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Self-polymerization and Co-polymerization Kinetics of Gadolinium Methacrylate
Gadolinium methacrylate (Gd(MAA)3) was synthesized by using gadolinium oxide and methacrylic acid as the starting materials and its self-polymerization kinetic was studied based on non-isothermal and isothermal analysis. Moreover, the monomer reactivity ratios of methyl methacrylate (MMA) and Gd(MAA)3 were evaluated by using Kelen-Tüd?s method. The thermal neutron shielding properties of PMMA a...
http://www.stageastar.comt//ss/zhangming/publicationsshow_12510.html
 
Iron catalyst for 1,3-diene polymerization
Early 21st, Steven Luo described dialkyl phosphites were effective donors in iron-based catalysts for polymerization of 1,3-butadiene. We have been interested in iron catalyst, and achieved good catalytic systems.
http://www.stageastar.com/research/dis_info16472
 
Organometallic catalysts for olefin polymerization
Recent years have witnessed dramatic advances in the design and applications of organometallic catalysts for olefin polymerization. A variety of half-sandwich transition metal complexes with the hemilable ligands which contain both strong a...
http://www.stageastar.com/research/dis_info16461
 
Miniemulsion Polymerization: Possibilities and Chances
The miniemulsion allows one to design a variety of different nanoparticles with a well-defined size, morphology, and surface functionality. New structures can be formed, using different kinds of polymerization for the applications of s...
http://www.stageastar.com/research/dis_info16447
 
Iron catalyst for 1,3-diene polymerization
Early 21st, Steven Luo described dialkyl phosphites were effective donors in iron-based catalysts for polymerization of 1,3-butadiene. We have been interested in iron catalyst, and achieved good catalytic systems.
http://www.stageastar.com/research/dis_info16472
 
Organometallic catalysts for olefin polymerization
Recent years have witnessed dramatic advances in the design and applications of organometallic catalysts for olefin polymerization. A variety of half-sandwich transition metal complexes with the hemilable ligands which contain both strong a...
http://www.stageastar.com/research/dis_info16461
 
Miniemulsion Polymerization: Possibilities and Chances
The miniemulsion allows one to design a variety of different nanoparticles with a well-defined size, morphology, and surface functionality. New structures can be formed, using different kinds of polymerization for the applications of s...
http://www.stageastar.com/research/dis_info16447
 
Polymerization of MMA in polyHIPEs by RATRP
A series of polymerized high internal phase emulsions (polyHIPEs) with different cavities and windows (named PSD) were used as microreactors. Then methyl methacrylate (MMA) was polymerized in the spaces of the polyHIPE by reverse atom transfer radical polymerization (RATRP). The resulting materials and PMMA in the polyHIPEs were characterized by scanning electron microscopy, gel permeation chromat...
http://www.stageastar.comt//ss/zhangfaai/publicationsshow_8125.html
 
Polymerization of 1,3-pentadiene by a Nd-carboxylate catalyst – the effect of polymerization temperature
From the early 1960s onwards, the use of lanthanide based catalysts for the polymerization of conjugated dienes came to be the focus of fundamental studies, due to their high activity, high cis-1,4 selectivity and high stabil...
http://www.stageastar.com/research/dis_info16481
 
Actin Polymerization and De-polymerization Coupled to Random Hydrolisis: Brownian Dynamics
Actin polymerization is coupled with adenosine triphosphate(ATP) hydrolysis into adenosine diphosphate (ADP) and inorganic phosphate (Pi) release, and then actin protomers attain three different states corresponding to a bound ATP, ADP/Pi, and&n...
http://www.stageastar.com/research/dis_info12020
 
 
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