男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語Fran?ais
China
Home / China / Innovation

Scientists solve lithium battery development problem

By Li Menghan | China Daily | Updated: 2025-10-09 08:58
Share
Share - WeChat

Chinese scientists have overcome a key obstacle in the development of all-solid-state lithium batteries by solving the issue of void formation at the interface between the anode and solid electrolyte under low external pressure. The breakthrough enhances the safety and stability of the batteries and moves them closer to commercialization.

"All-solid-state lithium batteries are a promising next-generation energy storage technology due to their use of inorganic solid electrolytes, which improve safety and allow for higher energy density," said Huang Xuejie, corresponding author of the study published on Tuesday in the journal Nature Sustainability.

Huang, a researcher at the Institute of Physics of the Chinese Academy of Sciences, explained that in previous lithium batteries, numerous tiny pores formed at the interface between the anode and electrolyte. These pores accelerated performance degradation and created potential safety risks.

Departing from traditional methods that rely on bulky external equipment to maintain pressure, Huang's team developed "dynamically adaptive interphases", created through the controlled movement of preinstalled iodide ions in solid electrolytes.

During battery operation, the iodide ions migrate toward the anode under the influence of an electric field, forming an iodine-rich layer. This layer attracts lithium ions, which automatically fill the pores, ensuring that the anode and electrolyte stay in close contact even under low external pressure.

Huang said the new design simplifies the manufacturing process and reduces material use without raising production costs.

"By adopting this technology, batteries can achieve a specific energy exceeding 500 watt-hours per kilogram, effectively doubling — or even more — the battery life of electronic devices," he said.

The prototype battery using the new technology showed stable and exceptional performance after hundreds of charge-discharge cycles under standard testing conditions, significantly outperforming comparable batteries, Huang added. He noted that the innovation could help advance technologies such as humanoid robots, electric aircraft and electric vehicles.

Wang Chunsheng, a professor at the University of Maryland in the United States, said the self-adaptive interphase could "transform the development of all-solid-state lithium metal batteries by eliminating the traditional reliance on high external pressure for interfacial stability and stable cycling".

This could boost their sustainability and accelerate their large-scale commercialization, Wang said. "This strategy also enhances the adaptability of solid-state lithium batteries for renewable energy storage, potentially offering efficient and economical solutions to support global sustainable development goals. Moreover, the universal self-adaptive interphase concept could provide a blueprint for the design of next-generation all-solid-state batteries based on other chemistries, such as sodium or potassium."

In a separate study recently published in the journal Advanced Materials, another research team led by scientists from the Institute of Metal Research of the Chinese Academy of Sciences developed a polymeric material that combines both ion transport and storage functions to enhance solid-state lithium battery performance.

This innovation addresses high interfacial impedance and low transport efficiency — two issues that occur in conventional solid-state batteries, where ion transport and storage are handled separately by the solid electrolyte and electrode materials.

Top
BACK TO THE TOP
English
Copyright 1995 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
 
主站蜘蛛池模板: 莱州市| 桃园市| 尖扎县| 无极县| 德安县| 延川县| 台安县| 彰武县| 定州市| 怀远县| 怀柔区| 柘荣县| 九江县| 仪征市| 云浮市| 万山特区| 怀宁县| 汝州市| 海盐县| 盈江县| 梁山县| 彰武县| 怀来县| 广平县| 南郑县| 水富县| 景谷| 彰化县| 南昌县| 赣州市| 南城县| 昔阳县| 历史| 霍林郭勒市| 宿迁市| 昌邑市| 富顺县| 北辰区| 大余县| 青龙| 旬阳县| 新营市| 崇义县| 遵义县| 土默特右旗| 桐城市| 重庆市| 卫辉市| 和顺县| 云梦县| 台中市| 邳州市| 永州市| 探索| 周至县| 石景山区| 合肥市| 高碑店市| 红桥区| 永寿县| 黄石市| 南雄市| 阿鲁科尔沁旗| 天全县| 芮城县| 长岛县| 视频| 磐安县| 兰西县| 扶余县| 凤凰县| 建瓯市| 宁城县| 肇源县| 五大连池市| 潜山县| 万州区| 新野县| 连州市| 雅安市| 漾濞| 保康县|