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1)  macroporous carbon
大孔碳
1.
Two different threedimensionally ordered macroporous carbon materials are prepared using SiO_2 opal as a template through "volume templating" and "surface templating" approaches,respectively.
通过自组装的方法制备了面心立方结构的S iO2欧泊,并利用其为模板,分别采用“体积模板”与“表面模板”两条途径,合成了两类不同结构的三维有序大孔碳材料,分析了填充次数对产物形貌结构的影响。
2)  Meso-macroporous carbon
介孔/大孔碳
3)  mesoporous carbon
中孔碳
1.
The presence of Ni was crucial to the formation of graphitized mesoporous carbon.
结果发现,通过Ni的催化作用,可在较低温度下得到高度石墨化的中孔碳材料。
2.
Mesoporous carbons(MCs)were prepared by an imprinting method,using mesophase pitch and nanometer colloidal silica solution as carbon precursors and pore generators,respectively.
用中间相沥青作碳源,硅胶水溶液作造孔剂,采用胶体印刻法制得一系列中孔碳。
4)  Mesoporous carbon
介孔碳
1.
Mesoporous carbon sieves were prepared from SBA-15 materials at different temperatures.
3 nm(CMK-3-150)之间的介孔碳,以其作为吸附剂,研究了它们在水溶液中对VB12的吸附作用。
2.
The mesoporous carbon supported nanocrystalline tin oxide composite(denoted as CMK-3-SnO2) is prepared by impregnating SnCl4 in ethanol in mesoporous carbon support,which is obtained from mesoporous SiO2 SBA-15 template using sucrose as the carbon source.
利用介孔氧化硅分子筛SBA-15作为硬模板、蔗糖作为碳源制备介孔碳CMK-3,并用浸渍法负载纳米晶二氧化锡得到复合超电容材料CMK-3-SnO2。
3.
The recent progress in studies of non-siliceous mesoporous materials including mesoporous aluminophosphates (AlPOs), mesoporous carbon and mesoporous metal oxides are reviewed.
文章介绍了近几年来国际上颇为关注的非硅系介孔材料的主要研究动向及其应用方面的最新成果 ,内容包括介孔铝磷酸盐 (AlPOs)、介孔碳、介孔金属氧化物
5)  Micrographite-based nanoporous carbon
纳米孔碳
6)  porous carbon
多孔碳
1.
The characterizations of the porous carbon were determined with mercury porosimetry, scanning electron microscope and BET surface analyzer.
采用液相聚合相分离技术制备了多孔碳,并用压汞仪、BET比表面仪及扫描电镜对多孔碳性能进行表征。
2.
The Sn/PC composite material was prepared by adopting porous carbon material with porous structure and high specific surface area as matrix in order to improve the cycling property of tin anode with high reversible specific capacity for Li ion battery.
为了改善锂离子蓄电池中高比容量锡负极的循环性能 ,采用多孔结构、高比表面积的多孔碳材料为载体制备得到Sn/PC复合材料。
3.
Porous carbon materials with a high surface area and a hierarchical porous network have been prepared from rice straws.
本文研究以常见的生物质材料──玉米秸秆、稻秆、松针和松子壳为原材料,经过简单的碳化和活化处理制备出一系列具有不同比表面积的多孔碳材料。
补充资料:多孔碳晶须
分子式:
CAS号:

性质:具有多微孔表面的碳晶须。比表面积20.6m2/R,比表面积比2.1~17.8,弯曲强度和模量各为155~208MPa和5.7~6.3GPa。对树脂等基体具有良好的黏合性。制法是将直径0.8μm,平面形状比46,相对密度1.96和比表面积2.58m2/g的气相成长碳晶须,边加热至1000℃边与水蒸气和氮混合气接触而得。用于作塑料、陶瓷、金属和橡胶基复合材料增强剂及层间化合物的晶核等。

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