This research was supported financially by the Major Program of the National Natural Science Foundation of China(21890731).
Lithium (Li) metal is a promising anode for the next generation high-energy–density batteries. However, the growth of Li dendrites, low coulombic efficiency and dramatic volume change limit its development. Here, we ...
Supported by the National Natural Science Foundation of China(No.20973077), the Program for New Century Excellent Talents in University of China(No.NCET-07-0358) and the Brain Gain Fund of Huazhong University of Science and Technology, China.
A mechanism about the origin of the selectivities for the cleavage of dioxolane five-membered rings on pyranoside rings was suggested. Quantum chemical studies were performed to testify the rationality of the mechanis...
A combination of HBr and trans-3,5-dihydroperoxy-3,5-dimethyl-1,2-dioxolane as anew and powerful oxidant was found effective for facile brotnination of different aromatic compounds at room temperature in water as a gr...
An efficient method for the preparation of 1,3-dioxolanes via the coupling of epoxides with ketones catalyzed by heteropolyacids at ambient temperature has been described.
Supported by the Natural Science Foundation of Shandong Province(No.Y2 0 0 2 B0 6 )
Five novel triazole compounds containing group 1,3-dioxolane were designed and synthesized by taking difenoconazole as the start compound and changing diphenyl ether for benzyl phenyl ether. Their structures were conf...
the National Natural Science Foundation (Nos. 20025207, 20272071, 20372075 and 20321202), the Qinghaosu Science and Technology Foundation, the Chinese Academy of Sciences (KGCX2-SW-209) and the Major State Basic Research Develop
A [1,2]dioxolane-type peroxide was synthesized and tested for its cleavage behavior with Fe2+-cysteinate as a simple model of biological redox species. No S-alkylation product was observed.