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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Delaminated CoAl-Layered Double Hydroxide@TiO2 Heterojunction Nanocomposites for Photocatalytic Reduction of CO2
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Delaminated CoAl-Layered Double Hydroxide@TiO2 Heterojunction Nanocomposites for Photocatalytic Reduction of CO2

机译:分层煤层双氢氧化物@ TiO2异质结纳米复合材料,用于光催化还原CO2

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Photocatalytic reduction offers an attractive route for CO2 utilization as a chemical feedstock for solar fuels production but remains challenging due to the poor efficiency, instability, and/or toxicity of current catalyst systems. Delaminated CoAl-layered double hydroxide nanosheets (LDH-DS) combined with TiO2 nanotubes (NTs) or nanoparticles (NPs) are promising nanocomposite photocatalysts for CO2 reduction. Heterojunction formation between visible light absorbing delaminated CoAl nanosheets and UV light absorbing TiO2 nanotubes greatly enhances interfacial contact between both high aspect ratio components relative to their bulk counterparts. The resulting synergic interaction confers a significant improvement in photoinduced charge carrier separation, and concomitant aqueous phase CO2 photocatalytic reduction, in the absence of a sacrificial hole acceptor. CO productivity for a 3 wt% LDH-DS@TiO2-NT nanocomposite of 4.57 mu mol g(cat)(-1) h(-1) exhibits a tenfold and fivefold increase over that obtained for individual TiO2 NT and delaminated CoAl-LDH components respectively and is double that obtained for 3 wt% bulk-LDH@TiO2-NT and 3 wt% LDH-DS@TiO2-NP catalysts. Synthesis of delaminated LDH and metal oxide nanocomposites represents a cost-effective strategy for aqueous phase CO2 reduction.
机译:光催化还原提供了一种有吸引力的CO2利用途径,作为太阳能燃料生产的化学原料,而且由于目前催化剂系统的效率,不稳定性和/或毒性差,仍然具有挑战性。将分层的煤层双氢氧化物纳米片(LDH-DS)与TiO2纳米管(NTS)或纳米颗粒(NPS)相结合,是有助于CO 2的纳米复合材料光催化剂。可见光吸收分层煤纳米片和UV光吸收TiO2纳米管之间的异质结形成极大地增强了相对于其体对应物的高纵横比分量之间的界面接触。所得的协同相互作用赋予光致电荷载流子分离的显着改善,并且在没有牺牲孔受体的情况下,伴随水相CO 2的光催化还原。对于4.57μmolg(猫)( - 1)H(-1)的3wt%LDH-DS @ TiO2-NT纳米复合材料的CO生产率表现出为单个TiO2 NT和分层煤LDH获得的十倍和五倍。分别为3wt%Bulk-LDH @ TiO2-NT和3wt%LDH-DS @ TiO2-NP催化剂的组分分别是两倍。分层LDH和金属氧化物纳米复合材料的合成代表了用于水相CO 2的成本有效的策略。

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