Research Project
Grant-in-Aid for Challenging Exploratory Research
In this study, we developed all solid state of electrochromic device using single-wall carbon nanotubes (SWCNTs), and clarified physical mechanisms of electrochromic properties of SWCNTs. Toward solid state devices, it is necessary to change theelectrolyte solution to solid state electrolyte. For that purpose, we prepared ion gel using triblock co-polymers. We fabricated electrochromic devices in all solid states and confirmed electrochromic phenomena using ion gel. To investigate the physical background of electrochromic properties of SWCNTs, we developed a system that can investigate opt-electrochemical measurements at -40 degrees, and then investigaed optical absorption changes by electro-chemical doping at low temperature. We found that optical absorption at ultra-violet region can be also changed by electro-chemical doping, suggesting the presence of π-π^* transition components in the UV-region.
All 2013 2012 2011 Other
All Journal Article (34 results) (of which Peer Reviewed: 31 results) Presentation (40 results) (of which Invited: 3 results) Book (1 results) Remarks (1 results) Patent(Industrial Property Rights) (2 results)
Applied Physics Letters
Volume: 102 Pages: 143107-143107
Carbon
Volume: accepted Pages: 237-245
10.1016/j.carbon.2013.03.014
Phys. Rev. Lett
Volume: 110 Pages: 86801-86801
120007137053
Journal of the Physical Society of Japan
Volume: 82 Pages: 15001-15001
210000132368
マテリアルステージ(技術情報協会)
Volume: 12 Pages: 68-70
40019612669
科学工業(化学工業社)
Volume: 64 Pages: 374-378
Phys. Rev. Lett.
Volume: 110 Issue: 8 Pages: 86801-86801
10.1103/physrevlett.110.086801
Volume: 82 Issue: 1 Pages: 15001-15001
10.7566/jpsj.82.015001
Physica Status Solidi
Volume: (B) 249 Pages: 2408-2411
Applied Physics Express
Volume: 5 Pages: 125102-125102
10031140422
Volume: (B) 249 Pages: 2424-2427
Volume: (B) 249 Pages: 2323-2327
Volume: (B) 249 Pages: 2562-2567
Phys. Rev
Volume: B 86 Pages: 45402-45402
J. Am. Chem. Soc
Volume: 134 Pages: 9545-9548
Jpn. J. Appl. Phys
Volume: 51
210000140734
210000140731
Volume: 12 Pages: 3-6
Phys. Stat. Sol. B
Volume: 249 Issue: 12 Pages: 2408-2411
10.1002/pssb.201200127
Appl. Phys. Express
Volume: 5 Issue: 12 Pages: 125102-125102
10.1143/apex.5.125102
Volume: 249 Issue: 12 Pages: 2424-24247
10.1002/pssb.201200165
Volume: 249 Issue: 12 Pages: 2323-2327
10.1002/pssb.201200452
Volume: 249 Issue: 12 Pages: 2562-2567
10.1002/pssb.201200426
Phys. Rev. B
Volume: 86 Issue: 4 Pages: 45402-45402
10.1103/physrevb.86.045402
Journal of the American Chemical Society
Volume: 134 Issue: 23 Pages: 9545-9548
10.1021/ja3013853
Jpn. J. Appl. Phys.
Volume: 51 Issue: 6S Pages: 06FD15-06FD15
10.1143/jjap.51.06fd15
Solid. State. Comm.
Volume: 151 Pages: 1696-1699
Appl. Phys. Lett.
Volume: 99 Pages: 183106-183108
Volume: 4 Pages: 105101-105103
10029790823
Adv. Mater.
Volume: 23 Pages: 2811-2814
J. Chem. Phys.
Volume: 134 Pages: 244501-2445014
J. Chem. Phys
Volume: 134 Pages: 44138-44146
http://www.comp.tmu.ac.jp/nano2/index.html