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Photochemical studies with a zeolite Y membrane formed via secondary growth

机译:通过二次生长形成的Y型沸石膜的光化学研究

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Zeolite membranes offer an attractive feature in design of artificial photosynthetic assemblies because they can keep the charge separated species apart, yet allow for communication between the two sides via the intervening zeolite channels and cages. However, such a strategy would require that the zeolite membrane be pinhole-free. In an earlier paper (J. Phys. Chem. B 106, 11898 (2002)), we have shown that nanocrystalline zeolite Y can be spin-coaled on porous substrates to form membranes, and the pinholes can be plugged by a photoresist. Such membranes do not allow manipulation at higher temperatures or even in solution chemistry because of the thermal instability and solubility characteristics of the photoresist. In this paper, we report on a zeolite Y membrane made by the secondary growth method. The growth process leads to minimal pinholes as determined by leak tests. The sturdiiiess of the membranes allows for manipulation and we have shown that organic reactions can be carried out in the zeolite pores. Charge transport through the membrane by an electron hopping process mediated via self-exchange of ion-exchanged bipyridinium ions are demonstrated. The electron transfer was initiated using a photochemical Ru(bpy)_3~(2+)-EDTA system.
机译:沸石膜在人造光合作用组件的设计中具有吸引人的特征,因为它们可以使电荷分离的物质保持分开,但允许通过中间的沸石通道和笼子在两侧之间进行连通。然而,这种策略将要求沸石膜无针孔。在较早的论文中(J. Phys。Chem。B 106,11898(2002)),我们已经显示出纳米晶沸石Y可以旋涂在多孔基材上形成膜,并且针孔可以被光致抗蚀剂堵塞。由于光致抗蚀剂的热不稳定性和溶解性,这样的膜不允许在更高的温度下甚至在溶液化学中进行操作。在本文中,我们报道了通过二次生长法制成的沸石Y膜。生长过程导致最小的针孔(通过泄漏测试确定)。膜的结实便于操作,我们已经证明有机反应可以在沸石孔中进行。证明了通过离子交换联吡啶鎓离子的自交换介导的电子跳跃过程,电荷通过膜传输。使用光化学Ru(bpy)_3〜(2 +)-EDTA系统引发电子转移。

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