announced in the scientific literature only 14 years ago. Conversion efficiencies of 11.3 percent and excellent stability have been reached rendering it a credible alternative to conven-tional p-n junction photovoltaic devices. The industrial development is advancing rapidly. Several enterprises currently produce modules and flexible cells on a pilot scale and commercial manufacturing of the DSC has recently been announced. It is asserted that this type of cell is a viable contender for large-scale future solar energy conversion systems on the bases of cost, efficiency, stability and availability, as well as environmental compatibility.
机译:介观注入太阳能电池以与传统太阳能p-n结器件完全不同的方式工作。模仿自然光合作用在过去35亿年中成功用于太阳能转换的原理,它们实现了光收集和电荷载流子传输的分离。常规电池中使用的半导体同时具有两种功能,这对纯度提出了严格的要求,并导致高材料和生产成本。这种新的PV系列的原型是染料敏化太阳能电池(DSC)。自从14年前科学文献中宣布其发现以来,DSC取得了惊人的进步。已经实现了11.3%的转换效率和出色的稳定性,使其成为传统的p-n结光伏器件的可靠替代品。工业发展迅速发展。目前有几家企业正在中试规模生产模块和柔性电池,并且最近宣布了DSC的商业化生产。据称,基于成本,效率,稳定性和可用性以及环境兼容性,这种类型的电池是未来大规模太阳能转换系统的可行竞争者。

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