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基于Fe(Ⅲ)卟啉金属有机框架构建的比色传感器用于H2O2快速检测 被引量:1
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作者 马敬南 祝俊伦 +3 位作者 陈苗苗 文为 张修华 王升富 《分析科学学报》 CAS CSCD 北大核心 2020年第5期710-716,共7页
本文通过一步溶剂热法合成了铁卟啉金属有机框架MIL-141(Fe)纳米酶,基于其高效催化H2O2氧化3,3',5,5'-四甲基联苯胺(TMB)显色,建立了一种简便快速的H2O2比色传感检测方法。系统表征了MIL-141(Fe)纳米酶的形貌、元素组成以及光... 本文通过一步溶剂热法合成了铁卟啉金属有机框架MIL-141(Fe)纳米酶,基于其高效催化H2O2氧化3,3',5,5'-四甲基联苯胺(TMB)显色,建立了一种简便快速的H2O2比色传感检测方法。系统表征了MIL-141(Fe)纳米酶的形貌、元素组成以及光谱性能,并通过其催化底物的反应动力学研究,得到MIL-141(Fe)纳米酶对过氧化物酶特异性底物TMB和H2O2的米氏常数分别为0.15mmol/L和1.01mmol/L,说明MIL-141(Fe)纳米酶对底物具有高亲和力且响应快速。此外,Fe(Ⅲ)离子与5,10,15,20-四(4-羧基苯基)卟啉(H2TCPP)形成了具有类血红素结构的铁卟啉配体,为催化反应提供了丰富的活性位点。因此,通过催化氧化TMB显色后溶液在波长652nm处吸光度变化情况,实现了对1~150μmol/L浓度范围内H2O2的快速定量分析,检测限为0.60μmol/L。这种基于MIL-141(Fe)纳米酶高催化性能构建的比色传感器为H2O2快速、可视化检测提供了新方法,具有潜在的实际应用价值。 展开更多
关键词 铁卟啉金属有机框架 纳米酶 过氧化氢 比色传感器
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Cu/CuO-Graphene Foam with Laccase-like Activity for Identification of Phenolic Compounds and Detection of Epinephrine 被引量:1
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作者 zhu junlun CUI Qian +2 位作者 WEN Wei ZHANG Xiuhua WANG Shengfu 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2022年第4期919-927,共9页
Although great progress has been made in the advancement of nanozymes,most of the studies focus on mimicking peroxidase,oxidase,and catalase,while relatively few studies are used to mimic laccase.However,the use of na... Although great progress has been made in the advancement of nanozymes,most of the studies focus on mimicking peroxidase,oxidase,and catalase,while relatively few studies are used to mimic laccase.However,the use of nanomaterials to mimic laccase activity will have great potential in environmental and industrial catalysis.Herein,Cu/CuO-graphene foam with laccase-like activity was designed for the identification of phenolic compounds and the detection of epinephrine.In a typical experiment,the formation mechanism of Cu/CuO-graphene foam was investigated during the pyrolysis process by thermogravimetric-mass spectrometry.As a laccase mimic,Cu/CuO-graphene foam exhibited excellent catalytic activity with a Michaelis-Menten constant and a maximum initial velocity of 0.17 mmol/L and 0.012µmol·L^(−1)·s^(−1),respectively.Based on this principle,Cu/CuO-graphene foam nanozyme could differentially catalyze phenolic compounds and 4-aminoantipyrine for simultaneous identification of phenolic compounds.Furthermore,a colorimetric sensing platform was fabricated for the quantitative determination of epinephrine,showing linear responses to epinephrine in the range of 3µg/mL to 20µg/mL with the detection limit of 0.2µg/mL.The proposed Cu/CuO-graphene foam nanozyme could be applied for the identification of phenolic compounds and the detection of epinephrine,showing great potential applications for environmental monitoring,biomedical sensing,and food detection fields. 展开更多
关键词 Nanozyme Laccase-like activity Cu/CuO-graphene foam Phenolic compound EPINEPHRINE
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