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用于电化学传感器应用的ZIF-8孔工程——一篇综述

Engineering the ZIF-8 Pore for Electrochemical Sensor Applications-A Mini Review.

作者信息

Paul Anirban, Banga Ivneet Kaur, Muthukumar Sriram, Prasad Shalini

机构信息

Department of Bioengineering, University of Texas at Dallas, Richardson, Texas 75080, United States.

Department of Material Science, University of Texas at Dallas, Richardson, Texas 75080, United States.

出版信息

ACS Omega. 2022 Jul 28;7(31):26993-27003. doi: 10.1021/acsomega.2c00737. eCollection 2022 Aug 9.

Abstract

Zinc imidazole framework-8, abbreviated as ZIF-8, is a member of the metal organic framework (MOF) family. The chemical architecture of ZIF-8 consists of zinc metal duly coordinated with an organic ligand/fragment, resulting in a cagelike three-dimensional network with unique porosity. Because of such a unique architecture and physicochemical property, ZIF-8 has recently been explored in various applications such as gas storage, catalysis, electrochemical sensing, drug delivery, etc. Electrochemical sensors are currently a hot topic in scientific advances, where small, portable, Internet of Things (IoT)-enabled devices powered by electrochemical output show a newer path toward chemo and biosensor applications. The unique electrochemical property of ZIF-8 is hence explored widely for possible electrochemical sensor applications. The application and synthesis of the bare ZIF-8 have been widely reported for more than a decade. However, new scientific advancements depict tailoring the bare ZIF-8 structure to achieve smart hybrid ZIF-8 materials that show more advanced properties compared to bare ZIF-8. The framework is formed by joining inorganic (metal-containing) units with organic linkers by reticular synthesis, which results in the formation of a cross-linked crystalline network with permanent porosity. This unique porosity of ZIF-8 has recently been utilized for the encapsulation of suitable guest species to enhance the native physicochemical activity of ZIF-8. These engineered ZIF-8 materials show excellent results, especially for electrochemical sensing application. This review is intended to describe the research, including the one done by our group, where the ZIF-8 pore size is used for encapsulating nanoparticles, enzymes, and organic compounds to avail suitable sensor applications.

摘要

咪唑锌框架-8,简称为ZIF-8,是金属有机框架(MOF)家族的一员。ZIF-8的化学结构由锌金属与有机配体/片段充分配位组成,形成具有独特孔隙率的笼状三维网络。由于这种独特的结构和物理化学性质,ZIF-8最近在气体储存、催化、电化学传感、药物递送等各种应用中得到了探索。电化学传感器目前是科学进展中的一个热门话题,由电化学输出供电的小型、便携式物联网(IoT)设备为化学和生物传感器应用展示了一条新途径。因此,ZIF-8独特的电化学性质被广泛探索用于可能的电化学传感器应用。裸ZIF-8的应用和合成已经被广泛报道了十多年。然而,新的科学进展表明,对裸ZIF-8结构进行剪裁以实现智能混合ZIF-8材料,这些材料表现出比裸ZIF-8更先进的性能。该框架是通过网状合成将无机(含金属)单元与有机连接体连接而成,从而形成具有永久孔隙率的交联晶体网络。ZIF-8这种独特的孔隙率最近已被用于封装合适的客体物种,以增强ZIF-8的固有物理化学活性。这些工程化ZIF-8材料显示出优异的效果,特别是在电化学传感应用方面。这篇综述旨在描述包括我们小组所做的研究,其中ZIF-8的孔径用于封装纳米颗粒、酶和有机化合物,以实现合适的传感器应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3680/9366767/e062e68c30eb/ao2c00737_0001.jpg

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