首页> 外文期刊>International journal of hydrogen energy >Amino acid assisted-synthesis and characterization of magnetically retrievable ZnCo_2O_4-Co_3O_4 nanostructures as high activity visible-light-driven photocatalyst
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Amino acid assisted-synthesis and characterization of magnetically retrievable ZnCo_2O_4-Co_3O_4 nanostructures as high activity visible-light-driven photocatalyst

机译:氨基酸辅助合成及表征磁性可检索的ZnCo_2O_4-CO_3O_4纳米结构,如高活性可见光触发光催化剂

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A novel and environment-friendly way to fabricate ZnCo2O4-Co3O4 nanostructures (ZC-C NSs) as highly efficacious visible light photocatalyst was developed with the aid of the amino acids as new kinds of fuel and stabilizers, for the first time. Role of the efficacious parameters like kind of amino acid and its amount on the morphological characteristics and performance of ZC-C NSs as visible light photocatalyst was explored. The outcomes demonstrated that alteration in the kind of amino acid and its amount could be beneficial and determinative for control over dimension, performance and shape of ZC-C. Characteristics of as-produced ZC-C NSs were explored with the variant techniques. The estimated band gap demonstrates that ZC-C NSs are able to be activated by employing visible light for decomposition of contaminants. The performance of as-produced ZC-C NSs with variant morphologies were estimated from the destruction of organic contaminant, acid blue 92, illuminated with the aid of visible light. This is the first endeavor on the examination of efficiency of ZnCo2O4-Co3O4 nanostructures (produced with the aid of the various amino acids) as visible light photocatalyst for destruction of acid blue 92. The outcomes illustrate that ZC-C NSs produced with the aid of Phenylalanine are able to manifest superior performance to degrade the organic contaminant, acid blue 92. Besides, usage of new kind of fuel and stabilizing agent (amino acid) may be leading to fabricate ZC-C NSs, which are efficiently able to remove the undesirable contaminant, and eventuating to diminution in the environmental pollution. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:一种新颖的和环保的方式来制造ZnCo2O4-Co3O4纳米结构(ZC-C NSS)作为高效可见光光催化剂的借助于氨基酸作为新型燃料和稳定剂,首次开发。探讨了氨基酸种类的有效参数的作用及其对ZC-C NSS的形态特征和性能作为可见光光催化剂。结果表明,氨基酸种类的改变和其量可能是有益的,可用于控制尺寸,性能和ZC-C形状的含义。用变体技术探索了ZC-C NSS的特征。估计的带隙表明,通过采用用于分解污染物的可见光来激活ZC-C NSS。从有机污染物的破坏估计有机污染物,酸蓝92的破坏来估计有机污染物,借助可见光的耐用性的性能的性能。这是ZnCo2O4-Co3O4纳米结构效率(借助于各种氨基酸产生的效率)的首次努力,作为用于破坏酸蓝92的可见光催化剂。结果说明了借助于辅助生产的ZC-C NSS。苯丙氨酸能够表现出优异的性能,以降解有机污染物,酸蓝92.此外,新种类的燃料和稳定剂(氨基酸)的使用可能导致制造ZC-C NSS,其有效地除去不希望的ZC-C NSS污染物,并事件在环境污染中减少。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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