Enhanced optical and antimicrobial activities of mono Zn and bimetallic (Zn, Co), (Zn, Pd) ions modified MCM-41: structural and morphological investigation

IF 2.5 4区 材料科学 Q2 CHEMISTRY, APPLIED
Mohammed Ahmed Wahba, Rabab K. Khaled, Magdah Dawy, Maysa E. Moharam
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引用次数: 0

Abstract

Mono and bimetallic modified MCM-41(Mobil Composition of Matter No. 41): Zn-MCM (ZM), Zn/Co-MCM41 (ZCM), and Zn/Pd-MCM-41 (ZPM) molecular sieves were produced by a surfactant-assisted technique. The structural and textural features were examined through spectroscopic and analytical techniques. The XRD analysis indicated broadening of diffraction peaks and a shift towards higher 2-theta values in the metal-incorporated (M-MCM-41) samples, confirming the successful integration of metal atoms into the MCM-41 framework; it also highlighted the preservation of a hexagonal structure with reasonable regularity, emphasizing the influence of metal incorporation on the mesoporous architecture of MCM-41. N2 adsorption–desorption isotherms revealed type IV isotherms for all samples; the BET specific surface area decreased to 672.48, 667.90, and 562.50 m2/g in ZM, ZCM, and ZPM, respectively comparing to the unincorporated MCM-41 sample (1200 m2/g), indicating partial filling of mesopores by metal centers, as confirmed by TEM images. The diffuse reflectance spectra exhibited a noteworthy optical band gap reduction of MCM-41 (5.98 eV) upon the incorporation of Zn and Co/Zn ions, resulting in values of 5.86 and 5.24 eV, respectively, with refractive index values close to 2. Additional absorption bands energies are observed at 3.14, 3.18, and 1.70 eV in ZM, ZPM, and ZCM samples, respectively suggesting the suitability of the metal incorporated samples for the photocatalytic applications. The M-incorporated samples exhibited a decline in the transmission intensity accompanied by small shifts. The enhanced antimicrobial activity of the metal-incorporated samples, surpassing that of the pure MCM-41 against a variety of tested microorganisms, is attributed to the presence of incorporated metal species, which create a more acidic environment and substantially contribute to the heightened antimicrobial effectiveness. The ZM compound demonstrated potent inhibition against Bacillus cereus and Pseudomonas aeruginosa bacteria, displaying comparable efficacy to Ampicillin, as a reference antibiotic. Additionally, ZPM exhibited considerable inhibitory activity against Escherichia coli, surpassing the reference antibiotic and showing similar effectiveness against Bacillus cereus, Pseudomonas aeruginosa, and Salmonella typhimurium.

Abstract Image

单锌和双金属(锌、钴)、(锌、钯)离子修饰的 MCM-41 增强的光学和抗菌活性:结构和形态学研究
单金属和双金属改性 MCM-41(美孚物质成分第 41 号):采用表面活性剂辅助技术制备了 Zn-MCM(ZM)、Zn/Co-MCM41(ZCM)和 Zn/Pd-MCM-41 (ZPM)分子筛。通过光谱和分析技术对其结构和纹理特征进行了研究。XRD 分析表明,在加入金属的样品(M-MCM-41)中,衍射峰变宽,2-θ 值变大,证实金属原子成功地融入了 MCM-41 框架中;同时,分析还突出表明,样品保留了具有合理规则性的六边形结构,强调了金属的加入对 MCM-41 介孔结构的影响。所有样品的 N2 吸附-解吸等温线均显示为 IV 型等温线;与未掺入金属的 MCM-41 样品(1200 m2/g)相比,ZM、ZCM 和 ZPM 的 BET 比表面积分别下降到 672.48、667.90 和 562.50 m2/g,这表明金属中心部分填充了介孔,TEM 图像也证实了这一点。漫反射光谱显示,加入 Zn 离子和 Co/Zn 离子后,MCM-41 的光带隙(5.98 eV)明显减小,分别为 5.86 eV 和 5.24 eV,折射率接近 2。掺入 M 的样品透射强度下降,并伴有微小的偏移。掺入金属的样品对各种测试微生物的抗菌活性超过了纯 MCM-41,这归因于掺入金属物种的存在,它们创造了一个酸性更强的环境,大大提高了抗菌效果。ZM 化合物对蜡样芽孢杆菌和铜绿假单胞菌有很强的抑制作用,其功效与作为参考抗生素的氨苄西林相当。此外,ZPM 对大肠杆菌也有相当强的抑制活性,超过了参考抗生素,对蜡样芽孢杆菌、铜绿假单胞菌和鼠伤寒沙门氏菌也有类似的功效。
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来源期刊
Journal of Porous Materials
Journal of Porous Materials 工程技术-材料科学:综合
CiteScore
4.80
自引率
7.70%
发文量
203
审稿时长
2.6 months
期刊介绍: The Journal of Porous Materials is an interdisciplinary and international periodical devoted to all types of porous materials. Its aim is the rapid publication of high quality, peer-reviewed papers focused on the synthesis, processing, characterization and property evaluation of all porous materials. The objective is to establish a unique journal that will serve as a principal means of communication for the growing interdisciplinary field of porous materials. Porous materials include microporous materials with 50 nm pores. Examples of microporous materials are natural and synthetic molecular sieves, cationic and anionic clays, pillared clays, tobermorites, pillared Zr and Ti phosphates, spherosilicates, carbons, porous polymers, xerogels, etc. Mesoporous materials include synthetic molecular sieves, xerogels, aerogels, glasses, glass ceramics, porous polymers, etc.; while macroporous materials include ceramics, glass ceramics, porous polymers, aerogels, cement, etc. The porous materials can be crystalline, semicrystalline or noncrystalline, or combinations thereof. They can also be either organic, inorganic, or their composites. The overall objective of the journal is the establishment of one main forum covering the basic and applied aspects of all porous materials.
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