1. Cathode Performance of Co-Doped Li2O with Specific Capacity (400 mAh/g) Enhanced by Vinylene Carbonate. Issue 4 (16th February 2017) Authors: Kobayashi, Hiroaki; Hibino, Mitsuhiro; Kubota, Yuki; Ogasawara, Yoshiyuki; Yamaguchi, Kazuya; Kudo, Tetsuichi; Okuoka, Shin-ichi; Ono, Hironobu; Yonehara, Koji; Sumida, Yasutaka; Mizuno, Noritaka Journal: Journal of the Electrochemical Society Issue: Volume 164:Issue 4(2017) Page Start: A750 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
2. Cathode Performance of Co-Doped Li2O with Specific Capacity (400 mAh/g) Enhanced by Vinylene Carbonate. Issue 4 (1st January 2017) Authors: Kobayashi, Hiroaki; Hibino, Mitsuhiro; Kubota, Yuki; Ogasawara, Yoshiyuki; Yamaguchi, Kazuya; Kudo, Tetsuichi; Okuoka, Shin-ichi; Ono, Hironobu; Yonehara, Koji; Sumida, Yasutaka; Mizuno, Noritaka Journal: Journal of the Electrochemical Society Issue: Volume 164:Issue 4(2017) Page Start: A750 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
3. Enhanced Specific Capacity of Co-Doped Li2O by Optimization of Synthesis Conditions. Issue 9 (1st January 2018) Authors: Tsukasaki, Takashi; Hibino, Mitsuhiro; Ogasawara, Yoshiyuki; Yamaguchi, Kazuya; Kudo, Tetsuichi; Okuoka, Shin-ichi; Ono, Hironobu; Yonehara, Koji; Sumida, Yasutaka; Mizuno, Noritaka Journal: Journal of the Electrochemical Society Issue: Volume 165:Issue 9(2018) Page Start: A1971 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
4. Enhanced Specific Capacity of Co-Doped Li2O by Optimization of Synthesis Conditions. Issue 9 (29th June 2018) Authors: Tsukasaki, Takashi; Hibino, Mitsuhiro; Ogasawara, Yoshiyuki; Yamaguchi, Kazuya; Kudo, Tetsuichi; Okuoka, Shin-ichi; Ono, Hironobu; Yonehara, Koji; Sumida, Yasutaka; Mizuno, Noritaka Journal: Journal of the Electrochemical Society Issue: Volume 165:Issue 9(2018) Page Start: A1971 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
5. Runge–Kutta analysis for optimizing the Zn-catalyzed transesterification conditions of MA and MMA with diols to maximize monoesterified products. Issue 21 (26th August 2021) Authors: Kato, Taito; Akebi, Shin-ya; Nagae, Haruki; Yonehara, Koji; Oku, Tomoharu; Mashima, Kazushi Journal: Catalysis science & technology Issue: Volume 11:Issue 21(2021) Page Start: 6975 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗