首页> 外文期刊>Nanoscale >Facile synthesis of ultra-small PbSe nanorods for photovoltaic application
【24h】

Facile synthesis of ultra-small PbSe nanorods for photovoltaic application

机译:灵巧的小的硒化铅纳米棒的合成光伏应用

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Nanocrystal array solar cells based on lead chalcogenide quantum dots (QDs) have recently achieved a high power conversion efficiency of over 8%. The device performance is expected to further increase by using 1-dimensional nanorods (NRs), due to their improved carrier transport over zero-dimensional quantum dots. However, previously reported PbSe NRs have not been used in solar cells mainly because of their large diameters, resulting in a small bandgap unsuitable for photovoltaic application. In this work, we have demonstrated a new method for synthesizing monodisperse ultra-small PbSe NRs with the diameter approaching 2 nm (E-g > 1.2 eV), which can be attributed to the use of diphenylphosphine (DPP) and trans-2-octenoic acid (t-2-OA). The introduction of trace DPP can greatly lower the reaction temperature, leading to reduced diameters for the obtained PbSe NRs as well as largely increased yield. The use of short-chain t-2-OA together with oleic acid as capping ligands results in high monomer reactivity, fast nucleus diffusion and high growth rate, which realize the anisotropic growth of ultra-small PbSe NRs at low reaction temperatures. The PbSe NRs show n-type properties and high electron mobility as measured using field-effect transistors. The PbSe NRs with narrow diameters also demonstrate a suitable bandgap for photovoltaic application. They are used for the first time in solar cells and their improved efficiency is demonstrated when used together with QDs.
机译:基于领先的纳米晶体太阳能电池阵列硫族化物量子点(量子点)最近实现了高功率转换效率超过8%。进一步提高利用维纳米棒(NRs),由于其改进的航空运输在零维量子点。之前报道的硒化铅NRs尚未使用太阳能电池主要是因为他们的大直径,导致一个小隙不适合光伏应用程序。工作中,我们已经展示了一种新方法合成单分散的硒化铅NRs超小与直径接近2 nm (eg > 1.2电动汽车),这可以归因于使用diphenylphosphine(民进党)和trans-2-octenoic酸(t-2-OA)。大大降低反应温度,领先为获得的硒化铅NRs减少直径很大程度上增加了产量。以油酸为短链t-2-OA在一起限制配体导致高的单体反应性、快速核扩散和高增长速度,实现各向异性生长超薄硒化铅的关系,在低反应温度。和高电子迁移率来衡量场效应晶体管。狭窄的直径也展示一个合适的隙的光伏应用。第一次使用在太阳能电池和他们使用时提高效率了量子点在一起。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号