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影响氧化锌染料敏化太阳能电池功率转换效率的因素:纳米线与纳米颗粒

Factors Affecting the Power Conversion Efficiency in ZnO DSSCs: Nanowire vs. Nanoparticles.

作者信息

Giannouli Myrsini, Govatsi Κaterina, Syrrokostas George, Yannopoulos Spyros N, Leftheriotis George

机构信息

Renewable Energy and Environment Laboratory, Physics Department, University of Patras, Rion GR-26500, Greece.

Foundation for Research and Technology Hellas, Institute of Chemical Engineering Sciences (FORTH/ICE-HT), P.O. Box 1414, Rio-Patras GR-26504, Greece.

出版信息

Materials (Basel). 2018 Mar 9;11(3):411. doi: 10.3390/ma11030411.

Abstract

A comparative assessment of nanowire versus nanoparticle-based ZnO dye-sensitized solar cells (DSSCs) is conducted to investigate the main parameters that affect device performance. Towards this aim, the influence of film morphology, dye adsorption, electron recombination and sensitizer pH on the power conversion efficiency (PCE) of the DSSCs is examined. Nanoparticle-based DSSCs with PCEs of up to 6.2% are developed and their main characteristics are examined. The efficiency of corresponding devices based on nanowire arrays (NW) is considerably lower (0.63%) by comparison, mainly due to low light harvesting ability of ZnO nanowire films. The dye loading of nanowire films is found to be approximately an order of magnitude lower than that of nanoparticle-based ones, regardless of their internal surface area. Inefficient anchoring of dye molecules on the semiconductor surface due to repelling electrostatic forces is identified as the main reason for this low dye loading. We propose a method of modifying the sensitizer solution by altering its pH, thereby enhancing dye adsorption. We report an increase in the PCE of nanowire DSSCs from 0.63% to 1.84% as a direct result of using such a modified dye solution.

摘要

对基于纳米线和纳米颗粒的氧化锌染料敏化太阳能电池(DSSC)进行了比较评估,以研究影响器件性能的主要参数。为此,研究了薄膜形态、染料吸附、电子复合和敏化剂pH值对DSSC功率转换效率(PCE)的影响。开发了PCE高达6.2%的基于纳米颗粒的DSSC,并对其主要特性进行了研究。相比之下,基于纳米线阵列(NW)的相应器件的效率要低得多(0.63%),主要是因为ZnO纳米线薄膜的光捕获能力较低。发现纳米线薄膜的染料负载量比基于纳米颗粒的薄膜低约一个数量级,无论它们的内表面积如何。由于排斥静电力导致染料分子在半导体表面锚定效率低下被认为是染料负载量低的主要原因。我们提出了一种通过改变敏化剂溶液的pH值来对其进行改性的方法,从而增强染料吸附。我们报告说,使用这种改性染料溶液直接导致纳米线DSSC的PCE从0.63%提高到1.84%。

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