男友太凶猛1v1高h,大地资源在线资源免费观看 ,人妻少妇精品视频二区,极度sm残忍bdsm变态

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

Chinese scientists observe complex structure of solid hydrogen

Xinhua | Updated: 2025-05-15 10:58
Share
Share - WeChat

BEIJING -- An international team led by Chinese scientists has achieved the world's first observation of the complex crystalline structure of solid hydrogen using X-ray nanoscale probes, revealing the most detailed architecture of solid hydrogen ever recorded.

The research paper was published in Nature on Wednesday.

Under standard conditions, hydrogen exists as a gas. At high pressures, it crystallizes into a solid form, yet its atomic arrangement under extreme compression was enigmatic until now.

"As pressure increases, hydrogen's crystalline structure becomes increasingly sophisticated," explained Ji Cheng, the lead author of the study and a researcher at the Center for High Pressure Science and Technology Advanced Research in Beijing.

In gaseous hydrogen, molecules disperse randomly. When pressurized to 5 GPa, hydrogen molecules align like halma to form solid hydrogen. At pressures between 212-245 GPa, a portion of hydrogen atoms arranges into honeycomb-like patterns, creating even more intricate configurations, according to Ji.

The new study captured hydrogen in a critical transitional state between its solid and metallic phases.

Metallic hydrogen possesses extraordinary energy density -- second only to nuclear energy. Understanding solid hydrogen is essential to unlocking metallic hydrogen, said Ho-kwang Mao, a high-pressure physicist and foreign academician of the Chinese Academy of Sciences.

Since Nobel laureate Eugene Wigner predicted the existence of metallic hydrogen under extreme compression in 1935, physicists have estimated its formation requires pressures approaching 500 GPa, which is equivalent to the force exerted by a jumbo jet balanced on the tip of a needle, Mao said.

The team overcame extraordinary technical challenges using diamond anvil cell technology. "We compressed hydrogen molecules between two ultra-sharp diamond tips. High-brightness X-rays penetrated the diamonds to interact with compressed hydrogen, effectively allowing us to photograph its atomic arrangement," Ji said.

Crystalline structure studies are the cornerstone of metallic hydrogen research, whose exotic properties are derived from unique atomic configurations, Mao noted. This work provides critical insights into the formation pathway and mechanisms of metallic hydrogen, he added.

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: 富阳市| 咸阳市| 通山县| 启东市| 朝阳区| 衡山县| 拉萨市| 阳山县| 安阳县| 山东省| 汉寿县| 奉贤区| 伊通| 宿迁市| 颍上县| 开江县| 临安市| 顺义区| 闽侯县| 延边| 高雄市| 康马县| 班戈县| 保山市| 马山县| 扎兰屯市| 肇州县| 交城县| 吉木萨尔县| 静宁县| 新竹县| 个旧市| 威海市| 灵璧县| 抚松县| 北辰区| 岳池县| 将乐县| 海盐县| 河津市| 商城县|