日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Biomass Waste Utilization as Nanocomposite Anodes through Conductive Polymers Strengthened SiO(2)/C from Streblus asper Leaves for Sustainable Energy Storages

利用导电聚合物增强的SiO(2)/C纳米复合阳极材料(源自Streblus asper叶片)制备生物质废料,用于可持续能源存储

Autthawong, Thanapat; Ratsameetammajak, Natthakan; Khunpakdee, Kittiched; Haruta, Mitsutaka; Chairuangsri, Torranin; Sarakonsri, Thapanee

Insight into the Role of Conductive Polypyrrole Coated on Rice Husk-Derived Nanosilica-Reduced Graphene Oxide as the Anodes: Electrochemical Improvement in Sustainable Lithium-Ion Batteries

深入研究导电聚吡咯包覆稻壳衍生纳米二氧化硅还原氧化石墨烯作为负极材料的作用:提高可持续锂离子电池的电化学性能

Ratsameetammajak, Natthakan; Autthawong, Thanapat; Khunpakdee, Kittiched; Haruta, Mitsutaka; Chairuangsri, Torranin; Sarakonsri, Thapanee

Development of Bronze Phase Titanium Dioxide Nanorods for Use as Fast-Charging Anode Materials in Lithium-Ion Batteries

开发用于锂离子电池快速充电负极材料的青铜相二氧化钛纳米棒

Pimta, Korawith; Autthawong, Thanapat; Yodying, Waewwow; Phromma, Chitsanupong; Haruta, Mitsutaka; Kurata, Hiroki; Sarakonsri, Thapanee; Chimupala, Yothin

Rice husk-derived nano-SiO(2) assembled on reduced graphene oxide distributed on conductive flexible polyaniline frameworks towards high-performance lithium-ion batteries

稻壳衍生的纳米二氧化硅组装在还原氧化石墨烯上,并分布在导电柔性聚苯胺骨架上,用于高性能锂离子电池

Ratsameetammajak, Natthakan; Autthawong, Thanapat; Chairuangsri, Torranin; Kurata, Hiroki; Yu, Ai-Shui; Sarakonsri, Thapanee

Ultrafast-charging and long cycle-life anode materials of TiO(2)-bronze/nitrogen-doped graphene nanocomposites for high-performance lithium-ion batteries

用于高性能锂离子电池的超快充电和长循环寿命的TiO₂-青铜/氮掺杂石墨烯纳米复合材料负极材料

Autthawong, Thanapat; Chimupala, Yothin; Haruta, Mitsutaka; Kurata, Hiroki; Kiyomura, Tsutomu; Yu, Ai-Shui; Chairuangsri, Torranin; Sarakonsri, Thapanee