Size-tunable silicon nanoparticles synthesized in solution via a redox reaction

通过氧化还原反应在溶液中合成尺寸可调的硅纳米粒子

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作者:Megan A Parker, Maria Letizia De Marco, Alexander Castro-Grijalba, Anissa Ghoridi, David Portehault, Stanislav Pechev, Elizabeth A Hillard, Sabrina Lacomme, Aurélie Bessière, Frédérique Cunin, Patrick Rosa, Mathieu Gonidec, Glenna L Drisko

Abstract

A current challenge in silicon chemistry is to perform liquid-phase synthesis of silicon nanoparticles, which would permit the use of colloidal synthesis techniques to control size and shape. Herein we show how silicon nanoparticles were synthesized at ambient temperature and pressure in organic solvents through a redox reaction. Specifically, a hexacoordinated silicon complex, bis(N,N'-diisopropylbutylamidinato)dichlorosilane, was reduced by a silicon Zintl phase, sodium silicide (Na4Si4). The resulting silicon nanoparticles were crystalline with sizes tuned from a median particle diameter of 15 nm to 45 nm depending on the solvent. Photoluminescence measurements performed on colloidal suspensions of the 45 nm diameter silicon nanoparticles indicated a blue emission signal, attributed to the partial oxidation of the Si nanocrystals or to the presence of nitrogen impurities.

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