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据《新产品世界》1993年第2期报道,瑞士联邦工艺研究所的一位工程师设计出一种可嵌在玻璃间的厚1/4英寸的光电板,效率极高,但造价却低,最终可藉玻璃窗发电发热。光电板为一块导电的氧化钛,外涂染料作为天线,染料分子一个个地传递电子。光又将染料分子的电子击出,将其传往氧化钛,后者将电子形成电流。电流传至光电板另一面的氧化锡涂层,负电荷传至电解液中的中性碘分子,后乾收集电子送回到氧化钛导电体中,过程周而复始。光电转换效率7—12%。复合光电
According to New Product World, 2nd issue, 1993, an engineer at the Swiss Federal Institute of Technology designed a thick 1/4-inch photovoltaic panel that can be embedded between the glass panels. The efficiency is high but the cost is low. Finally, you can use the glass window to generate heat. The photovoltaic panel is a conductive titanium oxide coated with dye as an antenna. The dye molecules transfer electrons one by one. The light, in turn, ejects the electrons of the dye molecules and transfers them to the titanium oxide, which forms electrons into the current. The current is passed to the tin oxide coating on the other side of the photovoltaic panel. The negative charge is transferred to neutral iodine molecules in the electrolyte. After the dry collector electrons are sent back to the oxidized titanium oxide, the process is repeated. Photoelectric conversion efficiency 7-12%. Composite photoelectric