化学
氢键
范德瓦尔斯力
结晶度
共价键
位阻效应
红外光谱学
结晶学
单体
非共价相互作用
亚胺
酰胺
化学物理
计算化学
分子
立体化学
有机化学
聚合物
催化作用
作者
Sampath B. Alahakoon,Kui Tan,Haardik Pandey,Shashini D. Diwakara,Gregory T. McCandless,Daniel I. Grinffiel,Alejandra Durand-Silva,Timo Thonhauser,Ronald A. Smaldone
摘要
We report the synthesis and characterization of a new class of 2D-covalent organic frameworks, called COFamides, whose layers are held together by amide hydrogen bonds. To accomplish this, we have designed monomers with a nonplanar structure that arises from steric crowding, forcing the amide side groups out of plane with the COF sheets orienting the hydrogen bonds between the layers. The presence of these hydrogen bonds provides significant structural stabilization as demonstrated by comparison to control structures that lack hydrogen bonding capability, resulting in lower surface area and crystallinity. We have characterized both azine and imine-linked versions of these COFs, named COFamide-1 and -2, respectively, for their surface areas, pore sizes, and crystallinity. In addition to these more conventional characterization methods, we also used variable temperature infrared spectroscopy methods and van der Waals density functional calculations to directly observe the presence of hydrogen bonding.
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