K
Kazunori Kuribara
Researcher at National Institute of Advanced Industrial Science and Technology
Publications - 49
Citations - 3824
Kazunori Kuribara is an academic researcher from National Institute of Advanced Industrial Science and Technology. The author has contributed to research in topics: Thin-film transistor & Transistor. The author has an hindex of 12, co-authored 42 publications receiving 3237 citations. Previous affiliations of Kazunori Kuribara include University of Tokyo.
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Journal ArticleDOI
An ultra-lightweight design for imperceptible plastic electronics
Martin Kaltenbrunner,Tsuyoshi Sekitani,Tsuyoshi Sekitani,Jonathan T. Reeder,Jonathan T. Reeder,Tomoyuki Yokota,Kazunori Kuribara,Takeyoshi Tokuhara,Michael Drack,Reinhard Schwödiauer,Ingrid Graz,Simona Bauer-Gogonea,Siegfried Bauer,Takao Someya,Takao Someya +14 more
TL;DR: In this paper, the authors present a platform that makes electronics both virtually unbreakable and imperceptible on polyimide polysilicon elastomers, which can be operated at high temperatures and in aqueous environments.
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Printable elastic conductors with a high conductivity for electronic textile applications
Naoji Matsuhisa,Martin Kaltenbrunner,Martin Kaltenbrunner,Tomoyuki Yokota,Tomoyuki Yokota,Hiroaki Jinno,Kazunori Kuribara,Tsuyoshi Sekitani,Tsuyoshi Sekitani,Takao Someya,Takao Someya +10 more
TL;DR: A printable elastic conductor with a high initial conductivity and a record high conductivity when stretched to 215% strain is reported and the feasibility of inks is demonstrated by fabricating a stretchable organic transistor active matrix on a rubbery stretchability-gradient substrate with unimpaired functionality.
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Organic transistors with high thermal stability for medical applications
Kazunori Kuribara,He Wang,Naoya Uchiyama,Kenjiro Fukuda,Tomoyuki Yokota,Ute Zschieschang,Cherno Jaye,Daniel A. Fischer,Hagen Klauk,Tatsuya Yamamoto,Kazuo Takimiya,Masa-Aki Ikeda,Hirokazu Kuwabara,Tsuyoshi Sekitani,Yueh-Lin Loo,Takao Someya,Takao Someya +16 more
TL;DR: Flexible thin-film transistors with excellent thermal stability and their viability for biomedical sterilization processes are demonstrated and are stable even after exposure to conditions typically used for medical sterilization.
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Ultraflexible organic amplifier with biocompatible gel electrodes
Tsuyoshi Sekitani,Tomoyuki Yokota,Kazunori Kuribara,Martin Kaltenbrunner,Martin Kaltenbrunner,Takanori Fukushima,Yusuke Inoue,Masaki Sekino,Takashi Isoyama,Yusuke Abe,Hiroshi Onodera,Takao Someya +11 more
TL;DR: The fabrication of a biocompatible highly conductive gel composite comprising multi-walled carbon nanotube-dispersed sheet with an aqueous hydrogel that exhibits admittance of 100 mS cm−2 and maintains high admittance even in a low-frequency range is demonstrated.
Journal ArticleDOI
A 4 V Operation, Flexible Braille Display Using Organic Transistors, Carbon Nanotube Actuators, and Organic Static Random-Access Memory
Kenjiro Fukuda,Tsuyoshi Sekitani,Ute Zschieschang,Hagen Klauk,Kazunori Kuribara,Tomoyuki Yokota,Takushi Sugino,Kinji Asaka,Masaaki Ikeda,Hirokazu Kuwabara,Tatsuya Yamamoto,Kazuo Takimiya,Takanori Fukushima,Takuzo Aida,Makoto Takamiya,Takayasu Sakurai,Takao Someya +16 more
TL;DR: A sheet-type Braille display operating at 4 V was successfully fabricated by integrating organic an static random access memory (SRAM) array with carbon nanotube (CNT)-based actuators that are driven by organic thin-film transistors (control-TFTs) as discussed by the authors.