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酸性亚硒酸盐作为用于合成CdSe量子点的新型硒前驱体。

Acid selenites as new selenium precursor for CdSe quantum dot synthesis.

作者信息

Souza Junior João B, Mouriño Beatriz, Gehlen Marcelo H, Moraes Daniel A, Bettini Jefferson, Varanda Laudemir C

机构信息

Colloidal Materials Group, Physical-Chemistry Department, Instituto de Química de São Carlos, Universidade de São Paulo, 13566-590, São Carlos - SP, Brazil.

Brazilian Nanotechnology National Laboratory (LNNano), Brazilian Center for Research in Energy and Materials (CNPEM), 13083-970, Campinas - SP, Brazil.

出版信息

Heliyon. 2023 Dec 15;10(1):e23837. doi: 10.1016/j.heliyon.2023.e23837. eCollection 2024 Jan 15.

Abstract

Chemical precursors for nanomaterials synthesis have become essential to tune particle size, composition, morphology, and unique properties. New inexpensive precursors investigation that precisely controls these characteristics is highly relevant. We studied new Se precursors, the acid selenites (R-O-SeOOH), to synthesize CdSe quantum dots (QDs). They were produced at room temperature by the Image 1 reaction with alcohols having different alkyl chains and were characterized by H NMR confirming their structures. This unprecedented precursor generates high-quality CdSe nanocrystals with narrow size distribution in the zinc-blend structure showing controlled optical properties. Advanced characterization detailed the CdSe structure showing stacking fault defects and its dependence on the used R-O-SeOOH. The QDs formation was examined using a time-dependent growth kinetics model. Differences in the nanoparticle surface structure influenced the optical properties, and they were correlated to the Se-precursor nature. Small alkyl chain acid selenites generally lead to more controlled QDs morphology, while the bigger alkyl chain leads to slightly upper quantum yields. Acid selenites can potentially replace Se-precursors at competitive costs in the metallic chalcogenide nanoparticles. Image 1 is chemically stable, and alcohols are cheap and less toxic than the reactants used today, making acid selenites a more sustainable Se precursor.

摘要

用于纳米材料合成的化学前驱体对于调节颗粒大小、组成、形态和独特性能已变得至关重要。研究能够精确控制这些特性的新型廉价前驱体具有高度相关性。我们研究了新型硒前驱体——亚硒酸(R-O-SeOOH),以合成CdSe量子点(QDs)。它们在室温下通过与具有不同烷基链的醇发生图1所示反应生成,并通过核磁共振氢谱(H NMR)对其结构进行了表征。这种前所未有的前驱体能够生成高质量的CdSe纳米晶体,其在闪锌矿结构中的尺寸分布狭窄,光学性质可控。先进的表征详细说明了CdSe结构中存在堆垛层错缺陷及其对所使用的R-O-SeOOH的依赖性。使用随时间变化的生长动力学模型对量子点的形成进行了研究。纳米颗粒表面结构的差异影响了光学性质,并且这些差异与硒前驱体的性质相关。短烷基链的亚硒酸通常会导致量子点的形态更易于控制,而长烷基链则会使量子产率略高。在金属硫族化物纳米颗粒中,亚硒酸有可能以具有竞争力的成本替代硒前驱体。图1中的反应化学性质稳定,并且醇类比目前使用的反应物便宜且毒性更小,这使得亚硒酸成为一种更具可持续性的硒前驱体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9c3/10777003/94caec6f70c2/gr001.jpg

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