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Assembly of molten transition metal salt-surfactant in a confined space for the synthesis of mesoporous metal oxide-rich metal oxide-silica thin films

机译:熔融过渡金属盐表面活性剂在密闭空间中的组装,用于合成富介孔金属氧化物的金属氧化物-二氧化硅薄膜

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摘要

Uniform and homogeneous coating of mesoporous materials with an active (catalytically, photonic, electrical) nanostructure can be very useful for a number of applications. Understanding chemical reactions in a confined space is important in order to design new advanced materials. In this work, we demonstrate that an extensive amount (as high as 53 mol percent) of transition metal salts can be confined between silica walls and two surfactant domains (cetyltrimethylammonium bromide, CTAB, and lauryl ether, C12H 25(OCH2CH2)10OH, C 12EO10) as molten salts and then converted into sponge-like mesoporous silica-metal oxides by thermal annealing. This investigation has been carried out using two different salts, namely, zinc nitrate hexahydrate, [Zn(H2O)6](NO3) 2, and cadmium nitrate tetrahydrate, [Cd(H2O) 4](NO3)2, in a broad range of salt concentrations. The ZnO (or CdO) layers are as thin as about ∼1.6 nm and are homogenously coated as crystalline nano-islands over the silica pore walls. © 2011 American Chemical Society.
机译:具有活性(催化,光子,电)纳米结构的介孔材料的均匀且均匀的涂层对于许多应用而言非常有用。了解密闭空间中的化学反应对于设计新的先进材料非常重要。在这项工作中,我们证明了可以在二氧化硅壁和两个表面活性剂域(十六烷基三甲基溴化铵CTAB和月桂基醚C12H 25(OCH2CH2)10OH,C 12EO10)作为熔融盐,然后通过热退火转化为海绵状中孔二氧化硅金属氧化物。使用两种不同的盐进行了广泛的研究,即六水合硝酸锌[Zn(H2O)6](NO3)2和四水合硝酸镉[Cd(H2O)4](NO3)2盐浓度。 ZnO(或CdO)层薄至约〜1.6 nm,并均匀地覆盖在二氧化硅孔壁上,形成结晶纳米岛。 ©2011美国化学学会。

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