Muthu Chinnadurai, Vijayan Anuja, Nair Vijayakumar C
Photosciences and Photonics Section, CSIR-National Institute for Interdisciplinary Science and Technology (NIIST), Thiruvananthapuram, 695 019, India.
Academy of Scientific and Innovative Research (AcSIR), New Delhi, 110 001, India.
Chem Asian J. 2017 May 4;12(9):988-995. doi: 10.1002/asia.201601672. Epub 2017 Apr 4.
Hybrid perovskites have created enormous research interest as a low-cost material for high-performance photovoltaic devices, light-emitting diodes, photodetectors, memory devices and sensors. Perovskite materials in nanocrystal form that display intense luminescence due to the quantum confinement effect were found to be particularly suitable for most of these applications. However, the potential use of perovskite nanocrystals as a light-harvesting antenna for possible applications in artificial photosynthesis systems is not yet explored. In the present work, we study the light-harvesting antenna properties of luminescent methylammonium lead bromide (CH NH PbBr )-based perovskite nanocrystals using fluorescent dyes (rhodamine B, rhodamine 101, and nile red) as energy acceptors. Our studies revealed that CH NH PbBr nanocrystals are an excellent light-harvesting antenna, and efficient fluorescence resonance energy transfer occurs from the nanocrystals to fluorescent dyes. Further, the energy transfer efficiency is found to be highly dependent on the number of anchoring groups and binding ability of the dyes to the surface of the nanocrystals. These observations may have significant implications for perovskite-based light-harvesting devices and their possible use in artificial photosynthesis systems.
杂化钙钛矿作为一种用于高性能光伏器件、发光二极管、光电探测器、存储器件和传感器的低成本材料,引发了巨大的研究兴趣。人们发现,由于量子限域效应而呈现出强烈发光的纳米晶形式的钙钛矿材料特别适用于上述大多数应用。然而,钙钛矿纳米晶作为光捕获天线在人工光合作用系统中可能应用的潜在用途尚未得到探索。在本工作中,我们使用荧光染料(罗丹明B、罗丹明101和尼罗红)作为能量受体,研究了基于发光甲基溴化铅铵(CH₃NH₃PbBr₃)的钙钛矿纳米晶的光捕获天线特性。我们的研究表明,CH₃NH₃PbBr₃纳米晶是一种优异的光捕获天线,并且从纳米晶到荧光染料发生了高效的荧光共振能量转移。此外,发现能量转移效率高度依赖于锚定基团的数量以及染料与纳米晶表面的结合能力。这些观察结果可能对基于钙钛矿的光捕获器件及其在人工光合作用系统中的可能应用具有重要意义。