Institute for Integrated Cell-Material Sciences (iCeMS), Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501 (Japan); Present address: Chemistry Division, Department of Sciences and Humanities, VFSTR University, Vadlamudi-522 213 (India).
Angew Chem Int Ed Engl. 2014 Jul 28;53(31):8225-30. doi: 10.1002/anie.201404306. Epub 2014 Jun 27.
We demonstrate a new approach to superhydrophobic porous coordination polymers by incorporating an anisotropic crystal morphology featuring a predominant surface that is highly corrugated and terminated by aromatic hydrocarbon moieties. The resulting low-energy surface provides particularly promising hydrophobic properties without the need for postsynthetic modifications or surface processing that would block the porosity of the framework. Consequently, hydrophobic organic molecules and water vapor are able to penetrate the surface and be densely accommodated within the pores, whereas bulk water is repelled as a result of the exterior surface corrugation derived from the aromatic surface groups. This study provides a new strategy for the design and development of superhydrophobic porous materials.
我们通过引入具有主要表面高度波纹状和芳香烃基团末端的各向异性晶体形态,展示了一种超疏水多孔配位聚合物的新方法。所得低能表面提供了特别有前途的疏水性,而无需进行后合成修饰或表面处理,这些处理会阻塞骨架的孔隙率。因此,疏水分子和水蒸气能够穿透表面并在孔内密集容纳,而由于源自芳香表面基团的外部表面波纹,大块水则被排斥。本研究为超疏水多孔材料的设计和开发提供了一种新策略。