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首页> 外文期刊>Angewandte Chemie >Elucidation of Diverse Solid-State Packing in a Family of Electron-Deficient Expanded Helicenes via Microcrystal Electron Diffraction (MicroED)**
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Elucidation of Diverse Solid-State Packing in a Family of Electron-Deficient Expanded Helicenes via Microcrystal Electron Diffraction (MicroED)**

机译:通过微晶电子衍射(微通)**阐明电子缺陷的膨胀螺旋系列中的多样固态包装

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摘要

Solid-state packing plays a defining role in the properties of a molecular organic material, but it is difficult to elucidate in the absence of single crystals that are suitable for X-ray diffraction. Herein, we demonstrate the coupling of divergent synthesis with microcrystal electron diffraction (MicroED) for rapid assessment of solid-state packing motifs, using a class of chiral nanocarbons-expanded helicenes-as a proof of concept. Two highly selective oxidative dearomatizations of a readily accessible helicene provided a divergent route to four electron-deficient analogues containing quinone or quinoxaline units. Crystallization efforts consistently yielded microcrystals that were unsuitable for single-crystal X-ray diffraction, but ideal for MicroED. This technique facilitated the elucidation of solid-state structures of all five compounds with <1.1 angstrom resolution. The otherwise-inaccessible data revealed a range of notable packing behaviors, including four different space groups, homochirality in a crystal for a helicene with an extremely low enantiomerization barrier, and nanometer scale cavities.
机译:固态堆积在分子有机材料的性质中起着决定性的作用,但在缺乏适合X射线衍射的单晶的情况下,很难阐明这一点。在此,我们展示了发散合成与微晶电子衍射(microD)的耦合,以快速评估固态填充基序,使用一类手性纳米碳扩展螺旋烯作为概念证明。一个容易获得的螺旋烯的两次高选择性氧化脱芳构化为四种含醌或喹恶啉单元的缺电子类似物提供了不同的途径。结晶过程中不断产生的微晶不适用于单晶X射线衍射,但适用于微晶体衍射。这项技术有助于以<1.1埃的分辨率阐明所有五种化合物的固态结构。否则无法获得的数据揭示了一系列显著的堆积行为,包括四个不同的空间群、具有极低对映体屏障的螺旋烯晶体中的同手性以及纳米级空穴。

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