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Colloidal ZnO nanocrystals in dimethylsulfoxide: a new synthesis, optical, photo- and electroluminescent properties

机译:二甲基亚砜中的胶体状ZnO纳米晶体:新的合成,光学,光致和电致发光性质

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摘要

Stable colloidal solutions of zinc oxide in dimethylsulfoxide were synthesized via interaction between zinc(II) acetate and tetraalkylammonium hydroxides (alkyl–ethyl, propyl, butyl, and pentyl). Colloids of ZnO emit photoluminescence in a broad band with a maximum at 2.3–2.4 eV with quantum yields of up to 9–10% at room temperature and 15–16% at 80 K. The photoluminescence is supposed to originate from the radiative recombination of conduction band electrons with holes captured by deep traps having corresponding states in the band gap 1.0–1.2 eV above the valence band edge. The size of colloidal ZnO nanocrystals depends on the duration and temperature of the post-synthesis treatment and varies in the range of 3–6 nm. Growth of the ZnO nanocrystals can be terminated at any moment of the thermal treatment by freezing the colloidal solution or by addition of tetraethyl orthosilicate which hydrolyses forming core–shell ZnO@SiO_2 particles. ZnO nanocrystals introduced into polyethyleneimine films can be used as an active component of an LED emitting at an applied voltage higher than 13 V.
机译:通过乙酸锌(II)和氢氧化四烷基铵(烷基-乙基,丙基,丁基和戊基)之间的相互作用,合成了氧化锌在二甲亚砜中的稳定胶体溶液。 ZnO胶体在宽频带内发出光致发光,最大值为2.3–2.4 eV,在室温下的量子产率高达9–10%,在80 K下的量子产率为15–16%。传导带电子被深陷阱捕获,在价带边上方1.0–1.2 eV的带隙中具有相应的状态。胶体状ZnO纳米晶体的大小取决于合成后处理的持续时间和温度,并在3–6 nm范围内变化。 ZnO纳米晶体的生长可以在任何时候通过冻结胶体溶液或添加原硅酸四乙酯水解形成芯-壳ZnO @ SiO_2颗粒而终止,从而终止。引入聚乙烯亚胺膜中的ZnO纳米晶体可以用作以高于13 V的施加电压发光的LED的活性成分。

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