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Pt74Ag26 nanoparticle-decorated ultrathin MoS2 nanosheets as novel peroxidase mimics for highly selective colorimetric detection of H2O2 and glucose

机译:Pt74Ag26 nanoparticle-decorated超薄二硫化钼nanosheets作为高度小说过氧化物酶模仿过氧化氢的选择性比色检测葡萄糖

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摘要

To extend the functionalities of two-dimensional graphene-like layered compounds as versatile materials, the modification of transition metal dichalcogenide nanosheets such as MoS2 with metal nanoparticles is of great and widespread interest. However, few studies are available on the preparation of bimetallic nanoparticles supported on MoS2. Herein, a facile and efficient method to synthesize MoS2-PtAg nanohybrids by decorating ultrathin MoS2 nanosheets with octahedral Pt74Ag26 alloy nanoparticles has been reported. The as-prepared MoS2-Pt74Ag26 nanohybrids were investigated as novel peroxidase mimics to catalyze the oxidation of classical peroxidase substrate 3,3',5,5'-tetramethylbenzidine (TMB) in the presence of H2O2, producing a blue colored reaction and exhibiting typical Michaelis-Menten kinetics. MoS2-Pt74Ag26 has a higher affinity for H2O2 than horseradish peroxidase (HRP) and a higher v(max) value with TMB as the substrate than MoS2. The improved catalytic activity of hybrids for colorimetric reactions could be attributed to the synergistic effects of octahedral Pt74Ag26 nanoparticles and ultrathin MoS2 nanosheets as supports. Meanwhile, the generation of active oxygen species ((OH)-O-center dot) by H2O2 decomposition with MoS2-Pt74Ag26 was responsible for the oxidation of TMB. On the basis of these findings, a colorimetric method based on MoS2-Pt74Ag26 nanohybrids that is highly sensitive and selective was developed for glucose detection. Lower values of the limit of detection (LOD) were obtained, which is more sensitive than MoS2 nanosheets.
机译:二维的扩展功能graphene-like层状化合物是多才多艺的材料、过渡金属的修改dichalcogenide nanosheets如二硫化钼用金属纳米粒子是伟大的和普遍的兴趣。双金属纳米颗粒的制备支持建设监理。方法合成MoS2-PtAg nanohybrids装修超薄二硫化钼nanosheets八面体Pt74Ag26合金纳米粒子报道。nanohybrids小说过氧化物酶研究模仿古典的催化氧化过氧化物酶底物3, 3, 5, 5 ' -tetramethylbenzidine(三甲)过氧化氢的存在,产生一个蓝色的颜色反应,表现出典型的Michaelis-Menten动力学。比辣根过氧化物酶(合)和过氧化氢更高的v (max)值与三甲底物二硫化钼。比色反应可能是混合动力车的协同效应八面体Pt74Ag26纳米颗粒和超薄二硫化钼nanosheets作为支持。代的活性氧物种((OH) -O-center点)过氧化氢分解MoS2-Pt74Ag26负责氧化三甲。基于MoS2-Pt74Ag26比色法nanohybrids高度敏感和选择了葡萄糖检测。降低检测极限的值(LOD)获得,这比建设监理更敏感nanosheets。

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