首页> 外文OA文献 >Molten-salt-assisted self-assembly (MASA)-synthesis of mesoporous metal titanate-titania, metal sulfide-titania, and metal selenide-titania thin films
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Molten-salt-assisted self-assembly (MASA)-synthesis of mesoporous metal titanate-titania, metal sulfide-titania, and metal selenide-titania thin films

机译:熔融盐辅助自组装(MASA)合成介孔金属钛酸酯-二氧化钛,金属硫化物-二氧化钛和金属硒化物-二氧化钛薄膜

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摘要

New synthetic strategies are needed for the assembly of porous metal titanates and metal chalcogenite-titania thin films for various energy applications. Here, a new synthetic approach is introduced in which two solvents and two surfactants are used. Both surfactants are necessary to accommodate the desired amount of salt species in the hydrophilic domains of the mesophase. The process is called a molten-salt-assisted self-assembly (MASA) because the salt species are in the molten phase and act as a solvent to assemble the ingredients into a mesostructure and they react with titania to form mesoporous metal titanates during the annealing step. The mesoporous metal titanate (meso-Zn 2TiO4 and meso-CdTiO3) thin films are reacted under H2S or H2Se gas at room temperature to yield high quality transparent mesoporous metal chalcogenides. The H2Se reaction produces rutile and brookite titania phases together with nanocrystalline metal selenides and H2S reaction of meso-CdTiO3 yields nanocrystalline anatase and CdS in the spatially confined pore walls. Two different metal salts (zinc nitrate hexahydrate and cadmium nitrate tetrahydrate) are tested to demonstrate the generality of the new assembly process. The meso-TiO2-CdSe film shows photoactivity under sunlight. High quality mesoporous metal titanate thin films are synthesized using a molten-phase-assisted self-assembly (MASA) method. The metal salts are used as a non-volatile solvent in the new assembly process. The films are converted into mesoporous titania-metal chalcogenides (TiO2-CdS, TiO 2-CdSe, and TiO2-ZnSe) under H2S or H 2Se at room temperature and may find applications in solar cells, catalysis, photocatalysis, electronics, and optoelectronics. Copyright © 2013 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:需要新的合成策略来组装用于各种能量应用的多孔金属钛酸酯和金属硫属矿物-二氧化钛薄膜。在这里,引入了一种新的合成方法,其中使用了两种溶剂和两种表面活性剂。两种表面活性剂都是必需的,以便在中间相的亲水域中容纳所需量的盐类。该过程被称为熔融盐辅助自组装(MASA),因为盐类处于熔融相并充当溶剂将成分组装为介孔结构,并且它们在退火过程中与二氧化钛反应形成介孔金属钛酸盐步。在室温下,在H2S或H2Se气体下,使中孔金属钛酸酯(中锌2TiO4和中镉CdTiO3)薄膜反应,生成高质量的透明中孔金属硫属化物。 H2Se反应与金纳米晶金属硒化物一起生成金红石和板钛矿二氧化钛相,内消旋CdTiO3的H2S反应在空间受限的孔壁中产生纳米晶锐钛矿和CdS。测试了两种不同的金属盐(六水合硝酸锌和四水合硝酸镉),以证明新装配工艺的普遍性。介孔TiO2-CdSe膜在阳光下显示出光活性。使用熔融相辅助自组装(MASA)方法合成了高质量的中孔钛酸金属薄膜。在新的组装过程中,金属盐被用作非挥发性溶剂。在室温下,在H2S或H 2Se下将薄膜转化为介孔二氧化钛金属硫属元素化物(TiO2-CdS,TiO 2-CdSe和TiO2-ZnSe),并可能在太阳能电池,催化,光催化,电子和光电子学中得到应用。版权所有©2013 WILEY-VCH Verlag GmbH&Co.KGaA,Weinheim。

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