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Microfluidics for synthesis and morphology control of hierarchical porous covalent organic polymer monolith

机译:分层多孔共价有机聚合物整体的合成和形态控制的微流体

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The hierarchical porous monoliths are important in enhancing diffusion efficiency and reducing pressure drop in heterogeneous catalysis. Here, a practical way to synthesize hierarchical porous covalent organic polymer (COP) monolith by using droplet microfluidic is proposed. The interconnected macro pores (up to similar to 130 nm) were created within intrinsic microporous COP structures by the further condensation of COP particles in the confined microdroplets. Concentration, flow rate ratio, catalyst, etc., were screened to figure out the superior condition for producing different hierarchical porous COP monolith in microfluidic. Rod-like and spherical monolith with gradient sizes were controllable synthesized to satisfy the requirements of different packing density for practical applications. Significantly, our homemade single microreactor is able to produce the spherical hierarchical porous COP monolith with a high space-time yield of 413 kg.m(-3).day(-1) at optimized condition, which provides a promising scale-up method to synthesize COP monoliths for but not limit to industrial heterogeneous catalysis. (C) 2018 Elsevier Ltd. All rights reserved.
机译:分层多孔整料在增强扩散效率和减少异质催化中的压降方面是重要的。这里,提出了通过使用液滴微流体来合成分层多孔共价有机聚合物(COP)整体的实用方法。通过在狭窄的微量水解电池中的COP颗粒进一步冷凝,在内在微孔COP结构中产生互连的宏观孔(最高可达130nm)。筛选浓缩,流速比,催化剂等,以弄清出在微流体中产生不同分层多孔核甲型的优异条件。具有梯度尺寸的棒状和球形单线是可控的合成,以满足实际应用的不同包装密度的要求。显着地,我们的自制单个微反应器能够在优化条件下生产具有413kg.m(-3)。日(-1)的高空时间产率的球形等级多孔核荷载度,这提供了有希望的扩展方法合成COP单片,但不限于工业异质催化。 (c)2018年elestvier有限公司保留所有权利。

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