Personal profile
In Korean
민경익 교수(첨단기술융합대학 의생명융합공학과)
Education
o (2007) B.S., Chungnam National University, Daejeon
o (2009) M.S., Chungnam National University, Daejeon
o (2015) Ph.D., POSTECH, Pohang
o (2009) M.S., Chungnam National University, Daejeon
o (2015) Ph.D., POSTECH, Pohang
Professional Experience
o (2023~Present) Associate Professor, Kyungpook National University, Daegu
o (2019~2023) Assistant Professor, Kyungpook National University, Daegu
o (2018~2019) Research Professor, Seoul National University of Science and Technology, Seoul
o (2017~2018) Postdoctoral Researcher, University of California, Berkeley
o (2015~2017) Postdoctoral Researcher, POSTECH, Pohang
o (2019~2023) Assistant Professor, Kyungpook National University, Daegu
o (2018~2019) Research Professor, Seoul National University of Science and Technology, Seoul
o (2017~2018) Postdoctoral Researcher, University of California, Berkeley
o (2015~2017) Postdoctoral Researcher, POSTECH, Pohang
Research Interests
o Self-Assembly of Peptides, Proteins, & Metal-Peptide Hybrids
o Artificial Enzymes: Functional Mimics of an Enzyme
o Microfluidics & Continuous Microflow Synthesis
o Metal-Organic Frameworks
o Biosensors and Biomedical Applications
o Artificial Enzymes: Functional Mimics of an Enzyme
o Microfluidics & Continuous Microflow Synthesis
o Metal-Organic Frameworks
o Biosensors and Biomedical Applications
Major Research Achievements
o Covalently self-assembled peptide-based hydrolase mimic for realizing exceptional catalytic longevity in foreign environments, Small Struct., 2023; 4(7):2200344.
o Assembly and Biomineralization of Polymorphic Gold–Peptide Superstructures Using Tyrosine-Rich Short Peptides, Adv. Funct. Mater., 2023; 33(4):2210196.
o Direct Synthesis of a Covalently Self-Assembled Peptide Nanogel from a Tyrosine-Rich Peptide Monomer and Its Biomineralized Hybrids. Angew. Chem. Int. Ed. 2018;57(20):5630-5634.
o Facile non-destructive assembly of tyrosine-rich peptide nanofibers as a biological glue for multicomponent-based nanoelectrode applications. Adv. Funct. Mater.. 2018;28(11):1705729.
o Submillisecond Organic Synthesis: Outpacing Fries Rearrangement through Microfluidic Rapid Mixing, Science, 2016;352(6286):691-694.
o Assembly and Biomineralization of Polymorphic Gold–Peptide Superstructures Using Tyrosine-Rich Short Peptides, Adv. Funct. Mater., 2023; 33(4):2210196.
o Direct Synthesis of a Covalently Self-Assembled Peptide Nanogel from a Tyrosine-Rich Peptide Monomer and Its Biomineralized Hybrids. Angew. Chem. Int. Ed. 2018;57(20):5630-5634.
o Facile non-destructive assembly of tyrosine-rich peptide nanofibers as a biological glue for multicomponent-based nanoelectrode applications. Adv. Funct. Mater.. 2018;28(11):1705729.
o Submillisecond Organic Synthesis: Outpacing Fries Rearrangement through Microfluidic Rapid Mixing, Science, 2016;352(6286):691-694.
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Collaborations and top research areas from the last five years
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Harnessing Amino Acid Modularity for Programmable Function in Covalent Peptide Assemblies
Hur, Y. M. & Min, K. I., 19 Mar 2025, In: Advanced Materials. 37, 11, 2419941.Research output: Contribution to journal › Article › peer-review
Open Access3 Scopus citations -
광열전환 및 촉매 특성을 가진 금-펩타이드 하이브리드 나노섬유의 합성 및 특성 분석
Kwon, K., Hur, Y. M. & Min, K. I., Feb 2025, In: Korean Chemical Engineering Research. 63, 1, p. 137-143 7 p.Translated title of the contribution :Synthesis and Characterization of Gold-Peptide Hybrid Nanofibers with Photothermal Conversion and Catalytic Properties Research output: Contribution to journal › Article › peer-review
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Assembly and Biomineralization of Polymorphic Gold–Peptide Superstructures Using Tyrosine-Rich Short Peptides
Kim, J. H. & Min, K. I., 20 Jan 2023, In: Advanced Functional Materials. 33, 4, 2210196.Research output: Contribution to journal › Article › peer-review
10 Scopus citations -
Covalently Self-Assembled Peptide-Based Hydrolase Mimic for Realizing Exceptional Catalytic Longevity in Foreign Environments
Hur, Y. M. & Min, K. I., Jul 2023, In: Small Structures. 4, 7, 2200344.Research output: Contribution to journal › Article › peer-review
Open Access8 Scopus citations -
Facile production of graphene quantum dots using a molecular adhesive membrane filter
Kim, Y., Min, K. I., Jeong, S. & Lee, K., Feb 2023, In: Bulletin of the Korean Chemical Society. 44, 2, p. 147-152 6 p.Research output: Contribution to journal › Article › peer-review
7 Scopus citations