首页|羧酸盐柱[5]芳烃功能化银纳米粒子的制备及其对有机染料催化降解性能分析

羧酸盐柱[5]芳烃功能化银纳米粒子的制备及其对有机染料催化降解性能分析

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制备了羧酸盐柱[5]芳烃(Carboxylated pillar[5]arene,CP5A)功能化的银纳米粒子(CP5A-AgNPs).采用紫外-可见吸收光谱(UV-Vis)、傅里叶变换红外吸收光谱(FT-IR)和透射电镜(TEM)等对CP5A-AgNPs进行了表征.TEM结果表明,当CP5A与AgNO3 的摩尔比为1∶10时,制备的CP5A-AgNPs分散性好、粒径均一,平均粒径为4.05 nm.CP5A-AgNPs对两种不同类型染料罗丹明B(RhB)和甲基橙(MO)的催化降解率分别为99.91%和98.83%,并且具有较好的循环催化能力,第5次催化效率分别为91.06%和98.45%.比较了CP5A对应的单体化合物(Carboxylated monomer arene,CMA)作为稳定剂时所制备的CMA-AgNPs的性能.结果表明,CP5A功能化的AgNPs具备更好的分散性、稳定性和催化性能,不仅对RhB和MO具有较强的催化降解能力,而且循环催化能力良好.
Study on Preparation of Silver Nanoparticles Functionalized by Carboxylated Pillar[5]arene and Catalytic Degradation Activity toward Organic Dyes
Carboxylated pillar[5]arene functionalized silver nanoparticles(CP5A-AgNPs)were successfully prepared by Creighton method.The prepared CP5A-AgNPs composites were characterized by ultraviolet-visible absorption spectroscopy(UV-Vis),infrared spectroscopy(FT-IR)and transmission electron microscopy(TEM),etc.TEM results showed that when the molar ratio of CP5A to AgNO3 was 1:10,the prepared CP5A-AgNPs had good dispersion and uniform particle size,with an average particle size of 4.05 nm.The catalytic degradation ability of CP5A-AgNPs toward two kinds of organic dyes,Rhodamine B(RhB)and methyl orange(MO)was further investigated.The results showed that the degradation rates of these two dyes by CP5A-AgNPs were 99.91%and 98.83%respectively,and CP5A-AgNPs exhibited good cyclic catalytic ability.The catalytic efficiencies in the fifth cycle were 91.06%and 98.45%,respectively.In addition,the performance of functionalized silver nanoparticles using monomer compound of CP5(CMA)as stabilizer(CMA-AgNPs)was compared.The results showed that CP5A-AgNPs had strong catalytic degradation activity to RhB and MO,and had good recycling catalytic ability.

Carboxylated pillar[5]areneSilver nanoparticlesCatalytic degradationOrganic dyes

张郡童、陶欣、杨云汉、陈艳、杨明坤、杨举、杨丽、杨丽娟

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云南民族大学化学与环境学院,生物基材料绿色制备技术国家地方联合工程中心,云南省高校智能超分子化学重点实验室,昆明 650500

羧酸盐柱[5]芳烃 银纳米粒子 催化降解 有机染料

国家自然科学基金云南省兴滇英才支持计划(教学名师)项目云南省教育厅科研项目

217620512023Y0519

2024

分析化学
中国化学会 中国科学院长春应用化学研究所

分析化学

CSTPCD北大核心
影响因子:1.423
ISSN:0253-3820
年,卷(期):2024.52(4)
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