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Formation of a superatom monolayer using gas-phase-synthesized Ta@Si_(16) nanocluster ions

机译:组建一个superatom单层使用gas-phase-synthesized Ta@Si_(16)纳米离子

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摘要

The controlled assembly of superatomic nanocluster ions synthesized in the gas phase is a key technology for constructing a novel series of functional nanomaterials. However, it is generally difficult to immobilize them onto a conductive surface while maintaining their original properties owing to undesirable modifications of their geometry and charge state. In this study, it has been shown that this difficulty can be overcome by controlling the donor-acceptor interaction between nanoclusters and surfaces. Cations of Ta-atom-encapsulated Si_(16) cage nanoclusters (Ta@Si_(16)) behaving as rare-gas-like superatoms are synthesized in the gas phase and deposited on conductive surfaces terminated with acceptor-like C_(60) and donor-like α-sexithiophene (6T) molecules. Scanning tunneling microscopy and spectroscopy have demonstrated that Ta@Si_(16) cations can be densely immobilized onto C_(60)-terminated surfaces while retaining their cage shape and positive charge, which is realized by creating binary charge transfer complexes (Ta@Si_(16)~+-C_(60)~) on the surfaces. The Ta@Si_(16) nanoclusters exhibit excellent thermal stability on C_(60)-teminated surfaces similar to those in the gas phase, whereas the nanoclusters destabilize at room temperature on 6T-terminated surfaces owing to the loss of electronic closure via a change in the charge state.
机译:superatomic受控组装的纳米气相中的离子合成是一个关键技术构建一个小说系列功能纳米材料。通常很难固定到一个导电表面,同时保持他们由于不良的原始属性修改他们的几何形状和电荷状态。在这项研究中,这已被证明通过控制的困难是可以克服的亲水相互作用制备和表面。Si_(16)笼制备(Ta@Si_(16))的行为作为rare-gas-like superatoms合成气相沉积在导电表面终止与acceptor-like C_(60)和donor-likeα-sexithiophene (6 t)分子。扫描隧道显微镜和光谱学已经证明Ta@Si_(16)阳离子可以吗人口固定化在C_(60)终止表面形状,同时保留他们的笼子里正电荷,意识到通过创建二元电荷转移复合物(Ta@Si_ (16) ~ + -C_(60) ~)的表面。Ta@Si_(16)制备展览优秀的热稳定C_ (60) -teminated表面相似那些在气相,而发光在室温下稳定t-terminated 6日表面由于失去电子关闭通过改变电荷状态。

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