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您现在的位置:中国聚合物网 > 全站 > Dow Microbial Control 的搜索结果 共有结果298,当前从第131条到第140条,本次搜索耗时0.0313528
 
Concerning the mechanism of stereochemistry control in the copolymerization of CO2 and epoxides
关键字:carbon dioxide
The control of polymer microstructure is one of the most important goals in the area of stereoselective polymerization catalysis.For CO2/aliphatic epoxides (such as propylene oxide) copolymerization, there exists much interesting information, su...
http://www.polymer.cn/research/dis_info6051
 
CureSense® Ultrasonic Online Cure Time Control in Injection Moulding
关键字:Injection Moulding

http://www.polymer.cn/Industry/industry2567.html
 
Effect of interface on bulk polymer: control of glass transition temperature of rubber
In current paper, we demonstrated that molecular dynamics and glass transition of rubber can be controlled by constructing attractive interface between rubber matrix and fillers. Based on a combination of experiments and molecular simulations, it was revealed that interfacial segmental mobility was reduced and glass transition temperatures (Tgs) of epoxidized natural rubber (ENR) were significantl...
http://www.polymer.cn//ss/nieyijing/publicationsshow_13431.html
 
Morphology control and photocatalytic characterization of yttrium-doped hedgehog-like CeO2
Yttrium-doped hedgehog-like ceria with a high concentration of oxygen vacancies was successfully prepared by a traditional hydrothermal process. Crystal phase composition, morphology, and size of as-fabricated products were found to be greatly dependent on the mole ratio of original materials and reaction temperature. The morphology and size of the as-prepared samples were characterized by FE-SEM,...
http://www.polymer.cn//ss/zhangming/publicationsshow_10527.html
 
A facile strategy to control polymer topology by variation of controlled radical polymerization mechanisms
通过调节ATRP催化剂与RAFT链转移试剂的比例,实现了高分子拓扑结构的控制。
http://www.polymer.cn//ss/wanwenming/publicationsshow_8979.html
 
Electrospun fibrous mats on lithographically micropatterned collectors to control cellular behaviors
1
http://www.polymer.cn//ss/liuyaowen/publicationsshow_8707.html
 
Radial Wettability Gradient of Hot Surface to Control Droplets Movement in Directions.
A radial wettable gradient was fabricated on the surface of graphite plate by a simple one-step anodic oxidation process. It was found that the direction and value of the wettable gradient could be easily controlled by adjusting current and oxidation time gradient. With the increase of surface temperature, droplets on surface not only exhibited the transition of boiling mode, but ...
http://www.polymer.cn//ss/zhengyongmei/publicationsshow_8464.html
 
Recent progress in nanoscale morphology control for high performance polymer solar cells
The nanoscale morphology of the electronic donor and acceptor materials in photoactive layers significantly influences both the exciton split and charge carrier delocalization and extraction processes in prevalent bulkheterojunction (BHJ) based polymer solar cells (PSCs). An optimized morphology, including interpenetrating networks of donor and acceptor materials, nanoscale phase separation, and a...
http://www.polymer.cn//ss/liguili/publicationsshow_8383.html
 
Morphology Control and Stabilization in Immiscible Polypropylene and Polyamide 6 Blends with Organoclay
In the current study, 70/30 (w/w) polypropylene (PP)/polyamide 6 (PA6)/organoclay ternary blends were prepared by melt mixing in three different blending sequences, i. e., organoclay premixed with PA6 and then mixed with PP (S1 blending sequence), organoclay premixed with PP and then mixed with PA6 (S2 blending sequence), and organoclay, PA6 and PP mixed simultaneously (S3 blending sequence). The ...
http://www.polymer.cn//ss/zhuyutian/publicationsshow_7952.html
 
Electrospun fibrous mats on lithographically micropatterned collectors to control cellular behaviors.
Y.W. Liu , L. Zhang , H.N. Li , S.L. Yan , J.S. Yu , J. Weng , X.H. Li*. Electrospun fibrous mats on lithographically micropatterned collectors to control cellular behaviors. Langmuir, 28: 17134–17142 (2012). http://pubs.acs.org/doi/abs/10.1021/la303490x
http://www.polymer.cn//ss/xiaohongli/publicationsshow_6285.html
 
 
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