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首页> 外文期刊>Advanced Functional Materials >A CdSe Nanowire/Quantum Dot Hybrid Architecture for Improving Solar Cell Performance
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A CdSe Nanowire/Quantum Dot Hybrid Architecture for Improving Solar Cell Performance

机译:CdSe纳米线/量子点混合架构,用于提高太阳能电池性能

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摘要

Incorporating colloidal CdSe quantum dots (QDs) into CdSe nanowire (NW)-based photoelectrochemical solar cells increases their incident-photon-to-carrier conversion efficiencies (IPCE) from 13% to 25% at 500 nm. While the effect could, in principle, stem from direct absorption and subsequent carrier generation by QDs, the overall IPCE increase occurs across the entire visible spectrum, even at wavelengths where the dots do not absorb light. This beneficial effect originates from an interplay between NWs and QDs where the latter fill voids between interconnected NWs, providing electrically accessible conduits, in turn, enabling better carrier transport to electrodes. The presence of QDs furthermore reduces the residual polarization anisotropy of random NW networks. Introducing QDs therefore addresses an important limiting constraint of NW photoelectrochemical solar cells. The effect appears to be general and may aid the future design and implementation of other NW-based photovoltaics.
机译:将胶体CdSe量子点(QD)掺入基于CdSe纳米线(NW)的光电化学太阳能电池中,可将其入射光子到载流子的转换效率(IPCE)在500 nm处从13%提高到25%。从原理上讲,这种影响可能是由于量子点的直接吸收和随后的载流子产生而引起的,但整个IPCE的增加也出现在整个可见光谱范围内,即使在点不吸收光的波长处也是如此。这种有益效果源自NW和QD之间的相互作用,后者填充了互连NW之间的空隙,从而提供了电可及的导管,从而使载流子能够更好地传输到电极。 QD的存在进一步降低了随机NW网络的残留极化各向异性。因此,引入QD解决了NW光电化学太阳能电池的一个重要限制因素。效果似乎是普遍的,并且可能有助于其他基于NW的光伏产品的未来设计和实现。

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  • 来源
    《Advanced Functional Materials 》 |2010年第9期| P.1464-1472| 共9页
  • 作者单位

    Department of Chemical and Biomolecular Engineering Radiation Laboratory University of Notre Dame Notre Dame, IN, 46556 (USA);

    rnDepartment of Chemistry and Biochemistry Radiation Laboratory University of Notre Dame Notre Dame, IN, 46556 (USA) Department of Chemical and Biomolecular Engineering Radiation Laboratory University of Notre Dame Notre Dame, IN, 46556 (USA);

    rnDepartment of Chemistry and Biochemistry Radiation Laboratory University of Notre Dame Notre Dame, IN, 46556 (USA);

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