*Ivana Cvijović-Alagić1, Jelena Bajat2 (1. Vinca Institute of Nuclear Sciences University of Belgrade (Serbia), 2. Faculty of Technology and Metallurgy University of Belgrade (Serbia))
Poster SessionC. Next Generation Advanced Materials Through Nanostructure Control Technology
*Kazuhide Ueno1 (1. Yokohama National Univ. (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Naoki Matsui1, Saito Itakura1, Ryoji Kanno1 (1. Inst. of Science Tokyo (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Tetsuroh Shirasawa1, Shigeru Kobayashi2, Kazunori Nishio3, Ryota Shimizu4, Taro Hitosugi2 (1. National Institute of Advanced Industrial Science and Technology (Japan), 2. The Univ. of Tokyo (Japan), 3. Institute of Science Tokyo (Japan), 4. Institute of Molecular Science (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Takuhiro Sasadaira1, Naoto Tanibata1, Hayami Takeda1, Masanobu Nakayama1 (1. Nagoya Institute of Tech. (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Changho Yeon1, Chan-Woo Lee1 (1. Korea Inst. of Energy Research (Korea))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Shota Asayama1, Ryo Kobayashi1 (1. Nagoya Inst. of Tech. (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Sihao Xing1,2, Gen Hasegawa1, Prince Sharma1, Daisuke Ito3, Kazuhiro Kamiguchi3, Kazunori Takada1, Naoaki Kuwata1,2 (1. Center for Green Res. on Energy and Environmental Materials, National Inst. for Materials Sci. (Japan), 2. Graduate School of Chemical Sci. and Engineering, Hokkaido Univ. (Japan), 3. Murata Manufac. Co., Ltd. (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Riku Nakahara1, Naoto Tanibata1, Hayami Takeda1, Masanobu Nakayama1, Kohei Shimokawa2, Tetsu Ichitsubo2 (1. Nagoya Institute of Tech. (Japan), 2. Tohoku Univ. (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Masatoshi Hiraishi1, Amba D Pant1, Izumi Umegaki1, Kazuki Ohishi2, Jun Sugiyama2 (1. Institute of Materials Structure Science, High Energy Accelerator Research Organization (Japan), 2. Comprehensive Research Organization for Science and Society (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Ryota Shimizu1, Hinata Izumi2, Hiroshi Yaguchi3, Takanori Koitaya4, Genki Kobayashi3, Taro Hitosugi2,5 (1. Institute for Molecular Science (Japan), 2. The University of Tokyo (Japan), 3. RIKEN (Japan), 4. Kyoto University (Japan), 5. Institute of Science Tokyo (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Feilong Xing1, Hideo Hosono1, Masaaki Kitano1 (1. Institute of Science Tokyo (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Takeru Nakashima1, Yasunobu Ando1 (1. Science Tokyo (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Kosuke Takeshita1, Miwa Hikichi2, Shin-ichi Ito2, Natsumi Noguchi1, Shohei Shimozato1, Kazuki Yamaguchi3, Iwao Matsuda3, Shin-ichi Orimo4,5, Ryuki Tsuji2, Osamu Oki2, Takahiro Kondo2,4,6 (1. Graduate School of Pure and Applied Sciences, University of Tsukuba (Japan), 2. Department of Materials Science, Institute of Pure and Applied Sciences, University of Tsukuba (Japan), 3. Institute for Solid State Physics, The University of Tokyo (Japan), 4. Advanced Institute for Materials Research (WPI-AIMR), Tohoku University (Japan), 5. Institute for Material Research, Tohoku University (Japan), 6. Tsukuba Research Center for Energy Materials Science, Institute of Pure and Applied Sciences and R&D Center for Zero CO2 Emission Functional Materials, University of Tsukuba (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Kazuhiro Mori1,2, Ginga Kitahara1, Fangzhou Song1, Takashi Honda1 (1. Inst. Materials Structure Sci. / J-PARC Center, High Energy Accelerator Res. Organization (Japan), 2. Graduate School of Sci. and Eng., Ibaraki Univ. (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Kaito Niita1, Masayoshi Miyazaki2, Hideo Hosono1, Masaaki Kitano1 (1. Inst. of Science Tokyo (Japan), 2. The Univ. of Osaka (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Natsuhiko Yoshinaga1, Bappaditya Roy1 (1. Future University Hakodate (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
Kota Mitsumoto2, *Kyohei Takae1 (1. Tottori Univ. (Japan), 2. Univ. Tokyo (Japan))
Poster SessionD. New Trends in Battery Science and Application : [D-1] Ion Jamology: Materials Design Transformation by Understanding non-equilibrium and collective ionic flow
*Heping Shi1, Daiki Ura2, Takamasa Okumura1, Kazunori Koga1, Masaharu Shiratani1, Ryo Ono2, Toshiyuki Kawasaki3 (1. Kyushu University (Japan), 2. The University of Tokyo (Japan), 3. Nishinipponn Institute of Technology (Japan))
Poster SessionF. Sustainable Futures Through Advanced Materials and Water Science : [F-1] Plasma Agriculture: An Emerging Field