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首页> 外文期刊>ACS nano >Control of PbSe quantum dot surface chemistry and photophysics using an alkylselenide ligand
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Control of PbSe quantum dot surface chemistry and photophysics using an alkylselenide ligand

机译:使用烷基硒化物配体控制PbSe量子点表面化学和光物理

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Figure Persented: We have synthesized alkylselenide reagents to replace the native oleate ligand on PbSe quantum dots (QDs) in order to investigate the effect of surface modification on their stoichiometry, photophysics, and air stability. The alkylselenide reagent removes all of the oleate on the QD surface and results in Se addition; however, complete Se enrichment does not occur, achieving a 53% decrease in the amount of excess Pb for 2 nm diameter QDs and a 23% decrease for 10 nm QDs. Our analysis suggests that the Se ligand preferentially binds to the {111} faces, which are more prevalent in smaller QDs. We find that attachment of the alkylselenide ligand to the QD surface enhances oxidative resistance, likely resulting from a more stable bond between surface Pb atoms and the alkylselenide ligand compared to Pb-oleate. However, binding of the alkylselenide ligand produces a separate nonradiative relaxation route that partially quenches PL, suggesting the formation of a dark hole-trap.
机译:有人认为:我们已经合成了烷基硒化物试剂来代替PbSe量子点(QDs)上的天然油酸酯配体,以便研究表面改性对其化学计量,光物理和空气稳定性的影响。烷基硒化物试剂去除了QD表面上的所有油酸盐并导致Se的添加;但是,不会发生完全的Se富集,对于直径为2 nm的量子点,过量Pb的量减少53%,对于10 nm量子点,则减少23%。我们的分析表明,Se配体优先结合{111}面,这在较小的QD中更为普遍。我们发现,烷基硒化物配体与QD表面的连接增强了抗氧化性,这可能是由于表面Pb原子与烷基硒化物配体之间的键合比油酸铅更稳定。但是,烷基硒化物配体的结合产生了一条单独的非辐射弛豫途径,该途径部分淬灭了PL,表明形成了一个暗空穴陷阱。

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