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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Low-temperature fabrication of Cu(I) sites in zeolites by using a vapor-induced reduction strategy
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Low-temperature fabrication of Cu(I) sites in zeolites by using a vapor-induced reduction strategy

机译:气相诱导还原法低温制备沸石中的Cu(I)位

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摘要

Due to their versatility, nontoxicity, and low cost, Cu(I) ion exchanged zeolites are of great interest for various applications. Despite many attempts, the development of an efficient, controllable, and energy-saving approach to fabricate Cu(I) sites in zeolites remains an open question. In this study, a strategy was developed to convert Cu(II) in zeolites to Cu(I) selectively using vapor-induced reduction (VIR) with methanol. The methanol vapors generated at elevated temperatures diffuse into the pores of zeolites and interact with Cu(II) ions, leading to the formation of Cu(I). This strategy allows the construction of Cu(I) sites at low temperatures and avoids the formation of Cu(0). Moreover, the obtained material exhibits excellent performance in the adsorptive separation of propylene/propane with regard to both capacity and selectivity, which is obviously superior to the material prepared by the conventional autoreduction method as well as using various typical adsorbents.
机译:由于其多功能性,无毒性和低成本,Cu(I)离子交换沸石引起了广泛的兴趣。尽管进行了许多尝试,但是开发有效,可控且节能的方法来制造沸石中的Cu(I)位点仍然是一个悬而未决的问题。在这项研究中,开发了一种策略,可通过使用甲醇的气相诱导还原(VIR)将沸石中的Cu(II)选择性转化为Cu(I)。在高温下产生的甲醇蒸气扩散到沸石的孔中并与Cu(II)离子相互作用,导致形成Cu(I)。此策略允许在低温下构建Cu(I)站点,并避免形成Cu(0)。此外,所获得的材料在容量/选择性方面都表现出优异的丙烯/丙烷吸附分离性能,这明显优于通过常规自动还原方法以及使用各种典型吸附剂制备的材料。

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