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工程二维 Pd 纳米板具有暴露的高活性 {100} 面,用于比色法酸性磷酸酶检测。

Engineering Two-Dimensional Pd Nanoplates with Exposed Highly Active {100} Facets Toward Colorimetric Acid Phosphatase Detection.

机构信息

School of Materials Science and Engineering , University of Jinan , Jinan 250022 , China.

Department of Physics and Institute of Laser , Qufu Normal University , Qufu 273165 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Dec 18;11(50):47564-47570. doi: 10.1021/acsami.9b16279. Epub 2019 Dec 9.

Abstract

Enzyme-like activity and efficiency of nanomaterials are strongly controlled by their size, composition, and structure, and hence the structural parameters need to be optimized. Here, we report that two-dimensional Pd nanoplates enclosed by {100}-facets [{100}PdSP@rGO] exhibit substantially enhanced intrinsic oxidase-like activities relative to the {111}-facets ones and Pd nanocubes in catalyzing the chromogenic reaction of 3,3',5,5'-tetramethylbenzidine. By taking ascorbic acid 2-phosphate as the substrate, which transforms to ascorbic acid in the presence of acid phosphatase (ACP), the {100}PdSP@rGO could be used as an efficient nanozyme for colorimetric ACP detection without resorting to destructive HO. A good linear relationship from 0.01 to 6.0 mU/mL with a detection limit of 8.3 μU/mL is obtained, which is better than most previously reported ACP assays. Importantly, the excellent assay performance could be successfully applied to ACP determination in serum samples with high accuracy. This study demonstrates that the enzyme-like activity of nanomaterials could be finely tuned simultaneously by controlling their exposed crystal facets and high specific surface area.

摘要

纳米材料的酶样活性和效率强烈受到其尺寸、组成和结构的控制,因此需要优化结构参数。在这里,我们报告说,由 {100} 面封闭的二维钯纳米板 [{100}PdSP@rGO] 相对于 {111} 面的和钯纳米立方在催化 3,3',5,5'-四甲基联苯胺的显色反应中表现出显著增强的固有氧化酶样活性。通过以抗坏血酸 2-磷酸作为底物,在酸性磷酸酶 (ACP) 的存在下转化为抗坏血酸,{100}PdSP@rGO 可以用作用于比色 ACP 检测的高效纳米酶,而无需诉诸破坏性的 HO。从 0.01 到 6.0 mU/mL 获得了良好的线性关系,检测限为 8.3 μU/mL,优于大多数先前报道的 ACP 测定。重要的是,出色的测定性能可以成功应用于血清样品中 ACP 的测定,具有很高的准确性。本研究表明,通过控制纳米材料暴露的晶面和高比表面积,可以同时精细调节纳米材料的酶样活性。

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