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High efficiency photoluminescence from silicon nanocrystals prepared by plasma synthesis and organic surface passivation

机译:通过等离子体合成和有机表面钝化制备的硅纳米晶体的高效光致发光

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摘要

An efficient synthesis route for highly luminescent silicon quantum dots is presented. Silicon nanocrystals were synthesized in the gas phase using an argon-silane non-thermal plasma in a continuous flow reactor. Liquid phase surface passivation was used to improve the optical properties and avoid surface oxidation of the silicon quantum dots. Various alkenes, such as octadecene, dodecene and styrene, were covalently bonded to the plasma-produced particles, while strictly avoiding exposure of the raw powder to oxidizing agents. Stable colloidal solutions of silicon quantum dots with ensemble quantum yields between 60% and 70% were achieved.
机译:提出了一种高发光硅量子点的有效合成途径。在连续流动反应器中使用氩硅烷非热等离子体在气相中合成硅纳米晶体。液相表面钝化用于改善光学性能并避免硅量子点的表面氧化。各种烯烃(例如十八碳烯,十二碳烯和苯乙烯)共价键合到等离子体产生的颗粒上,同时严格避免将原始粉末暴露于氧化剂。获得了具有60%至70%整体量子产率的硅量子点的稳定胶体溶液。

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