Aggarwal Vidushi, Solanki Shipra, Malhotra Bansi D
Nanobioelectronics Laboratory, Department of Biotechnology, Delhi Technological University Shahbad Daulatpur Delhi 110042 India
Department of Applied Chemistry, Delhi Technological University Shahbad Daulatpur Delhi 110042 India
Chem Sci. 2022 Jul 20;13(30):8727-8743. doi: 10.1039/d2sc03441g. eCollection 2022 Aug 4.
Metal-organic frameworks (MOFs) are an emerging class of porous nanomaterials that have opened new research possibilities. The inherent characteristics of MOFs such as their large surface area, high porosity, tunable pore size, stability, facile synthetic strategies and catalytic nature have made them promising materials for enormous number of applications, including fuel storage, energy conversion, separation, and gas purification. Recently, their high potential as ideal platforms for biomolecule immobilization has been discovered. MOF-enzyme-based materials have attracted the attention of researchers from all fields with the expansion of MOFs development, paving way for the fabrication of bioelectrochemical devices with unique characteristics. MOFs-based bioelectrodes have steadily gained interest, wherein MOFs can be utilized for improved biomolecule immobilization, electrolyte membranes, fuel storage, biocatalysis and biosensing. Likewise, applications of MOFs in point-of-care diagnostics, including self-powered biosensors, are exponentially increasing. This paper reviews the current trends in the fabrication of MOFs-based bioelectrodes with emphasis on their applications in biosensors and biofuel cells.
金属有机框架(MOFs)是一类新兴的多孔纳米材料,为新的研究开辟了可能性。MOFs的固有特性,如大表面积、高孔隙率、可调孔径、稳定性、简便的合成策略和催化性质,使其成为众多应用的有前途的材料,包括燃料储存、能量转换、分离和气体净化。最近,人们发现它们作为生物分子固定化的理想平台具有很高的潜力。随着MOFs研究的不断发展,基于MOF-酶的材料吸引了各个领域研究人员的关注,为制造具有独特特性的生物电化学装置铺平了道路。基于MOFs的生物电极逐渐受到关注,其中MOFs可用于改善生物分子固定化、电解质膜、燃料储存、生物催化和生物传感。同样,MOFs在即时诊断中的应用,包括自供电生物传感器,也在呈指数级增长。本文综述了基于MOFs的生物电极制备的当前趋势,重点介绍了它们在生物传感器和生物燃料电池中的应用。