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Thiol-Free Synthesized Copper Indium Sulfide Nanocrystals as Optoelectronic Quantum Dot Solids

机译:无硫醇合成的铜铟硫纳米晶体作为光电量子点固体

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摘要

Colloidal semiconductor nanocrystals are a platform for developing applications in optoelectronics but are mostly based on materials with toxic elements. Copper indium sulfide nanocrystals (CIS NCs) are an alternative but have been investigated in only a few reports as a functional optoelectronic film. We synthesized various sizes of emitting copper-poor CIS NCs in the absence of dodecanethiol. We employed a Zn-shelling as a surface stabilizing agent that yielded high quantum yield and stable colloids in both organic and aqueous solvents. We found that these nanocrystals possess high exciton binding energies and exhibit a decrease in photoluminescence lifetimes with distance under the Forster relationship. We then deposited CIS QD films by solid-state ligand exchange and characterized their field effect transistor and photoconductive characteristics.
机译:胶体半导体纳米晶体是开发光电应用的平台,但主要基于具有毒性元素的材料。硫化铜铟纳米晶体(CIS NCs)是一种替代方法,但仅在少数几篇报道中作为功能性光电薄膜进行了研究。在不存在十二烷硫醇的情况下,我们合成了各种尺寸的发射出贫铜的CIS NC。我们使用锌脱壳作为表面稳定剂,可在有机和水性溶剂中产生高量子产率和稳定的胶体。我们发现,这些纳米晶体具有高的激子结合能,并且在Forster关系下,随着距离的增加,光致发光寿命降低。然后,我们通过固态配体交换沉积CIS QD膜,并表征了它们的场效应晶体管和光电导特性。

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