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1)  ordered mesoporous titania
有序介孔TiO2
1.
Synthesis of ordered mesoporous titania from industrial TiOSO_4;
以工业TiOSO4液为原料,在复合模板剂十二胺和十六烷基三甲基溴化铵(CTAB)的超分子自组装诱导作用下,合成出有序介孔TiO2
2)  ordered mesoporous
有序介孔
1.
Advances in the organic-templating synthesis of ordered mesoporous silica thin films are reviewed.
本文综述了近年来利用有机模板法合成有序介孔二氧化硅薄膜的研究进展,重点阐述了两相界面外延生长和蒸发诱导自组装两种制备方法及其合成机理。
2.
As compared with silica-based ordered mesoporous materials, transition metal ordered mesoporous materials are more valuable for use in the fields of catalysis, optics, electricity, magnetism and so on.
过渡金属体系有序介孔材料在催化、光、电、磁等领域有着硅基介孔材料无法比拟的优越特性。
3.
As advanced nanostructural materials,ordered mesoporous materials have become one of the hotmter-disciplinar areas.
有序介孔材料作为一种新型的纳米结构材料,近年来已成为跨学科的国际研究热点之一。
3)  ordered mesoporous carbon
有序介孔炭
1.
Series of ordered mesoporous carbons,OMCs,and mircoporous carbon,CFY,were synthesized using ordered mesoporous silica SBA-15 and NaY zeolite as hard template,respectively.
分别采用有序介孔氧化硅SBA-15和NaY分子筛为硬模板合成了系列有序介孔炭OMC和微孔炭CFY。
2.
As a class of novel porous materials, ordered mesoporous carbon (OMC) possesses more remarkable properties, such as a narrow pore distribution, high specific surface area, chemical inertness, and good hydrothermal and mechanical stability.
有序介孔炭作为一类新型的多孔材料,不但具有高的比表面积、孔径均一,还具有很好的水热稳定性,良好的导电性、疏水性和较高的机械强度等特点,在吸附分离、催化剂载体及能量存储/转换等方面具有广阔的应用前景,引起人们的广泛关注。
3.
As a class of novel porous materials,ordered mesoporous carbon (OMC)possesses more remarkable properties,such as a narrow pore distribution,high specific surface area,chemical inertness,and good hydrothermal and mechanical stability.
有序介孔炭作为一类新型的多孔材料,不但具有高的比表面积、孔径均一,还具有很好的水热稳定性,良好的导电性、疏水性和较高的机械强度等特点,在吸附分离、催化剂载体及能量存储/转换等方面具有广阔的应用前景,引起人们的广泛关注。
4)  Ordered mesoporous carbons
有序介孔炭
1.
Ordered mesoporous carbons (OMCs) made from templates, such as MCM-41 or other molecular sieves possess a regular channel structure, narrow pore size distribution and high specific surface area, which have potential applications in catalysis, separation, adsorption.
在简要介绍硅基介孔分子筛的分类和合成机理的基础上,对国内外多孔炭模板合成的研究现状进行了述评,重点阐述了有序介孔炭模板合成的特点、合成工艺、模板类型、碳前驱体的种类及其在双电层电容器、催化、储能等方面的初步应用结果,并展望了有序介孔炭模板合成的发展趋势,指出模板成本的降低、工艺条件的简化和可控化将成为未来一段时期人们研究的重点。
5)  ordered mesoporous carbon
有序介孔碳
1.
Ordered mesoporous carbons possess high specific surface area, uniform pore diameter, large pore volume, high mechanical stability, and especially electric conductivity.
最近,利用介孔二氧化硅为硬模板的方法来制备有序介孔碳材料吸引了人们的广泛关注。
6)  mesoporous TiO2
介孔TiO2
1.
The micro-morphology and crystalline structure of the mesoporous TiO2 were characterized by TEM,SEM and XRD.
以吐温-80(Tween-80)和司班-80(Span-80)为复合模板剂,钛酸四正丁酯(TBOB)为钛源,应用溶胶-凝胶(sol-gel)法及超临界干燥法合成介孔TiO2材料。
2.
The mesoporous TiO2 were synthesized by using P123 as a template via self-assembly route.
采用模板导向自组装法,以P123为模板剂合成了介孔TiO2材料,考察了使用混合钛源和单一钛源、以及混合钛源中原料配比和单一钛源中体系酸度的不同对介孔产物结构的影响。
3.
Different silicon doped mesoporous TiO2 materials were synthesized by sol-gel method.
采用溶胶-凝胶法合成了硅掺杂的介孔TiO2材料,用X射线衍射(XRD)、透射电子显微镜(TEM)、和N2吸附脱附等分析手段对产物结构和光学性能进行了表征。
补充资料:介孔

根据国际纯粹与应用化学协会(iupac)的定义,孔径小于2纳米的称为微孔;孔径大于50纳米的称为大孔;孔径在2到50纳米之间的称为介孔。

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