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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Fabrication of a Co(OH)(2)/ZnCr LDH 'p-n' Heterojunction Photocatalyst with Enhanced Separation of Charge Carriers for Efficient Visible-Light-Driven H-2 and O-2 Evolution
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Fabrication of a Co(OH)(2)/ZnCr LDH 'p-n' Heterojunction Photocatalyst with Enhanced Separation of Charge Carriers for Efficient Visible-Light-Driven H-2 and O-2 Evolution

机译:CO(OH)(2)/ ZnCR LDH“P-N”异质结明光催化剂的制备,具有增强的电荷载体分离,用于有效的可见光驱动的H-2和O-2演化

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摘要

Photocatalytic generation of H-2 and O-2 by water splitting remains a great challenge for clean and sustainable energy. Taking into the consideration promising heterojunction photocatalysts, analogous energy issues have been mitigated to a meaningful extent. Herein, we have architectured a highly efficient bifunctional heterojunction material, i.e., p-type Co(OH)(2) platelets with an n-type ZnCr layered double hydroxide (LDH) by an ultrasonication method. Primarily, the Mott Schottky measurements confirmed the n- and p-type semiconductive properties of LDH and CH material, respectively, with the construction of a p-n heterojunction. The high resolution transmission electron microscopy results suggest that surface modification of ZnCr LDH by Co(OH)(2) hexagonal platelets could form a fabulous p-n interfacial region that significantly decreases the energy barrier for O-2 and H-2 production by effectively separating and transporting photoinduced charge carriers, leading to enhanced photoreactivity. A deep investigation into the mechanism shows that a 30 wt % Co(OH)(2)-modified ZnCr LDH sample liberates maximum H-2 and O-2 production in 2 h, i.e., 1115 and 560 mu mol with apparent conversion efficiencies of H-2 and O-2 evolution of 13.12% and 6.25%, respectively. Remarkable photocatalytic activity with energetic charge pair transfer capability was illustrated by electrochemical impedance spectroscopy, linear sweep voltammetry, and photoluminescence spectra. The present study dearly suggests that low-cost Co(OH)(2) platelets are the most crucial semiconductors to provide a new p-n heterojunction photocatalyst for photocatalytic H-2 and O-2 production on the platform of ZnCr LDH.
机译:水分裂的光催化产生H-2和O-2仍然是清洁和可持续能量的巨大挑战。考虑到有前途的异质结光催化剂,类似的能量问题已被减少到有意义的程度。在此,我们通过超声方法建立了具有N型ZnCR层状双氢氧化物(LDH)的高效的双官能异质结材料,即P型CO(OH)(2)血小板。主要是,Mott Schottky测量分别证实了LDH和CH材料的N-和p型半导电性能,其构造了P-N异质结。高分辨率透射电子显微镜结果表明CO(OH)(2)六边形血小板的ZnCR LDH的表面改性可以形成一个神奇的PN界面区域,通过有效分离和分离,显着降低O-2和H-2产生的能量屏障。运输光抑制电荷载体,导致增强光反应性。对机构的深入调查表明,30wt%CO(OH)(2)型制剂ZnCRLDH样品在2小时内释放出最大H-2和O-2产生,即1115和560μmol,具有表观转化效率H-2和O-2分别为13.12%和6.25%的演变。通过电化学阻抗光谱,线性扫描伏安法和光致发光光谱说明具有能量电荷对传递能力的显着光催化活性。本研究认为,低成本CO(OH)(2)次血小板是最重要的半导体,用于在ZnCR LDH平台上提供用于光催化H-2和O-2生产的新型P-N异质结光催化剂。

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