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含3-氧代-3-苯基-2-(2-苯基腙)丙醛基配体的银(I)配合物的合成:作为抗菌和光电应用的多功能平台

Synthesis of Silver(I) Complexes Containing 3-Oxo-3-phenyl-2-(2-phenylhydrazono)propanal-Based Ligands as a Multifunction Platform for Antimicrobial and Optoelectronic Applications.

作者信息

Al-Sulami Ahlam I, Basha Maram T, AlGhamdi Huda A, S Albalawi Sarah, M Al-Zaydi Khadijah, Said Musa A

机构信息

College of Science, Department of Chemistry, University of Jeddah, Jeddah 21589, Saudi Arabia.

Chemistry Department, College of Science, Taibah University, PO Box 30002, Al-Madinah Al Munawara 1417, Saudi Arabia.

出版信息

ACS Omega. 2023 Jun 7;8(26):23633-23642. doi: 10.1021/acsomega.3c01646. eCollection 2023 Jul 4.

Abstract

Toward multifunctionality, including antimicrobial and optoelectronic applications, herein, we reported the synthesis of a novel Ag(I) complex with 3-oxo-3-phenyl-2-(2-phenylhydrazono)propanal-based ligands including 3-(4-chlorophenyl)-2-[2-(4-nitrophenyl)hydrazono]-3-oxopropanal (named as ""), 3-(4-chlorophenyl)-2-[2-(4-methylphenyl)hydrazono]-3-oxopropanal (named as ""), and 3-(4-chlorophenyl)-3-oxo-2-(2-phenylhydrazono)propanal (named as ""). The synthesized compounds were characterized through FTIR, H NMR, and density functional theory (DFT). The morphological features and thermal stability were evaluated through transmission electron microscopy (TEM) and TG/DTA analysis. The antimicrobial activity of the synthesized Ag complexes was tested against various pathogens, including Gram-negative bacteria ( and ), Gram-positive bacteria ( and ), and fungi ( and ). Results show that the synthesized complexes (Ag(), Ag(), and Ag()) possess promising antimicrobial efficacy against various pathogens and are in good competition with several standard drugs as well. On the other hand, the optoelectronic features such as absorbance, band gap, and Urbach energy were examined by measuring the absorbance using a UV-vis spectrophotometer. The values of the band gap reflected the semiconducting nature of these complexes. The complexation with Ag resulted in a lowering band gap to match the apex of the solar spectrum. Such low band gap values are preferable for optoelectronic applications like dye-sensitized solar cells, photodiodes, and photocatalysis.

摘要

为了实现多功能性,包括抗菌和光电应用,在此,我们报道了一种新型Ag(I)配合物的合成,该配合物含有基于3-氧代-3-苯基-2-(2-苯基腙)丙醛的配体,包括3-(4-氯苯基)-2-[2-(4-硝基苯基)腙]-3-氧代丙醛(命名为“”)、3-(4-氯苯基)-2-[2-(4-甲基苯基)腙]-3-氧代丙醛(命名为“”)和3-(4-氯苯基)-3-氧代-2-(2-苯基腙)丙醛(命名为“”)。通过傅里叶变换红外光谱(FTIR)、氢核磁共振(H NMR)和密度泛函理论(DFT)对合成的化合物进行了表征。通过透射电子显微镜(TEM)和热重/差示热分析(TG/DTA)评估了其形态特征和热稳定性。测试了合成的Ag配合物对各种病原体的抗菌活性,包括革兰氏阴性菌(和)、革兰氏阳性菌(和)和真菌(和)。结果表明,合成的配合物(Ag()、Ag()和Ag())对各种病原体具有良好的抗菌效果,并且与几种标准药物相比也具有很好的竞争力。另一方面,通过使用紫外可见分光光度计测量吸光度来检测吸光度、带隙和乌尔巴赫能量等光电特性。带隙值反映了这些配合物的半导体性质。与Ag的络合导致带隙降低,以匹配太阳光谱的峰值。如此低的带隙值对于染料敏化太阳能电池、光电二极管和光催化等光电应用是优选的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4b5/10324052/bd2d1fbd0033/ao3c01646_0009.jpg

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