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首页> 外文期刊>Angewandte Chemie >Hierarchical Nanomanufacturing: From Shaped Zeolite Nanoparticles to High-Performance Separation Membranes
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Hierarchical Nanomanufacturing: From Shaped Zeolite Nanoparticles to High-Performance Separation Membranes

机译:分层纳米制造:从异型沸石纳米颗粒到高性能分离膜

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摘要

Despite more than a decade of intense research on the high-resolution selectivity of thin zeolite films as alternatives to energy-intensive industrial separations, membranes consisting of intergrown, oriented zeolite crystals have fallen short of gaining wide commercial application. Factors including poor performance, high cost, and difficulties in scale up have contributed to this, and have also stunted their application in other niche markets. Until recently, rational design of these materials was limited because of the elusive mechanism of zeolite growth, and forced more empirical approaches. New understanding of zeolite growth along with recent advances in the molecular engineering of crystal microstructure and morphology, assembly of crystal monolayers, and synthesis of ordered films constitute a strong foundation for meeting stringent industrial demands in the future. Together with new processing capabilities, such a foundation should make it possible to synthesize commercially viable zeolite membranes through hierarchical approaches. Such advances open exciting prospects beyond the realm of separations for assembly of novel and complex functional materials including molecular sensors, mechanically stable dielectrics, and novel reaction-diffusion devices.
机译:尽管已进行了十多年的研究,对薄沸石膜作为高能耗工业分离方法的替代品的高分辨率选择性进行了深入研究,但由互生的定向沸石晶体组成的膜仍未获得广泛的商业应用。包括性能低下,成本高以及难以扩展等因素,导致了这种情况,并且也阻碍了它们在其他细分市场中的应用。直到最近,由于沸石生长的难以捉摸的机制,这些材料的合理设计还受到限制,并迫使人们采用更多的经验方法。对沸石生长的新认识以及晶体微观结构和形态的分子工程,晶体单分子层的组装以及有序薄膜的合成方面的最新进展,为满足未来的严格工业需求奠定了坚实的基础。加上新的处理能力,这样的基础将使通过分级方法合成商业上可行的沸石膜成为可能。这些进步为组装新型和复杂功能材料(包括分子传感器,机械稳定的电介质和新型反应扩散装置)的分离领域带来了令人兴奋的前景。

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