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首页> 外文期刊>Angewandte Chemie >Trapping N-2 and CO2 on the Sub-Nano Scale in the Confined Internal Spaces of Open-Cage C-60 Derivatives: Isolation and Structural Characterization of the Host-Guest Complexes
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Trapping N-2 and CO2 on the Sub-Nano Scale in the Confined Internal Spaces of Open-Cage C-60 Derivatives: Isolation and Structural Characterization of the Host-Guest Complexes

机译:在笼式C-60衍生物密闭内部空间中以亚纳米尺度捕获N-2和CO2:宿主-客体复合物的分离和结构表征

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摘要

An open-cage C-60 tetraketone with a large opening was able to encapsulate N-2 and CO2 molecules after its exposure to high pressures of N-2 and CO2 gas. A subsequent selective reduction of one of the four carbonyl groups on the rim of the opening induced a contraction of the opening (>2) and trapped the guest molecules inside 2. The thus-obtained host-guest complexes N-2@2 and CO2@2 could be isolated by recycling HPLC, and were found to be stable at room temperature. The molecular structures of N-2@2 and CO2@2 were determined by single-crystal X-ray diffraction analyses, and revealed a short N N triple bond for the encapsulated N-2, as well as an unsymmetric molecular structure for the encapsulated molecule of CO2. The IR spectrum of CO2@2 suggested that the rotation of the encapsulated molecule of CO2 is partially restricted, which was supported by DFT calculations.
机译:具有大开口的开笼式C-60四酮在暴露于N-2和CO2气体的高压后能够包封N-2和CO2分子。随后选择性还原开口边缘上的四个羰基之一,导致开口收缩(> 2)并将客体分子捕获在2中。这样获得的宿主-客体复合物N-2 @ 2和CO2通过再循环HPLC可以分离出@ 2,并且发现其在室温下是稳定的。通过单晶X射线衍射分析确定了N-2 @ 2和CO2 @ 2的分子结构,结果表明被包封的N-2具有短的NN三键,并且被包封的分子具有不对称的分子结构二氧化碳。 CO2 @ 2的红外光谱表明,被包封的CO2分子的旋转受到了部分限制,这得到DFT计算的支持。

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