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41.
The reaction of [(domppp) Pd (OAc)2] [domppp = 1,3‐bis (di‐o‐methoxyphenylphosphino)propane] and imidazolium‐functionalized carboxylic acids containing various anions (Br?, PF6?, SbF6? and BF4?) resulted in the formation of nano‐sized Pd (II) aggregates under template‐free conditions. The rate of formation of aggregates can be modulated by changing the anion, affecting the rate of polymerization of CO and olefins without fouling. Herein, we describe the analysis of Pd (II) catalysts by dynamic light scattering, atomic force microscopy, X‐ray photoelectron spectroscopy and X‐ray crystallography, and co‐ and terpolymerization results including the catalytic activity, and bulk density and molecular weight of polymers.  相似文献   
42.
This review supplied direct insight of host-guest molecule system by using COR as the guest molecule.  相似文献   
43.
以环己胺为模板剂的ZSM-35分子筛的合成及其催化性能   总被引:5,自引:0,他引:5  
 采用环己胺为有机模板剂成功地合成出ZSM-35分子筛.反应釜的转速对ZSM-35的晶化过程有明显的影响.NH3-TPD结果显示ZSM-35的酸性分布与ZSM-5分子筛类似,但ZSM-35具有强于ZSM-5的酸性中心.酸碱浸泡试验及热分析结果表明ZSM-35具有良好的耐酸碱性和热稳定性.在连续流动的固定床反应装置上,将担载少量镍的ZSM-35分子筛催化剂用于催化裂化汽油的加氢异构化反应,结果表明,Ni/ZSM-35催化剂可降低汽油中的烯烃含量,增加异构烷烃和芳烃的含量,从而提高汽油的质量.  相似文献   
44.
代辉  安永林 《广州化学》2003,28(1):41-47
无机材料的微观结构决定了材料的许多特性,如传输行为、催化活性、分离效率、粘附、储存和释放动力学。具有管状结构纳米尺度的材料由于其特殊的结构及由此带来的特殊性能正成为一个令人兴奋的化学研究领域。文章综述了近年来无机纳米管材料的合成途径和进展。  相似文献   
45.
Silica gels with hierarchical macropores and mesopores have been prepared by inducing phase separation in the alkoxide-based sol-gel system with an addition of alkyltrimethylammonium salt. Narrowly distributed mesopores were observed in the heat-treated gel samples possibly as a result of supramolecular templating of silica oligomers in the reacting solution. The ionic attractive interaction and hydrophobicity of the attached alkyl group cooperatively determined the phase separation tendency. No indication of long-range order of the mesopores was obtained.  相似文献   
46.
Microporous carbons afford high surface areas, large pore volumes, and good conductivity, and are fascinating over a wide range of applications. Traditionally synthesized microporous carbon materials usually suffer from some limitations, such as poor accessibility and slow mass transport of molecules due to the micrometer-scale diffusion pathways and space confinement imposed by small pore sizes. Two-dimensional microporous carbon materials, denoted as microporous carbon nanosheets (MCNs), possess nanoscale thickness, which allows fast mass and heat transport along the z axis; thus overcoming the drawbacks of their bulk counterparts. Herein, recent breakthroughs in the synthetic strategies for MCNs are summarized. Three typical methods are discussed in detail with several examples: pyrolysis of organic precursors with 2D units, a templating method that uses wet chemistry, and the molten salt method. Among them, molecular-based assembly of MCNs in the liquid phase shows more controllable morphology, thickness, and pore size distribution. Finally, challenges in this research area are discussed to inspire future explorations.  相似文献   
47.
In the science and engineering communities, the nanoscience revolution is intensifying. As many types of nanomaterials are becoming more reliably synthesized, they are being used for novel applications in all branches of nanoscience and nanotechnology. Since it is sometimes desirable for single nanomaterials to perform multiple functions simultaneously, multicomponent nanomaterials, such as core-shell, alloyed, and striped nanoparticles, are being more extensively researched. Nanoscientists hope to design multicomponent nanostructures and exploit their inherent multiple functionalities for use in many novel applications. This review highlights recent advances in the synthesis of multisegmented one-dimensional nanorods and nanowires with metal, semiconductor, polymer, molecular, and even gapped components. It also discusses the applications of these multicomponent nanomaterials in magnetism, self-assembly, electronics, biology, catalysis, and optics. Particular emphasis is placed on the new materials and devices achievable using these multicomponent, rather than single-component, nanowire structures.  相似文献   
48.
一类新型仿生分析试剂的制备--分子模板技术的研究进展   总被引:2,自引:0,他引:2  
评述了一类新型仿生分析试剂--分子模板聚合物的系列制备方法.该方法称为分子模板技术,包括封管聚合、原位聚合、悬浮聚合、两步溶胀和聚合联用以及膜技术,指出了该技术的研究目标和应用前景.  相似文献   
49.
以钴离子为模板,四乙烯五胺为功能基配体,反相悬浮聚合制备出球形钴离子模板缩聚物。该模板缩聚物对钴离子的吸附性能显著优于相应的非模板缩聚物。说明应用离子模板技术可提高普通吸附树脂的吸附性能。可望在环境、医学等领域获得实际应用。  相似文献   
50.
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