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您现在的位置:中国聚合物网 > 全站 > Materials Horizons 的搜索结果 共有结果1211,当前从第681条到第690条,本次搜索耗时0.0311885
 
From nanoparticle-surface chemistry to high performance nanocomposite materials
关键字:From,nanoparticle,surface,chemistry,high,performance,nanocomposite,materials,
Polymer nanocomposites represent a new class of composite materials, i.e., particle-filled polymers for which at least one dimension of the dispersed particles is in the nanometer range.
http://www.polymer.cn/research/dis_info5912
 
Synthesis and EL Properties of White Light-Emitting Conjugated Polymer Materials
关键字:Synthesis,Properties,White,Light,Emitting,Conjugated,Polymer,Materials,
The π-conjugated fluorene based polymers were synthesized. Their physical and optical properties, working principles and the construction of light-emitting devices are reviewed.
http://www.polymer.cn/research/dis_info5785
 
ENVIRONMENTALLY SUSTAINABLE STRATEGIES IN FIRE RETARDANCY OF POLYMER MATERIALS
关键字:ENVIRONMENTALLY,SUSTAINABLE,STRATEGIES,FIRE,RETARDANCY,POLYMER,MATERIALS,
Combined reduction of fire risk, defined as the probability of occurrence of fire and of fire hazard, which concerns the consequences of fires, has become a compulsory requirement for many applications of polymer materials.
http://www.polymer.cn/research/dis_info5769
 
POLYCARBOSILANES AS CERAMIC PRECURSORS AND LOW-K DIELECTRIC MATERIALS
关键字:POLYCARBOSILANES,CERAMIC,PRECURSORS,AND,LOW,DIELECTRIC,MATERIALS,
Our efforts over the past 20+ years on the synthesis and study of new polycarbosilanes has led to the development of a precursor for SiC that is now being produced and used commercially to fabricate ceramic composites&nb...
http://www.polymer.cn/research/dis_info5757
 
Development of New Materials through Reactive Blending of Amorphous and Crystalline Polymers
关键字:reactive blending, grafting, in-situ compatibilization, miscibility, synergism,synergism
Reactive blending of polymers have been extensively used in recent years in order to develop new polymer blends and alloys paving the way for development of new materials.
http://www.polymer.cn/research/dis_info5250
 
On the interface of polymer crystallization and low dimensional materials
关键字:interface,polymer,crystallization,low,dimensional,materials,
In this presentation, I will discuss using polymer crystallization in nanopatterning. The first part of the talk will focus on periodically patterning soft materials on One dimensional (1D) carbon nanotubes (CNT). CNTs were periodicall...
http://www.polymer.cn/research/dis_info4621
 
Mechanical Properties of Hemp Fibre Reinforced Soy Protein Materials
关键字:Mechanical,Properties,Hemp,Fibre,Reinforced,Soy,Protein,Materials,
Alkali modified hemp fibres were characterized in terms of density, denier, Fourier transformed infrared spectrum (FTIR) and crystallinity index. Denier of the alkali treated fibres decreased from 281±5 to 232±3.5 upon treatmen...
http://www.polymer.cn/research/dis_info3925
 
NEW PHOTOACTIVE AND SELF-ASSEMBLED POLYMER/LIQUID CRYSTAL MATERIALS
关键字:NEW,PHOTOACTIVE,AND,SELF,ASSEMBLED,POLYMER,LIQUID,CRYSTAL,MATERIALS,
The reversible trans-cis photoisomerization of azobenzene and azopyridine romophores was used to design and exploit novel photoactive materials ased on polymers and liquid crystals.
http://www.polymer.cn/research/dis_info3439
 
SYNTHESIS AND PROPERTIES OF MICROENCAPSULATED PHASE CHANGE MATERIALS
关键字:SYNTHESIS,AND,PROPERTIES,MICROENCAPSULATED,PHASE,CHANGE,MATERIALS,
Microencapsulated phase change materials (MicroPCMs) have attracted more and more attention since 1990’s [1,2]. MicroPCMs have been widely studied as an active or pumped coolants, solar and nuclear heat storage system and packed bed&n...
http://www.polymer.cn/research/dis_info3428
 
CALCULATION OF SOUND ABSORPTION COEFFICIENT FOR POLYMER MATERIALS
关键字:CALCULATION,SOUND,ABSORPTION,COEFFICIENT,FOR,POLYMER,MATERIALS,
The purpose of this work is to establish a mathematical model for calculating the acoustic absorption coefficient of polymer. The analysis begins with the behavior of sound propagation in the polymer material.
http://www.polymer.cn/research/dis_info3181
 
 
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