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Application research of CdS:Eu3+ quantum dots-sensitized TiO2 nanotube solar cells

机译:CdS:Eu3 +量子点敏化TiO2纳米管太阳能电池的应用研究

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Trivalent Eu3+-doped CdS quantum dot (CdS: Eu3+ QD)-sensitized TiO2 nanotube arrays (TNTAs) solar cells are prepared by using the direct adsorption method. The influences of sensitization time, sensitization temperature, and Eu3+ ion concentrations are investigated systematically. The photo-current of the CdS: Eu3+ QDs/TiO2 nanotubes appear at the main absorption region of 320-480 nm, and the maximum incident photon to the current conversion efficiency (IPCE) value is 21% at 430 nm when the sensitization condition is 4% doping Eu3+ concentration, 60 degrees C sensitization temperature, 8 h sensitization time. Compared with the un-doped CdS QD-sensitized TNTAs, the conversion efficiency and IPCE of CdS: Eu3+ QDs/TNTAs are two times and three times than that of un-doped CdS QDs sensitized TNTAs. This scenario exhibits the potential applications of rare earth elements in QD-sensitized solar cells. (C) 2016 Elsevier Ltd. All rights reserved.
机译:采用直接吸附法制备了掺杂三价Eu3 +的CdS量子点(CdS:Eu3 + QD)敏化的TiO2纳米管阵列(TNTAs)太阳能电池。系统研究了敏化时间,敏化温度和Eu3 +离子浓度的影响。 CdS:Eu3 + QDs / TiO2纳米管的光电流出现在主吸收区320-480 nm处,当敏化条件为430 nm时,最大入射光子在430 nm处的电流转换效率(IPCE)值为21%。 4%掺杂Eu3 +浓度,60℃敏化温度,8 h敏化时间。与未掺杂的CdS QD敏化TNTA相比,CdS:Eu3 + QDs / TNTAs的转换效率和IPCE分别是未掺杂的CdS QD敏化TNTA的两倍和三倍。这种情况展示了稀土元素在量子点敏感的太阳能电池中的潜在应用。 (C)2016 Elsevier Ltd.保留所有权利。

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