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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Ionic Radii and Concentration Dependency of RE3+(Eu3+, Nd3+, Pr3+, and La3+)-Doped Cerium Oxide Nanoparticles for Enhanced Multienzyme-Mimetic and Hydroxyl Radical Scavenging Activity
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Ionic Radii and Concentration Dependency of RE3+(Eu3+, Nd3+, Pr3+, and La3+)-Doped Cerium Oxide Nanoparticles for Enhanced Multienzyme-Mimetic and Hydroxyl Radical Scavenging Activity

机译:Re3 +(Eu3 +,Nd3 +,Pr3 +和La3 +)掺杂氧化铈纳米粒子的离子半径和浓度依赖性,用于增强型多酶模拟物和羟基自由基清除活性

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The antioxidant activity of cerium oxide nanoparticles (CNPs) depends on the concentration of oxygen vacancies and Ce3+ active sites. In the present work, we report the impact of 5 mol % trivalent rare-earth-doped (RE3+ = Eu3+, Nd3+, Pr3+, and La3+) CNPs on the oxidation state modulation and antioxidant property with respect to ionic radii. An increase in the lattice parameter, strain, and oxygen vacancy concentration was observed as a function of ionic radii. Among the various dopants in CNPs, La3+ with higher ionic radii having smaller crystallite size (7.9 nm) and higher vacancy displayed better peroxidase, oxidase, and hydroxyl radical (HO center dot) scavenging activities. The kinetic parameters for the peroxidase and oxidase activities were found to be superior with K-m = 0.217 and 0.261 mM, respectively, for 5 mol % La3+-doped CNPs. To divulge the role of dopant concentration on the structural properties, we also explored using 10 and 20 mol % La3+ doping in CNPs. Because of the smaller crystallite size (6.7 nm) and higher defect level (3.12 X 10(21) cm(-3)), 20% La3+ doping showed superior peroxidase and oxidase activities, as shown by the low K-m values. CNPs exhibit both peroxidase and oxidase activities in a concentration-dependent manner. Moreover, CNPs exhibit concentration-dependent peroxidase and oxidase activities that can be selectively activated for various theranostic applications. Thus, our results demonstrate the crucial role of ionic radii and the concentration of RE3+ dopants on defect formation in CNPs for improved antioxidant properties of ceria.
机译:氧化铈纳米颗粒(CNP)的抗氧化活性取决于氧空位和Ce3 +活性位点的浓度。在本作工作中,我们在离子半径上报道了5摩尔%三价稀土掺杂(RE3 + = EU3 +,ND3 +,PR3 +,PR3 +,PR3 +,PR3 +,PR3 +,PR3 +,PR3 +)CNP的影响。作为离子半径的函数观察到晶格参数,菌株和氧空位浓度的增加。在CNPS中的各种掺杂剂中,具有较高离子半径的LA3 +具有较小的微晶尺寸(7.9nm)和更高的空位,显示出更好的过氧化物酶,氧化酶和羟基自由基(HO中心点)清除活性。发现过氧化物酶和氧化酶活性的动力学参数分别优于K-m = 0.217和0.261mm,5摩尔%LA3 +掺杂的CNP。透过掺杂剂浓度对结构性质的作用,我们还在CNPS中使用10和20mol%LA3 +掺杂来探索。由于较小的微晶尺寸(6.7nm)和更高的缺陷水平(3.12×10(21 )cm(-3)),20%LA3 +掺杂显示出优异的过氧化物酶和氧化酶活性,如低K-M值所示。 CNP以浓度依赖性方式表现出过氧化物酶和氧化酶活性。此外,CNPS表现出浓度依赖性过氧化物酶和氧化酶活性,其可用于各种治疗方法的选择性地活化。因此,我们的结果表明了离子半径的关键作用以及Re3 +掺杂剂的浓度在CNP中的缺陷形成,以改善Ceria的抗氧化性能。

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