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Dive into the research topics where Kunihiko Suzuki is active.

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Featured researches published by Kunihiko Suzuki.


Organic Light Emitting Materials and Devices XX | 2016

Effect of halogenated impurities on lifetime of organic light emitting diode

Hayato Yamawaki; Kunihiko Suzuki; Tomohiro Kubota; Takeyoshi Watabe; Ayumi Ishigaki; Rina Nakamura; Hideko Inoue; Harue Nakashima; Nozomi Horikoshi; Hiromi Nowatari; Riho Kataishi; Toshiki Hamada; Toshiki Sasaki; Tsunenori Suzuki; Satoshi Seo

We investigated a correlation between lifetime and the halogen element concentration in an organic light-emitting diode (OLED) and conducted experiments and simulations to discuss degradation mechanisms due to the halogen. OELD is generally formed of high-purity materials. Since the synthesis of high-purity materials takes time and cost, quantitative understanding of the kind, amount, and influence of impurities in OLED devices is expected. The results of combustion ion chromatography show that, if the chlorine concentration in the host material is more than several parts per million, the lifetime of the device is drastically reduced. The chlorine element, which is derived from the chlorinated by-product of the host material, is found to be transferred from the chloride to other materials (e.g., an emissive dopant) according to the results of LC-MS analysis. In addition, the electron transport layer including such impurities is also found to adversely affect the lifetime. The results of TOF-SIMS analysis suggest that the dissociated chlorine element diffuse to the light-emitting layer side when the device is driven. The results of simulations (Gaussian 09) and electrochemical analyses (cyclic voltammetry and electrolysis) reveal that the halogen element is easy to dissociate from halide by excitation or reduction. The halogen element can repeat reactions with the peripheral materials by excitation or reduction and cause damages, e.g., generate radicals or further reaction products due to the radicals. The results of simulation suggest that, such compounds have low energy level and become quenchers.


Archive | 1998

Driving force transmission system

Akihiko Ikeda; Shinji Ogawa; Hirokazu Suzuki; Mitsuru Ohba; Fumitomo Tsuchiya; Akihiko Ichikawa; Tomoyuki Kano; Satoshi Ashida; Toshifumi Sakai; Hiroshi Takuno; Kunihiko Suzuki; Naoyuki Kokubo; Masayuki Shimada; Naoyuki Sakai; Takashi Hosokawa; Akio Suzuki; Moritaka Isomura


Archive | 1997

Drive force transmission apparatus

Toshifumi Sakai; Kunihiko Suzuki; Naoyuki Kokubo; Masayuki Shimada; Tomohiro Maruyama; Hisashi Fukuchi; Satoshi Ashida; Hirokazu Suzuki; Tomoyuki Kano


SAE transactions | 1991

Research in Regard to Sensory Characteristics Measuring for the Impulse Noise of the Engine Valve System

Tetuhiko Nemura; Nobuhiko Adachi; Kunihiko Suzuki


Archive | 2016

Electromagnetic friction engagement device

義揮 竹内; Yoshiki Takeuchi; 鈴木 邦彦; Kunihiko Suzuki; 邦彦 鈴木


Archive | 2016

LIGHT EMITTING ELEMENT, LIGHT EMITTING DEVICE, ILLUMINATION DEVICE AND ELECTRONIC APPARATUS

智子 下垣; Tomoko Shimogaki; 瀬尾 哲史; Tetsushi Seo; 哲史 瀬尾; 信晴 大澤; Nobuharu Osawa; 英子 井上; Hideko Inoue; 鈴木 邦彦; Kunihiko Suzuki; 邦彦 鈴木


Archive | 2013

Drive force transmission device, and control device of the drive force transmission device

則行 藤井; Noriyuki Fujii; 鈴木 邦彦; Kunihiko Suzuki; 邦彦 鈴木; 山本 健; Ken Yamamoto; 健 山本; 久志野 宏; Hiroshi Kushino; 宏 久志野


Archive | 2013

Speed reduction mechanism and motor rotation force transmission device equipped with the same

Keita Nomura; 啓太 野村; Kunihiko Suzuki; 邦彦 鈴木; Tomoyoshi Takai; 智義 高井; Hisashi Kobayashi; 恒 小林; Toru Onozaki; 徹 小野崎; Masaharu Tagami; 将治 田上


Archive | 2012

Dispositif de transmission de force d'entraînement de moteur

Tsune Kobayashi; 恒 小林; Tohru Onozaki; 徹 小野崎; Masaharu Tagami; 将治 田上; Motoyasu Yamamori; 山盛 元康; Hiroshi Takuno; 宅野 博; Kunihiko Suzuki; 鈴木 邦彦; Tomoyoshi Takai; 智義 高井; Keita Nomura; 啓太 野村


Archive | 1997

A driving force transmitting device

Naoyuki Sakai; Hiroshi Takuno; Yoshiaki Senga; Kunihiko Suzuki; Naoyuki Kokubo; Tsuyoshi Murakami; Mikiharu Oyabu; Satoshi Ashida; Kenji Arai; Hisashi Fukuchi; Akio Mukainaka

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