在线国产一区二区_成人黄色片在线观看_国产成人免费_日韩精品免费在线视频_亚洲精品美女久久_欧美一级免费在线观看

Global EditionASIA 中文雙語Fran?ais
China
Home / China / Society

Deputy's dedication to sci-tech cooperation bears fruit

By WANG XU in Shenzhen, Guangdong | CHINA DAILY | Updated: 2025-02-20 07:42
Share
Share - WeChat
Xue Qikun, a deputy to the National People's Congress and president of Southern University of Science and Technology

A national lawmaker from Shenzhen, Guangdong province, has delivered on his promise made at last year's two sessions as he achieved a major breakthrough in the field of superconductivity.

This year's two sessions, the annual meetings of China's top legislative and political advisory bodies, will start on March 4 in Beijing.

Xue Qikun, a deputy to the National People's Congress, China's top legislature, and president of the Shenzhen-based Southern University of Science and Technology, along with physicists from other institutions, has found that compounds containing nickel can conduct electricity without resistance at normal atmospheric pressure.

Their research, published in scientific journal Nature on Monday, is significant because until now nickel compounds, known as nickelates, needed to be subjected to extremely high pressure to act as superconductors.

"Collaboration in achieving this breakthrough is important because the partnership among Southern University of Science and Technology, the Quantum Science Center of the Guangdong-Hong Kong-Macao Greater Bay Area and Tsinghua University allowed for large-scale, interdisciplinary efforts and, thereby, accelerated progress," Xue told China Daily in an interview.

As an NPC deputy, Xue had advocated partnerships in education and technology during the two sessions last year, and called for a new system for training talent and solving complex scientific and technological problems through cooperation between Guangdong and the Hong Kong and Macao special administrative regions.

The successful research on an "unconventional" nickel superconductor is a clear demonstration of his dedication to scientific cooperation.

Speaking on the upcoming two sessions, Xue said he will continue to advocate a holistic approach where universities play a central role in the country's innovation ecosystem.

"Attracting, retaining and making the best use of talented individuals is crucial for scientific progress, and universities need to adapt their academic programs to reflect the latest trends in science and technology," he said.

Xue added that "by attracting and cultivating talent, fostering a supportive environment for research and entrepreneurship, and adapting their academic programs to meet the demands of a technology-driven economy, universities should play a central role in China's innovation ecosystem".

According to the Chinese team's research published in Nature, compounds containing nickel are able to carry electricity without resistance at a temperature of 45 Kelvin, or — 228 C.

The highest transition temperature of conventional superconductors is 40 K, or — 233 C, also known as the McMillan limit. The search for superconducting materials with higher transition temperatures has always been a key quest in the scientific community.

In 2023, Chinese scientists achieved superconductivity in a specific type of nickelate, but only under extremely high pressure. Achieving superconductivity in nickelates at ambient pressure became a major goal. The research team spent three years developing a new technique, eventually producing high-quality nickel oxide.

The team observed the key hallmarks of superconductivity in a thin film of nickel oxide crystals. Their study showed that the nickelate crystals lost resistance at a critical temperature and expelled magnetic fields.

The discovery has excited the scientific community because nickelates now join two groups of ceramics — copper-based cuprates and iron-based pnictides — as "unconventional" superconductors that operate at ambient pressure and high temperatures.

This new data could help experts design materials that operate under ambient conditions, which in turn could make medical technologies, such as magnetic resonance imaging, more efficient and radically cheaper.

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: 四虎最新紧急入口 | 91精品国产99久久久久久红楼 | 在线视频一区二区 | 日韩成人av在线播放 | 中文字幕视频在线 | 久久久久国产一区二区三区四区 | 亚洲精品午夜aaa久久久 | 日韩一区欧美一区 | 一区二区三区高清 | 最新天堂中文在线 | 污网站免费在线观看 | 97色在线视频 | 日本视频一区二区三区 | 欧美午夜精品理论片a级按摩 | 国产日韩欧美一区二区 | 天天天天天干 | 日韩视频精品在线 | 91精品国产综合久久婷婷香蕉 | 美女国产精品 | 伊人网在线免费观看 | 国产传媒在线视频 | 亚洲一区不卡 | 日本一级毛片视频 | 久久综合久久受 | 天天看天天干 | 国产精品96久久久久久久 | 久久一 | 天天碰天天操 | 亚洲一区av在线 | 久久精品一 | 欧美成人一区二区 | 国产精品99久久久久久www | 久久国产精彩视频 | 成人免费福利 | 国产精品理论电影 | 蜜臀91精品国产高清在线观看 | 久久国产精品99国产 | 亚洲免费网 | 欧美日本国产 | 国产精品成人在线观看 | 国产精品久久久久久久久久99 |