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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Band-gap tailoring and visible-light-driven photocatalytic performance of porous (GaN)(1-x)(ZnO)(x) solid solution
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Band-gap tailoring and visible-light-driven photocatalytic performance of porous (GaN)(1-x)(ZnO)(x) solid solution

机译:多孔(GaN)(1-X)(ZnO)(X)固溶体的带隙剪裁和可见光光催化性能

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摘要

(GaN)(1-x)(ZnO)(x) solid solution has attracted extensive attention due to its feasible band-gap tunability and excellent photocatalytic performance in overall water splitting. However, its potential application in the photodegradation of organic pollutants and environmental processing has rarely been reported. In this study, we developed a rapid synthesis process to fabricate porous (GaN)(1-x)(ZnO)(x) solid solution with a tunable band gap in the range of 2.38-2.76 eV for phenol photodegradation. Under visible-light irradiation, (GaN)(0.75)(ZnO)(0.25) solid solution achieved the highest photocatalytic performance compared to other (GaN)(1-x)(ZnO)(x) solid solutions with x = 0.45, 0.65 and 0.85 due to its higher redox capability and lower lattice deformation. Slight Ag decoration with a content of 1 wt% on the surface of the (GaN)(0.75)(ZnO)(0.25) solid solution leads to a significant enhancement in phenol degradation, with a reaction rate eight times faster than that of pristine (GaN)(0.75)(ZnO)(0.25). Interestingly, phenol in aqueous solution (10 mg L-1) can also be completely degraded within 60 min, even under the direct exposure of sunlight irradiation. The photocurrent response indicates that the enhanced photocatalytic activity of (GaN)(0.75)(ZnO)(0.25)/Ag is directly induced by the improved transfer efficiency of the photogenerated electrons at the interface. The excellent phenol degradation performance of (GaN)(1-x)(ZnO)(x)/Ag further broadens their promising photocatalytic utilization in environmental processing, besides in overall water splitting for hydrogen production.
机译:氮化镓(GaN)(1-X)(ZnO)的(x)的固溶体已引起广泛关注,因为它是可行的带隙调谐性和在整体水分解优异的光催化性能。然而,它在有机污染物和环境处理的降解潜在的应用却很少被报道。在这项研究中,我们开发了一种快速合成方法来制造多孔的(GaN)的(1-X)(ZnO)的(x)的固体在2.38-2.76 eV的苯酚光降解的范围内的可调谐带隙溶液。下可见光照射,氮化镓(GaN)(0.75)(ZnO)的相对于其它(GaN)的(0.25)固溶体达到的最高的光催化性能(1-X)(ZnO)的,其中x = 0.45,0.65(x)的固体溶液和0.85,由于其较高的氧化还原能力,降低晶格变形。轻微的Ag装饰用的1%(重量)的氮化镓(GaN)的表面上的含量(0.75)(ZnO)的(0.25)固体溶液导致在苯酚劣化的显著增强,与反应速率低于原始的快8倍( GaN)的(0.75)(ZnO)的(0.25)。有趣的是,在苯酚水溶液(10毫克L-1)也可以完全在60分钟内降解,即使在太阳光的照射的直接暴露。光电流响应指示(GaN)的(0.75)(ZnO)的(0.25)的增强的光催化活性/银直接由在界面处的光生电子的改进的转印效率诱导。的优良的苯酚降解性能(GaN)的(1-X)(ZnO)的(X)/银进一步拓宽其有希望在环境处理的光催化利用率,除了在整体水分解为氢气的生产。

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    Dalian Univ Technol Minist Educ Key Lab Mat Modificat Laser Ion &

    Electron Beams Dalian 116024 Peoples R China;

    Dalian Univ Technol Minist Educ Key Lab Mat Modificat Laser Ion &

    Electron Beams Dalian 116024 Peoples R China;

    Chinese Acad Sci IMR Shenyang Natl Lab Mat Sci SYNL 72 Wenhua Rd Shenyang 110016 Peoples R China;

    Chinese Acad Sci IMR Shenyang Natl Lab Mat Sci SYNL 72 Wenhua Rd Shenyang 110016 Peoples R China;

    Chinese Acad Sci IMR Shenyang Natl Lab Mat Sci SYNL 72 Wenhua Rd Shenyang 110016 Peoples R China;

    Chinese Acad Sci IMR Shenyang Natl Lab Mat Sci SYNL 72 Wenhua Rd Shenyang 110016 Peoples R China;

    Chinese Acad Sci IMR Shenyang Natl Lab Mat Sci SYNL 72 Wenhua Rd Shenyang 110016 Peoples R China;

    Beijing Normal Univ Dept Phys Beijing 100875 Peoples R China;

    Chinese Acad Sci IMR Shenyang Natl Lab Mat Sci SYNL 72 Wenhua Rd Shenyang 110016 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;无机化学;
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