Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Bingxiao, Yang"'
Autor:
Jiaxin Gao, Enlong Zhou, Qianya Cheng, Hui Ma, Su Jing, Yingdong Han, Ling Huang, Yangbo Wang, Chao Gao, Bingxiao Yang
Publikováno v:
Nanoscale. 11:16562-16570
The modulation of luminescence via external stimuli such as temperature, mechanical stress, hydrostatic pressure, as well as electric and/or magnetic fields, has witnessed great progress, enabled the disclosure of new principles and energy transfer p
Autor:
Lisha Yin, Bingxiao Yang, Ling Huang, Xiaoji Xie, Kun Chen, Enlong Zhou, Qinghua Zhang, Lin Gu, Yangbo Wang
Publikováno v:
Dalton Transactions. 47:4950-4958
Scandium (Sc) sits at a unique position in the periodic table, i.e., the junction of the top of the rare earth column and the beginning of the transition metal row. Studies have shown that Sc-based nanomaterials are very sensitive to the surrounding
Publikováno v:
Molecular Catalysis. 494:111109
Nitrogen-doped cobalt nanoparticles loaded on porous supports were developed for ring-opening carbonylation of propylene oxide. The catalysts were prepared by simply pyrolysis of Co(OAc)2/phenanthroline and supports. As proved by XPS combined with XR
Autor:
Yangbo, Wang, Bingxiao, Yang, Kun, Chen, Enlong, Zhou, Qinghua, Zhang, Lisha, Yin, Xiaoji, Xie, Lin, Gu, Ling, Huang
Publikováno v:
Dalton transactions (Cambridge, England : 2003). 47(14)
Scandium (Sc) sits at a unique position in the periodic table, i.e., the junction of the top of the rare earth column and the beginning of the transition metal row. Studies have shown that Sc-based nanomaterials are very sensitive to the surrounding
Autor:
Lisha Yin, Mengxue Li, Yue Pan, Yangbo Wang, Ze Yuan, Yingdong Han, Xiaoji Xie, Bingxiao Yang, Tian Wei, Ling Huang, Xincan Ling, Enlong Zhou
Publikováno v:
Advanced Functional Materials. 28:1801782
Autor:
Haiquan Su, Ling Huang, Wei Huang, Yue Pan, Yangbo Wang, Chao Gao, Lingxiao Wang, Xiaoji Xie, Qianwen Huang, Bingxiao Yang
Publikováno v:
Advanced Materials. 30:1705256
Luminescent nanothermometers have shown competitive superiority for contactless and noninvasive temperature probing especially at the nanoscale. Herein, we report the inherently Eu2+ /Eu3+ codoped Sc2 O3 nanoparticles synthesized via a one-step and c