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Advanced triple junction solar cell by employing inorganic-organic hybrid materials

机译:采用无机-有机杂化材料的先进三结太阳能电池

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We employed a novel inorganic-organic hybrid triple junction solar cell (IOHTC), with an inorganic silicon tandem cell (ITC) that is series connected to an organic solar cell (OSC) at the back of the ITC. The ITC is used to absorb the short wavelength part of the solar spectrum, while the organic bottom cell utilizes the long wavelength part of the spectrum. The IOHTC was fabricated with hydrogenated amorphous silicon (a-Si:H) and PTB7:PCBM as active layers. The optical gap (Eg) of the active layers of the front to the back cells was 1.83 eV, 1.80 eV and 1.55 eV, respectively. The efficiency of the optimized IOHTC reached a maximum of 7.70% with high open circuit voltage (Voc) 2.33 V. The observed Voc of the IOHTC was 96.31% of the sum of the Voc of the individual component cells. In one of the IOHTC, the total current density (Jsc) increased by 11.19% and 14.13% as compared with total Jsc of the OSC and ITC, respectively.
机译:我们采用了一种新型的无机-有机混合三结太阳能电池(IOHTC),并将无机硅串联电池(ITC)与ITC背面的有机太阳能电池(OSC)串联连接。 ITC用于吸收太阳光谱的短波部分,而有机底部电池则利用光谱的长波部分。用氢化非晶硅(a-Si:H)和PTB7:PCBM作为有源层制造IOHTC。从正面到背面电池的有源层的光学间隙(Eg)分别为1.83 eV,1.80 eV和1.55 eV。在高开路电压(Voc)2.33 V的情况下,优化的IOHTC的效率最高达到7.70%。观察到的IOHTC的Voc为各个组成单元的Voc之和的96.31%。在一种IOHTC中,总电流密度(Jsc)与OSC和ITC的总Jsc相比分别增加了11.19%和14.13%。

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