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用于增强光催化和抗菌应用的三元金属氧化物(ZnO:NiO:CuO)纳米复合异质结的制备

Fabrication of ternary metal oxide (ZnO:NiO:CuO) nanocomposite heterojunctions for enhanced photocatalytic and antibacterial applications.

作者信息

Ishaque Muhammad Zahid, Zaman Yasir, Arif Alia, Siddique Abu Bakar, Shahzad Muhammad, Ali Daoud, Aslam Muhammad, Zaman Hira, Faizan Muhammad

机构信息

Department of Physics, University of Sargodha Sargodha 40100 Pakistan

Institute of Chemistry, University of Sargodha Sargodha 40100 Pakistan

出版信息

RSC Adv. 2023 Oct 20;13(44):30838-30854. doi: 10.1039/d3ra05170f. eCollection 2023 Oct 18.

Abstract

In this article, ZnO:NiO:CuO nanocomposites (NCPs) were synthesized using a hydrothermal method, with different Zn : Ni : Cu molar ratios (1 : 1 : 1, 2 : 1 : 1, 1 : 2 : 1, and 1 : 1 : 1). The PXRD confirmed the formation of a NCP consisting of ZnO (hexagonal), NiO (cubic), and CuO (monoclinic) structures. The crystallite sizes of NCPs were calculated using Debye Scherrer and Williamson-Hall methods. The calculated crystalline sizes (Scherrer method) of the NCPs were determined to be 21, 27, 23, and 20 nm for the molar ratios 1 : 1 : 1, 2 : 1 : 1, 1 : 2 : 1, and 1 : 1 : 2, respectively. FTIR spectra confirmed the successful formation of heterojunction NCPs the presence of metal-oxygen bonds. The UV-vis spectroscopy was used to calculate the bandgap of synthesized samples and was found in the range of 2.99-2.17 eV. SEM images showed the mixed morphology of NCPs , irregular spherical and rod-like structures. The dielectric properties, including AC conductivity, dielectric constant, impedance, and dielectric loss parameters were measured using an LCR meter. The DC electrical measurements revealed that NCPs have a high electrical conductivity. All the NCPs were evaluated for the photocatalytic degradation of Methylene blue (MB), methyl orange (MO), and a mixture of both of these dyes. The NCPs with a molar ratio 1 : 1 : 2 (Zn : Ni : Cu) displayed outstanding photocatalytic activity under sunlight, achieving the degradation efficiency of 98% for methylene blue (MB), 92% for methyl orange (MO) and more than 87% in the case of a mixture of dyes within just 90 minutes of illumination. The antibacterial activity results showed the more noxious nature of NCPs against Gram-negative bacteria with a maximum zone of inhibition revealed by the NCPs of molar ratio 1 : 2 : 1 (Zn : Ni : Cu). On the basis of these observations, it can be anticipated that the NCPs can be successfully employed for the purification of contaminated water by the degradation of hazardous organic compounds and in antibacterial ointments.

摘要

在本文中,采用水热法合成了不同锌:镍:铜摩尔比(1:1:1、2:1:1、1:2:1和1:1:2)的ZnO:NiO:CuO纳米复合材料(NCPs)。粉末X射线衍射(PXRD)证实形成了由ZnO(六方)、NiO(立方)和CuO(单斜)结构组成的NCP。使用德拜-谢乐法和威廉姆森-霍尔法计算了NCP的微晶尺寸。对于摩尔比为1:1:1、2:1:1、1:2:1和1:1:2的NCP,采用谢乐法计算出的晶体尺寸分别为21、27、23和20nm。傅里叶变换红外光谱(FTIR)证实了异质结NCP的成功形成以及金属-氧键的存在。利用紫外-可见光谱计算了合成样品的带隙,发现其在2.99 - 2.17eV范围内。扫描电子显微镜(SEM)图像显示了NCP的混合形态,即不规则的球形和棒状结构。使用LCR测量仪测量了包括交流电导率、介电常数、阻抗和介电损耗参数在内的介电性能。直流电学测量表明NCP具有高电导率。对所有NCP进行了亚甲基蓝(MB)、甲基橙(MO)以及这两种染料混合物的光催化降解评估。摩尔比为1:1:2(锌:镍:铜)的NCP在阳光下表现出优异的光催化活性,在光照仅90分钟内,亚甲基蓝(MB)的降解效率达到98%,甲基橙(MO)的降解效率达到92%,染料混合物的降解效率超过87%。抗菌活性结果表明NCP对革兰氏阴性菌的毒性更强,摩尔比为1:2:1(锌:镍:铜)的NCP显示出最大抑菌圈。基于这些观察结果,可以预期NCP能够通过降解有害有机化合物成功用于净化受污染的水以及用于抗菌软膏中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fac/10587892/a185d1636843/d3ra05170f-f1.jpg

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