Zhongran Dai
Lanzhou University
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Publication
Featured researches published by Zhongran Dai.
Inorganic Chemistry | 2014
Yuan Gao; Zhongran Dai; Jinjin Zhang; Xinxian Ma; Ning Tang; Jincai Wu
Trinuclear and tetranuclear magnesium alkoxide clusters supported by bulky phenolates with triangular or rhombic structures were readily synthesized in acceptable yields via the reaction of 2-N,N-dimethylaminoethanol/methoxyethanol, different phenols, and dibutylmagnesium. These complexes have been characterized using (1)H and (13)C NMR, elemental analyses, and X-ray crystallography. The experimental results indicate that these clusters are efficient and excellent initiators for the ring-opening polymerizations (ROPs) of l-lactide (LA) and afford polylactides with desired molecular weights and narrow polydispersity indexes (PDIs). Complex 2 can even catalyze the ROP of 4000 equiv of l-lactide in 1 min in a controlled model. Kinetic studies indicate that the polymerization is first-order for both the trinuclear magnesium complex 3 and LA. However, for the tetranuclear magnesium complex 5, the polymerization rate is first order for 5 and second order for LA.
Inorganic Chemistry | 2015
Jiao Xiong; Jinjin Zhang; Yangyang Sun; Zhongran Dai; Xiaobo Pan; Jincai Wu
Two crown ether complexes of sodium and potassium naphthalenolates were synthesized and entirely characterized. The two complexes can iso-selectively catalyze the ring-opening polymerization (ROP) of rac-lactide at room temperature and afford polylactides with desired molecular weights and narrow PDIs; the best isotacticity (Pm) achieved was 0.73.
Inorganic Chemistry | 2016
Yangyang Sun; Jiao Xiong; Zhongran Dai; Xiaobo Pan; Ning Tang; Jincai Wu
A high degree of chain end control in the isoselective ring-opening polymerization (ROP) of rac-lactide is a challenging research goal. In this work, eight highly active sodium and potassium phenolates as highly isoselective catalysts for the ROP of rac-lactide are reported. The best isoselectivity value of Pm = 0.94 is achieved. The isoselective mechanism is chain-end control through the analysis of the stereoerrors in the microstructure of a final polymer; thus, isotactic multiblock structure polymers are obtained, and the highest melt point can reach 192.5 °C. The donating group in phenolate can clearly accelerate the ROP reaction, potassium complexes are more active than the analogous sodium complexes, and the big spacial hindrance of the ligand can decrease the activity. The high isoselectivities of these complexes mostly result from their sandwich structure constructed by the plane of the crown and the plane of the anthryl group.
ACS Macro Letters | 2015
Zhongran Dai; Yangyang Sun; Jiao Xiong; Xiaobo Pan; Jincai Wu
Dalton Transactions | 2015
Yangyang Sun; Yaqin Cui; Jiao Xiong; Zhongran Dai; Ning Tang; Jincai Wu
Catalysis Science & Technology | 2013
Zhongran Dai; Jinjin Zhang; Yuan Gao; Ning Tang; Yong Huang; Jincai Wu
Chemical Communications | 2016
Zhongran Dai; Yaqin Cui; Changjuan Chen; Jincai Wu
Inorganic Chemistry Communications | 2015
Cheng Wang; Xianyu Liu; Zhongran Dai; Yangyang Sun; Ning Tang; Jincai Wu
Dalton Transactions | 2015
Yingguo Li; Dawei Yu; Zhongran Dai; Jinjin Zhang; Yongliang Shao; Ning Tang; Jincai Wu
European Journal of Inorganic Chemistry | 2013
Chunli Jian; Jinjin Zhang; Zhongran Dai; Yuan Gao; Ning Tang; Jincai Wu