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Biomolecule-embedded metal-organic frameworks as an innovative sensing platform
Authors:Sureshkumar Kempahanumakkagari  Vanish Kumar  Pallabi Samaddar  Pawan Kumar  Thippeswamy Ramakrishnappa  Ki-Hyun Kim
Affiliation:1. School of Basic and Applied Sciences, Daynanada Sagar University, Bengaluru 560078, India;2. Department of Applied Sciences, U.I.E.T., Panjab University, Chandigarh 160014, India;3. Department of Civil and Environmental Engineering, Hanyang University, Seoul 04763, Republic of Korea;4. Department of Nano Sciences and Materials, Central University of Jammu, Jammu 180011, India;5. Department of Chemistry, Dayananda Sagar Academy of Technology and Management, Bengaluru 560082, India
Abstract:Technological advancements combined with materials research have led to the generation of enormous types of novel substrates and materials for use in various biological/medical, energy, and environmental applications. Lately, the embedding of biomolecules in novel and/or advanced materials (e.g., metal-organic frameworks (MOFs), nanoparticles, hydrogels, graphene, and their hybrid composites) has become a vital research area in the construction of an innovative platform for various applications including sensors (or biosensors), biofuel cells, and bioelectronic devices. Due to the intriguing properties of MOFs (e.g., framework architecture, topology, and optical properties), they have contributed considerably to recent progresses in enzymatic catalysis, antibody-antigen interactions, or many other related approaches. Here, we aim to describe the different strategies for the design and synthesis of diverse biomolecule-embedded MOFs for various sensing (e.g., optical, electrochemical, biological, and miscellaneous) techniques. Additionally, the benefits and future prospective of MOFs-based biomolecular immobilization as an innovative sensing platform are discussed along with the evaluation on their performance to seek for further development in this emerging research area.
Keywords:Biomolecule-embedded or biointerfaces  MOFs  Sensors
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