首页> 美国卫生研究院文献>Nanoscale Research Letters >Synthesis structure and photovoltaic property of a nanocrystalline 2H perovskite-type novel sensitizer (CH3CH2NH3)PbI3
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Synthesis structure and photovoltaic property of a nanocrystalline 2H perovskite-type novel sensitizer (CH3CH2NH3)PbI3

机译:纳米晶2H钙钛矿型新型敏化剂(CH3CH2NH3)PbI3的合成结构和光电性质

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摘要

A new nanocrystalline sensitizer with the chemical formula (CH3CH2NH3)PbI3 is synthesized by reacting ethylammonium iodide with lead iodide, and its crystal structure and photovoltaic property are investigated. X-ray diffraction analysis confirms orthorhombic crystal phase with a = 8.7419(2) Å, b = 8.14745(10) Å, and c = 30.3096(6) Å, which can be described as 2 H perovskite structure. Ultraviolet photoelectron spectroscopy and UV-visible spectroscopy determine the valence band position at 5.6 eV versus vacuum and the optical bandgap of ca. 2.2 eV. A spin coating of the CH3CH2NH3I and PbI2 mixed solution on a TiO2 film yields ca. 1.8-nm-diameter (CH3CH2NH3)PbI3 dots on the TiO2 surface. The (CH3CH2NH3)PbI3-sensitized solar cell with iodide-based redox electrolyte demonstrates the conversion efficiency of 2.4% under AM 1.5 G one sun (100 mW/cm2) illumination.
机译:通过使碘化乙铵与碘化铅反应,合成了化学式为(CH3CH2NH3)PbI3的新型纳米晶敏化剂,研究了其晶体结构和光电性能。 X射线衍射分析证实正交晶相具有a = 8.7419(2)Å,b = 8.14745(10)Å和c = 30.3096(6)Å,可以描述为2 H钙钛矿结构。紫外光电子能谱和紫外-可见能谱确定相对于真空的5.6 eV的价带位置和ca的光学带隙。 2.2 eV。在TiO2薄膜上旋涂CH3CH2NH3I和PbI2混合溶液的结果约为。 TiO2表面上直径为1.8 nm(CH3CH2NH3)PbI3的点。含碘化物氧化还原电解质的(CH3CH2NH 3 )PbI 3 敏化太阳能电池在AM 1.5 G一太阳(100 mW / cm < sup> 2 )照明。

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