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Rhodium growth on Cu2S nanocrystals yielding hybrid nanoscale inorganic cages and their synergistic properties

机译:铑在Cu2S纳米晶体上的生长产生杂化纳米级无机笼及其协同性能。

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Metal decoration on the edges of highly faceted Cu2S semiconductor nanocrystals yields a family of nano-inorganic caged (NICed) hybrid semiconductor-metal nanoparticles. We present the growth of rhodium and of ruthenium-rhodium mixture to give Rh-Cu2S and RuRh-Cu2S hybrid nanoparticle cages, respectively. Transmission electron microscopy affirms the growth of the metals selectively on the nanocrystal edges within a narrow temperature window. The oxidation level of the metal frame could also be controlled during the reaction stages as characterized by X-ray photoelectron spectroscopy, providing additional variation for the hybrid nanoparticle cages. The synergistic electronic properties of the hybrid nanocages were observed on a single particle level using scanning tunneling spectroscopy. The various cage nanoparticles are also of interest as possible catalysts for metal and metal-oxide catalyzed reactions.
机译:在高度刻面的Cu2S半导体纳米晶体的边缘上进行金属装饰,可产生一族纳米无机笼状(NICed)杂化半导体-金属纳米颗粒。我们提出了铑和钌-铑混合物的生长,分别给出了Rh-Cu2S和RuRh-Cu2S杂化纳米粒子笼。透射电子显微镜证实了在狭窄的温度窗口内纳米晶体边缘上金属的选择性生长。还可以通过X射线光电子能谱表征在反应阶段中金属框架的氧化水平,从而为杂化纳米粒子笼子提供了额外的变化。使用扫描隧道光谱法在单个颗粒水平上观察到了混合纳米笼的协同电子性能。各种笼状纳米颗粒也可能作为金属和金属氧化物催化反应的催化剂而受到关注。

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