Zobrazeno 1 - 10
of 11
pro vyhledávání: '"Shuaihu Jiang"'
Publikováno v:
ACS Central Science, Vol 10, Iss 3, Pp 676-683 (2024)
Externí odkaz:
https://doaj.org/article/6f88a1bc8b7d46ac92c4873223c401f0
Autor:
Jiawei Du, Shuaihu Jiang, Ruya Zhang, Pai Wang, Chao Ma, Ruijuan Zhao, Chunhua Cui, Yanning Zhang, Yijin Kang
Publikováno v:
ACS Catalysis. 13:6887-6892
Publikováno v:
ChemElectroChem. 8:558-562
Publikováno v:
Green Chemistry. 23:2525-2530
Electrocatalytic water splitting is a promising route for green hydrogen production. However, the anodic reaction of oxygen evolution has a high overpotential and low value products are obtained. Therefore, the exploration of decoupling hydrogen evol
Autor:
Qin Yue, Ying Xu, Tao Li, Shuaihu Jiang, Xuan Lu, Jianmin Luo, Edward Matios, Yijin Kang, Weiyang Li
Publikováno v:
Nano Letters. 21:816-822
Dendrite growth has been severely impeding the implementation of sodium (Na) metal batteries, which is regarded as one of the most promising candidates for next-generation high-energy batteries. Herein, SnO2 quantum dots (QDs) are homogeneously dispe
Autor:
Shan Chen, Hongliang Xin, Yijin Kang, Shu-Juan Bao, Yanan Yu, Shuaihu Jiang, Siwen Wang, Maowen Xu, Yuan Rao, Ruya Zhang, Qin Yue
Publikováno v:
ACS Applied Materials & Interfaces. 12:37092-37099
Hydrogen economy is one of the most promising candidates to replace the current energy system on depleting fossil fuels. As a clean and sustainable way to produce hydrogen, electrocatalytic water splitting attracts ever-increasing interest from the r
Autor:
Yanning Zhang, Yuan Rao, Yanan Yu, Qin Yue, Hongxian Liu, Ruya Zhang, Yijin Kang, Shan Chen, Shuaihu Jiang
Publikováno v:
Journal of the American Chemical Society. 142:6461-6466
As an alternative for depleting fossil fuel energy, hydrogen economy desires low-cost and efficient hydrogen production from water splitting. In order to explore a cheap, abundant, active, and durable catalyst for the electrocatalytic hydrogen evolut
Publikováno v:
Energy Storage Materials. 25:334-341
For its high specific capacity of 3860 mAh g−1 and low redox potential of −3.04 V (vs. SHE), lithium (Li) metal has been regarded as one of the most promising anode materials for the next-generation batteries. However, the limited Li utilization
Autor:
Ying, Xu, Edward, Matios, Jianmin, Luo, Tao, Li, Xuan, Lu, Shuaihu, Jiang, Qin, Yue, Weiyang, Li, Yijin, Kang
Publikováno v:
Nano letters. 21(1)
Dendrite growth has been severely impeding the implementation of sodium (Na) metal batteries, which is regarded as one of the most promising candidates for next-generation high-energy batteries. Herein, SnO