1 |
Applications of enzymatic biofuel cells in bioelectronic devices - A review Nasar A, Perveen R International Journal of Hydrogen Energy, 44(29), 15287, 2019 |
2 |
Subphthalocyanines as electron mediators in biosensors based on phenol oxidases: Application to the analysis of red wines Gonzalez-Anton R, Osipova MM, Garcia-Hernandez C, Dubinina TV, Tomilova LG, Garcia-Cabezon C, Rodriguez-Mendez ML Electrochimica Acta, 255, 239, 2017 |
3 |
Fabrication of Hemoglobin/Silver Nanoparticle Heterolayer for Electrochemical Signal-enhanced Bioelectronic Application Lee T, Yoon JH, Choi JW Korean Chemical Engineering Research, 55(4), 556, 2017 |
4 |
High-Fidelity Bioelectronic Muscular Actuator Based on Graphene-Mediated and TEMPO-Oxidized Bacterial Cellulose Kim SS, Jeon JH, Kim HI, Kee CD, Oh IK Advanced Functional Materials, 25(23), 3560, 2015 |
5 |
Multilevel electrochemical signal detections of metalloprotein heterolayers for bioelectronic device Chung YH, Yoo SY, Lee T, Lee HJ, Min J, Choi JW Thin Solid Films, 551, 174, 2014 |
6 |
Recent advances in electronic and bioelectronic noses and their biomedical applications Oh EH, Song HS, Park TH Enzyme and Microbial Technology, 48(6-7), 427, 2011 |
7 |
Charge storage investigation in self-assembled monolayer of redox-active recombinant azurin Kim SU, Yagati AK, Singh RP, Min J, Choi JW Current Applied Physics, 9(2), E71, 2009 |
8 |
Biomemory device composed of mutant azurin thin films modified by site-directed mutagenesis Kim SU, Yagati AK, Min J, Choi JW Thin Solid Films, 518(2), 682, 2009 |
9 |
Fabrication of functional biomolecular layer using recombinant technique for the bioelectronic device Kim SU, Kim YJ, Yea CH, Min J, Choi JW Korean Journal of Chemical Engineering, 25(5), 1115, 2008 |
10 |
Mutation of Tyr-218 to Phe in Thermoanaerobacter ethanolicus secondary alcohol dehydrogenase: Effects on bioelectronic interface performance Hassler BL, Dennis M, Laivenieks M, Zeikus JG, Worden RM Applied Biochemistry and Biotechnology, 143(1), 1, 2007 |