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用于电化学非酶葡萄糖传感的分级片状/板状M-BDC(M = Cu、Mn、Ni和Zr)金属有机框架的通用合成方法。

General synthesis of hierarchical sheet/plate-like M-BDC (M = Cu, Mn, Ni, and Zr) metal-organic frameworks for electrochemical non-enzymatic glucose sensing.

作者信息

Gumilar Gilang, Kaneti Yusuf Valentino, Henzie Joel, Chatterjee Sauvik, Na Jongbeom, Yuliarto Brian, Nugraha Nugraha, Patah Aep, Bhaumik Asim, Yamauchi Yusuke

机构信息

Welding and Fabrication Engineering Technology Department, Institut Teknologi Sains Bandung Central Cikarang Bekasi 17530 Indonesia.

Advanced Functional Materials (AFM) Laboratory, Engineering Physics Department, Institut Teknologi Bandung Bandung 40132 Indonesia

出版信息

Chem Sci. 2020 Mar 12;11(14):3644-3655. doi: 10.1039/c9sc05636j.

Abstract

Two-dimensional metal-organic frameworks (2D MOFs) are an attractive platform to develop new kinds of catalysts because of their structural tunability and large specific surface area that exposes numerous active sites. In this work, we report a general method to synthesize benzene dicarboxylic acid (BDC)-based MOFs with hierarchical 3D morphologies composed of 2D nanosheets or nanoplates. In our proposed strategy, acetonitrile helps solvate the metal ions in solution and affects the morphology, while polyvinylpyrrolidone (PVP) serves as a shape-control agent to assist in the nucleation and growth of MOF nanosheets. PVP also acts as a depletion agent to drive the assembly of the hierarchical sheet/plate-like M-BDC under solvothermal conditions. Further, we also demonstrate the flexibility of the proposed method using numerous coordinating metal ions (M = Cu, Mn, Ni, and Zr). The potential of these MOFs for electrochemical glucose sensing is examined using the hierarchical sheet-like Ni-BDC MOF as the optimum sample. It drives the electrocatalytic oxidation of glucose over a wide range (0.01 mM to 0.8 mM) with high sensitivity (635.9 μA mM cm) in the absence of modification with carbon or the use of conductive substrates. It also demonstrates good selectivity with low limit of detection (LoD = 6.68 μM; signal/noise = 3), and fast response time (<5 s).

摘要

二维金属有机框架(2D MOFs)因其结构可调和大比表面积(暴露出众多活性位点)而成为开发新型催化剂的一个有吸引力的平台。在这项工作中,我们报道了一种通用方法,用于合成具有由二维纳米片或纳米板组成的分级三维形态的基于苯二甲酸(BDC)的MOFs。在我们提出的策略中,乙腈有助于溶剂化溶液中的金属离子并影响形态,而聚乙烯吡咯烷酮(PVP)作为形状控制剂,协助MOF纳米片的成核和生长。PVP还作为耗尽剂,在溶剂热条件下驱动分级片状/板状M-BDC的组装。此外,我们还使用多种配位金属离子(M = Cu、Mn、Ni和Zr)证明了该方法的灵活性。以分级片状Ni-BDC MOF作为最佳样品,研究了这些MOFs用于电化学葡萄糖传感的潜力。在不进行碳修饰或使用导电基底的情况下,它在宽范围(从0.01 mM到0.8 mM)内驱动葡萄糖的电催化氧化,具有高灵敏度(635.9 μA mM cm)。它还表现出良好的选择性,检测限低(LoD = 6.68 μM;信噪比 = 3),响应时间快(<5 s)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f171/8152586/f4d4daa73303/c9sc05636j-f1.jpg

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