Angelé Léo, Dreyfuss Sébastien, Dubertret Benoit, Mézailles Nicolas
Laboratoire Hétérochimie Fondamentale et Appliquée (LHFA), Université Toulouse 3-Paul Sabatier and CNRS UMR 5069, 31062 Cedex 9 Toulouse, France.
Nexdot, 102 Avenue Gaston Roussel, 93230 Romainville, France.
Inorg Chem. 2021 Feb 15;60(4):2271-2278. doi: 10.1021/acs.inorgchem.0c03117. Epub 2021 Jan 27.
The role of indium carboxylate precursors in the synthesis of monodisperse InP quantum dots was investigated. The reaction between acid-free indium palmitate and tris(trimethylsilyl)phosphine (P(TMS)) was monitored by using high-temperature P NMR, indicating the presence of a single molecular phosphorus species throughout the duration of the reaction. The addition of varying amounts of carboxylic acid and its effects on both the reaction kinetics and the optical properties of InP QDs were studied. In the presence of acid, rapid protonation of P(TMS) led to the formation of a mixture of four HP(TMS) species, resulting in the poorer controlled formation of InP nanocrystals. Upon deposition of a gradated ZnSeS shell on the synthesized InP core, luminescent quantum dots were obtained (QY 67%; PL: FWHM 40 nm).
研究了羧酸铟前驱体在单分散InP量子点合成中的作用。通过高温³¹P NMR监测了无酸棕榈酸铟与三(三甲基硅基)膦(P(TMS))之间的反应,表明在整个反应过程中存在单一分子磷物种。研究了不同量羧酸的添加及其对InP量子点反应动力学和光学性质的影响。在有酸存在的情况下,P(TMS)的快速质子化导致形成四种HP(TMS)物种的混合物,从而导致InP纳米晶体的形成控制较差。在合成的InP核上沉积渐变的ZnSeS壳后,获得了发光量子点(量子产率67%;半高宽40nm)。