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Nanoscale film formation of ferritin and its application to biomemory device

Authors
Kim, Sang-UkLee, TaekLee, Jin-HoYagati, Ajay KumarMin, JunhongChoi, Jeong-Woo
Issue Date
Jul-2009
Publisher
ELSEVIER SCIENCE BV
Keywords
Surface plasmon resonance; Raman spectroscopy; Atomic force microscopy; Scanning tunneling microscopy; Cyclic voltammetry; Nanobiochip
Citation
ULTRAMICROSCOPY, v.109, no.8, pp 974 - 979
Pages
6
Journal Title
ULTRAMICROSCOPY
Volume
109
Number
8
Start Page
974
End Page
979
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/55583
DOI
10.1016/j.ultramic.2009.03.005
ISSN
0304-3991
1879-2723
Abstract
A redox protein, ferritin is used as a functional constituent of the developed biomemory device. The concept of molecular device mainly depends on the solidification of biomolecules of interest and on the realization of properties of molecule immobilized on a selected substrate. Here, we immobilized the biomolecule, ferritin protein on gold substrate using an organic linker 11-mercaptoundecanoic acid (11-MUA). The immobilization of the protein on the gold substrate was confirmed by surface plasmon spectroscopy, Raman spectroscopy, and atomic force microscopy (AFM). The basic two memory functions, reading and writing of the developed biomemory device, were investigated by open-circuit potential amperometry (OCPA) using the redox property of the biomolecule of interest. The surface topography investigation by scanning tunneling microscopy (STM) shows that the robustness of the ferritin-based biomemory device was validated by the repeated electrochemical performance. These results show the developed biomemory device as a step towards the protein-based nanobiochip. (c) 2009 Elsevier B.V. All rights reserved.
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창의ICT공과대학 (융합공학부)
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