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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Fabrication of Gold/Titania Photocatalyst for CO2 Reduction Based on Pyrolytic Conversion of the Metal-Organic Framework NH2-MIL-125(Ti) Loaded with Gold Nanoparticles
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Fabrication of Gold/Titania Photocatalyst for CO2 Reduction Based on Pyrolytic Conversion of the Metal-Organic Framework NH2-MIL-125(Ti) Loaded with Gold Nanoparticles

机译:基于负载金纳米颗粒的金属有机骨架NH2-MIL-125(Ti)的热解转化制备用于还原CO2的金/二氧化钛光催化剂

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摘要

Titania exhibits unique photophysical and -chemical properties and can be used for potential applications in the field of photocatalysis. The control of TiO2 in terms of phase, shape, morphology, and especially nanoscale synthesis of TiO2 particles still remains a challenge. Ti-containing metal organic frameworks (MOFs), such as MIL-125, can be used as sacrificial precursors to obtain TiO2 materials with diverse phase compositions, morphologies, sizes, and surface areas. MIL-125 is composed of Ti/O clusters as the secondary building units (SBUs) bridged by 1,4-benzenedicarboxylate (bdc). In this study, preformed and surfactant-stabilized gold nanoparticles (GNPs) were deposited onto the surface of amino functionalized NH2-MIL-125 during solvothermal synthesis. Targeted gold/titania nanocomposites, GNP/TiO2, were fabricated through the pyrolysis of GNP/NH2-MIL-125 nanocrystals. The modification of TiO2 with GNPs significantly increased the photocatalytic activity of the MOP derived TiO2 material for the reduction of CO2 to CH4 as compared to TiO2 reference samples such as P-25 and AUROlite (Au/TiO2). The new materials GNP/TiO2 and TiO2 derived by the MOF precursor route were thoroughly characterized by PXRD, FTIR and Raman, TEM, and N-2 adsorption studies.
机译:二氧化钛具有独特的光物理和化学性质,可用于光催化领域的潜在应用。从相,形状,形态,尤其是纳米级合成TiO2颗粒方面控制TiO2仍然是一个挑战。含Ti的金属有机骨架(MOF),例如MIL-125,可以用作牺牲性前体,以获得具有不同相组成,形态,尺寸和表面积的TiO2材料。 MIL-125由Ti / O簇组成,是由1,4-苯二甲酸(bdc)桥接的二级建筑单元(SBU)。在这项研究中,在溶剂热合成过程中,将预先形成且经表面活性剂稳定的金纳米颗粒(GNP)沉积在氨基官能化NH2-MIL-125的表面上。通过GNP / NH2-MIL-125纳米晶体的热解制备了靶向的金/二氧化钛纳米复合材料GNP / TiO2。与P-25和AUROlite(Au / TiO2)等TiO2参比样品相比,用GNPs修饰TiO2显着提高了MOP衍生的TiO2材料对将CO2还原为CH4的光催化活性。通过PXRD,FTIR和拉曼光谱,TEM和N-2吸附研究,对通过MOF前体路线衍生的新材料GNP / TiO2和TiO2进行了全面表征。

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