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溶剂对常规水热法制备的磷酸银微晶的结构、光学、形态及抗菌活性的影响

Solvent Effect on the Structural, Optical, Morphology, and Antimicrobial Activity of Silver Phosphate Microcrystals by Conventional Hydrothermal Method.

作者信息

Takeno Mitsuo Lopes, Nobre Francisco Xavier, da Costa Fagner Ferreira, Botelho do Nascimento Marcus Valério, Pessoa Júnior Wanison André Gil, Araújo Júnior Edgar Alves, Sousa Giancarlo da Silva, de Sá Marcel Leiner, Gurgel Raiana Silveira, Albuquerque Patrícia Melchionna, Matos José Milton Elias de, Leyet Ruiz Yurimiler, Grandini Carlos Roberto

机构信息

Department of Chemistry, Environment, and Food (DQA), Group of Energy Resources and Nanomaterials (GREEN), Federal Institute of Education, Science and Technology of Amazonas, Campus Manaus Centro, Manaus, 69020-120, AM Brazil.

Interdisciplinar Laboratory of Advanced Materials-LIMAV, Federal University of Piauí-UFPI, Teresina, 64049-550 PI Brazil.

出版信息

ACS Omega. 2024 May 16;9(21):23069-23085. doi: 10.1021/acsomega.4c02943. eCollection 2024 May 28.

Abstract

The design of particle size and morphology are a promising approach to investigating the properties exhibited by different types of materials. In the present study, the silver phosphate microcrystals (AgPO) were first time synthesized using the hydrothermal and solvothermal method by combination of the solvents water/isopropyl alcohol (SP-IA), water/acetone (SP-AC), water/ammonium hydroxide (AP-AH), all in a ratio of 1:1 (v/v). The synthesized materials were structurally characterized by X-ray diffraction (XRD), Rietveld refinement, and Raman vibrational spectroscopy, where it was confirmed that the pure phase was achieved for all prepared samples. The study of the optical properties by UV-vis diffuse reflectance spectroscopy (UV-vis/DRS) and colorimetry revealed that the obtained materials have an optical bandgap between 2.30 and 2.32 eV. The FE-SEM images collected revealed different morphologies for the synthesized materials, with a predominance of tetraploid-shaped microcrystals for the SP-AC sample, rods for the SP-IA sample, cubes and polyhedral for the SP-WT sample and condensed polyhedral for the SP-AH sample. The photocatalytic performance against the Rhodamine B dye (RhB) was 100%, 98.2%, 94.2%, and 87.8%, using the samples SP-AC, SP-IA, SP-WT, and SP-AH as photocatalyst at time of 12 min. On the other hand, the antimicrobial performance of SP-AC sample showed superior performance, resulting in the minimum inhibitory concentration-MIC of 7.81 μg mL for the strain of , 7.81 μg mL for the strain of , 15.62 μg mL for the strain of , and 15.62 μg mL for the strains of . In this way, was synthesized a promissory antimicrobial and photocatalyst material, through an easy and cost-effective method.

摘要

颗粒尺寸和形态的设计是研究不同类型材料所展现特性的一种很有前景的方法。在本研究中,首次采用水热法和溶剂热法,通过将水/异丙醇(SP-IA)、水/丙酮(SP-AC)、水/氢氧化铵(AP-AH)以1:1(v/v)的比例混合来合成磷酸银微晶(AgPO)。通过X射线衍射(XRD)、Rietveld精修和拉曼振动光谱对合成材料进行结构表征,结果证实所有制备的样品均为纯相。通过紫外-可见漫反射光谱(UV-vis/DRS)和比色法对光学性质的研究表明,所获得的材料的光学带隙在2.30至2.32 eV之间。收集的场发射扫描电子显微镜(FE-SEM)图像显示合成材料具有不同的形态,SP-AC样品中以四倍体形状的微晶为主,SP-IA样品中为棒状,SP-WT样品中为立方体和多面体,SP-AH样品中为凝聚多面体。以SP-AC、SP-IA、SP-WT和SP-AH样品作为光催化剂,在12分钟时对罗丹明B染料(RhB)的光催化性能分别为100%、98.2%、94.2%和87.8%。另一方面,SP-AC样品的抗菌性能表现优异,对 菌株的最低抑菌浓度-MIC为7.81 μg/mL,对 菌株为7.81 μg/mL,对 菌株为15.62 μg/mL,对 菌株为15.62 μg/mL。通过一种简便且经济高效的方法合成了一种有前景的抗菌和光催化材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fefc/11137729/e954e6874623/ao4c02943_0001.jpg

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