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Fabrication of ZnO Nanospheres and Application to Dye-sensitized Solar Cells

机译:ZnO纳米球的制备及其在染料敏化太阳能电池中的应用

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In this paper, pure ZnO nanospheres and IO_3~- ions doped ZnO nanospheres were prepared by heating under reflux with zinc acetate and diethylene glycol as raw materials, and the ZnO dye-sensitized solar cells (DSCs) were prepared. The influences of reaction time and KV-ions dope on ZnO properties were studied. DSCs properties prepared with obtained ZnO nanospheres were investied. ZnO nanospheres were characterized by XRD, SEM and infrared absorption spectrogram. The results showed that when the temperature was 160°C, ZnO nanospheres with diameter 100-800nm were obtained. When reaction time was 2h, ZnO diameter was about 500nm. When the reaction time was 24h, the diameter of ZnO was about 800nm with wider distribution. The ZnO DSCs were prepared by using ZnO nanopowders with different reaction time as photoanode. The photoelectric conversion efficiency of 24h-ZnO DSCs was the highest. The photoelectric conversion efficiency, open circuit voltage, short-circuit current and fill factor were 2.15%, 0.64V, 6.47 mA·cm~(-2), 0.52, respectively.
机译:本文以醋酸锌和二甘醇为原料,通过加热回流制备纯ZnO纳米球和掺杂IO_3〜-离子的ZnO纳米球,并制备了ZnO染料敏化太阳能电池。研究了反应时间和KV离子掺杂对ZnO性能的影响。研究了用获得的ZnO纳米球制备的DSCs性能。用XRD,SEM和红外吸收光谱对ZnO纳米球进行了表征。结果表明,当温度为160℃时,得到了直径为100-800nm的ZnO纳米球。当反应时间为2h时,ZnO直径约为500nm。当反应时间为24h时,ZnO的直径约为800nm,分布较宽。以反应时间不同的ZnO纳米粉为光阳极,制备了ZnO DSC。 24h-ZnO DSCs的光电转换效率最高。光电转换效率,开路电压,短路电流和填充系数分别为2.15%,0.64V,6.47 mA·cm〜(-2),0.52。

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