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Multidisciplinary and multiscale nanoscience research roadmap based on large scientific facilities

Authors :
Zeng, Yuan
Zhang, Shuhan
Guo, Yuecong
Cong, Yalin
Ding, Xu
Li, Peihua
Lin, Yunxiang
Ren, Wenzhi
Su, Hui
Sun, Weigang
Xu, Liuxin
Zhang, Guikai
Chen, Shihua
Chen, Yu
Cheng, Weiren
Chu, Shengqi
Guan, Yong
Han, Jinru
Lin, Jie
Liu, Hengjie
Liu, Zheyi
Luo, Pan
Meng, Fanchun
Qiao, Sicong
Song, Zongyin
Wang, Ying
Wu, Zhao
Yang, Chenyu
Yang, Meng
Yang, Shirui
Yin, Zi
Yin, Zhibin
Zhang, Pengjun
Zhang, Hongyu
Zheng, Pingping
Zhou, Jia
Zhou, Wanlin
An, Pengfei
Cheng, He
Fan, Chunhai
Huang, Xingjiu
Lei, Yong
Li, Lina
Li, Mu
Liu, Qinghua
Peng, Shuming
Song, Li
Sun, Zhihu
Tian, Yangchao
Wang, Fangjun
Wang, Lihua
Wang, Liming
Wei, Shiqiang
Wu, Aiguo
Xiao, Chunlei
Yang, Xueming
Yin, Panchao
Zhang, Jing
Zhang, Mingxin
Wang, Yaling
Chen, Chunying
Source :
SCIENCE CHINA Chemistry; August 2024, Vol. 67 Issue: 8 p2497-2523, 27p
Publication Year :
2024

Abstract

With the advancement of modern science and technology, large scientific facilities are increasingly oriented toward demand and application, and can be used for basic research as well as serving multiple disciplines. Developing large scientific facilities and related analytical technologies enhances understanding of large scientific facilities and popularizes their application in research across multiple disciplines. The combination of light or neutron sources from large scientific facilities and advanced analytical technologies can be achieved for materials structure information, dynamics study of chemical reactions, high dissociation of biomolecules, 3D visualization of energy materials or biological samples, etc. We first introduce the progress of domestic large scientific facilities of synchrotron radiation (SR) and free electron lasers (FELs) with different wavelengths and neutron sources. We further discuss the comparison between Chinese and typical foreign facilities in X-ray radiation from X-ray tubes, synchrotrons, X-ray FELs, and neutron sources based on physical parameters of light and neutron sources. In addition, we focus on the technological progress and perspectives combined with advanced X-ray radiation and neutron sources of large scientific facilities in China, especially in the nanoscience fields of energy catalysis and biological science. We hope that this roadmap will provide references on technology and methods to experimental users, as well as prospects for future development of technologies based on large research infrastructure facilities. Comprehensive studies and guidelines for basic research to practical application in various disciplines can be made with the assistance of large scientific facilities.

Details

Language :
English
ISSN :
16747291 and 18691870
Volume :
67
Issue :
8
Database :
Supplemental Index
Journal :
SCIENCE CHINA Chemistry
Publication Type :
Periodical
Accession number :
ejs66703672
Full Text :
https://doi.org/10.1007/s11426-024-2028-7