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1.
采用不同方法分别制备了双介孔分子筛、介微孔分子筛及介孔沸石材料,利用氩吸附法并结合XRD技术表征了多级孔分子筛的孔结构。探讨了适用于多级孔分子筛的孔径分布计算方法,揭示了不同类型吸附等温线与孔径分布、孔型及孔容等之间的关系。研究表明,对于多级孔分子筛、微孔和介孔的孔径分布分别用SF法和BJH法计算较适宜,全孔分析可用NLDFT法计算。通过对TS-1介孔沸石的孔结构分析发现, TPAOH 在改性制备介孔TS-1的过程中起到了生成介孔及促进二次晶化的双重作用。  相似文献   

2.
可用于色谱固定相的介孔氧化硅球材料的合成   总被引:6,自引:0,他引:6  
雷杰  余承忠  范杰  闫妍  屠波  赵东元 《化学学报》2005,63(8):739-744
采用非离子型嵌段高分子表面活性剂EO20PO30EO20 (P65)为结构导向剂, 正硅酸乙酯为硅源, 在酸性介质中, 静置法制备了微米级介孔氧化硅球. 通过改变合成温度、反应时间或者无机盐KCl的加入量, 可以调节介孔氧化硅球的直径(9.0~17.6 μm); 加入1,3,5-三甲苯(TMB)或者调节水热温度, 可以调节介孔氧化硅球的孔径(2.3~4.8 nm). 采用X射线衍射(XRD)、N2吸附-脱附、扫描电镜(SEM)、激光散射粒度分布和对溶菌酶的吸附等方法, 对介孔氧化硅球的结构、孔性质、形貌、吸附性质等进行了表征. 实验发现, 孔径较小的介孔氧化硅球(≤4.3 nm)对溶菌酶的吸附不明显(≤42 mg/g), 而孔径(4.8 nm)大于溶菌酶直径的材料对溶菌酶有较大的吸附量(192 mg/g), 说明孔径均匀可调的介孔氧化硅球材料可以很好地用作体积排阻色谱柱的固定相.  相似文献   

3.
Mesoporous silica with cubic symmetry has attracted interest from researchers for some time. Here, we present the room temperature synthesis of mesoporous silica nanoparticles possessing cubic Pm3?n symmetry with very high molar ratios (>50%) of 3-aminopropyl triethoxysilane. The synthesis is robust allowing, for example, co-condensation of organic dyes without loss of structure. By means of pore expander molecules, the pore size can be enlarged from 2.7 to 5 nm, while particle size decreases. Adding pore expander and co-condensing fluorescent dyes in the same synthesis reduces average particle size further down to 100 nm. After PEGylation, such fluorescent aminated mesoporous silica nanoparticles are spontaneously taken up by cells as demonstrated by fluorescence microscopy.  相似文献   

4.
嵌段共聚物与阳离子表面活性剂混合模板合成介孔SiO_2   总被引:5,自引:0,他引:5  
马玉荣  齐利民  马季铭  程虎民 《化学学报》2003,61(10):1675-1678
利用三嵌段共聚物EO_(20)PO_(70)EO_(20)与阳离子表面活性剂CTAB作为混合 模板合成了内部孔结构与外观形貌同时受到调控的介孔氧化硅。与使用单一共聚物 模板制备的介孔氧化硅相比,在混合模板作用下得到的介孔氧化硅的孔结构有序度 降低,而孔径则随混合模板中共聚物的质量分数的降低而减小。在EO_(20)PO_(70) EO_(20)与CTAB质量比为1:1时可得到形貌完好、表面光滑的介孔氧化硅微米球,其 平均孔径为3.2nm,比表面积为972m~2/g。  相似文献   

5.
金纳米颗粒在烯烃加氢、水气转化、过氧化氢直接合成和醇类选择性氧化等反应中表现出独特的催化性能,引起了人们广泛关注.通常,金纳米颗粒的催化活性受到尺寸、原子堆积形式、暴露晶面及其与载体的相互作用所影响.而金纳米颗粒的烧结往往导致其催化效率迅速下降.为了解决金颗粒烧结问题,提高其使用寿命,必须控制高温处理时颗粒和原子的迁移.尽管已有很多工作见诸报道,然而到目前为止,仍未完全解决金颗粒烧结问题.本文通过调整有机模板剂和反应温度成功地合成了不同窗口尺寸的立方介孔氧化硅材料(FDU-12),并将预先合成的3 nm金颗粒负载于其上,考察了窗口尺寸对金颗粒烧结的影响.首先,采用小角X射线散射、氮气吸附-脱附、透射电镜和扫描电镜等手段证实成功合成了具有亚5 nm窗口的FDU-12材料,同时以3 nm金颗粒为探针,进一步区分了具有<3 nm和3?5 nm窗口的FDU-12样品.在抗烧结实验中发现,具有3?5 nm窗口尺寸的FDU-12能够在一个较宽的金负载量(1.0?8.3 wt%)下稳定金纳米颗粒.在550oC空气中焙烧5 h后,金颗粒的平均尺寸维持在4.5?5.0 nm.更小的窗口尺寸则会导致3 nm金颗粒无法进入FDU-12孔道,从而带来低的负载能力和差的抗烧结性能.另一方面,具有>7 nm窗口尺寸的FDU-12则只在高的金颗粒负载量(>9 wt%)下才表现出较好的抗烧结性能,低负载量时烧结严重(2.1 wt%,14.2?5.5 nm).我们推测,合适的窗口尺寸(3?5 nm)恰好能允许3 nm金颗粒进入FDU-12的孔道,在高温处理过程中,当金颗粒长大到5 nm左右时,窗口极大地限制了金颗粒的移动,导致其不能在孔与孔之间自由迁移.此外,该FDU-12材料的孔径为18 nm,这使得封装在各个孔内部的金颗粒与其他金颗粒距离较远,不利于其通过原子迁移而发生烧结.因此,拥有3?5 nm窗口尺寸的FDU-12在一个宽的金负载量下表现出良好的抗烧结能力.而对于具有>7 nm窗口尺寸的FDU-12,在高的金负载量下,它可通过自聚焦效应抑制原子迁移,从而具有优良的抗烧结性能.但在低负载量时,介孔氧化硅的绝大部分孔内并不包含多个金颗粒,自聚焦效应无法发挥作用,在高温焙烧时金颗粒可以通过大的窗口尺寸相互融合导致烧结.我们将具有不同金尺寸的AuNP/FDU-12催化剂用于环己醇选择性氧化反应中.结果表明,4.5 nm的金催化剂表现出最好的活性(1544 mmol gAu-1 h-1)和大于99%的选择性(230oC),大大超过了先前报道的基于Ag和Mn为活性中心的催化剂.另外,与负载在商用γ-Al2O3上相比,AuNP/FDU-12体系表现出了很好的选择性,直接脱水产物小于1%.同时可以保持100 h内金颗粒不发生烧结,活性不明显下降.  相似文献   

6.
超声波合成介孔分子筛   总被引:17,自引:0,他引:17  
介孔分子筛MCM鄄41自问世以来一直是材料研究的热门领域之一[1,2],目前报道的主要合成方法有水热合成法[3,4]、微波法[5,6]等。其中水热法反应时间长达3~5d,耗能大,不利于实用化生产。超声波化学又称声化学,是一门新兴的交叉学科。超声波的波长远大于分子尺寸,因而不能对分子直  相似文献   

7.
以十六烷基三甲基溴化铵为模板剂,通过水解钛酸正丁酯合成了介孔二氧化钛分子筛,探讨了合成条件的影响。采用X射线粉末衍射(XRD)、红外光谱(FT-IR)、透射电子显微镜(TEM)和N2吸附-脱附等技术对介孔二氧化钛的晶相、结构、形貌、比表面积和孔径分布进行了表征。实验结果表明:得到的介孔二氧化钛分子筛的孔径为4-4.3nm,用抽提的方法去除模板剂得到的介孔二氧化钛的比表面积比焙烧的要高。以甲基橙为模型污染物,检验了所合成介孔二氧化钛的光催化性质。  相似文献   

8.
The pore variations of ordered cage-type mesoporous silica FDU-12s have been analyzed in detail by PXRD, SAXS, nitrogen sorption, and electron crystallography. FDU-12s with a cubic symmetry (space group, Fmm) were templated by amphiphilic triblock copolymer F127 with the addition of 1,3,5-trimethylbenzene and KCl under an acidic condition. Three typical samples with different unit cell sizes, pore cage diameters, and entrance sizes were obtained from different synthesis and hydrothermal treatment temperatures, as indicated by the differences in the PXRD and SAXS patterns. The pore structure changes in the three materials were observed by nitrogen adsorption/desorption and 3-D reconstruction of HRTEM images taken from different crystal orientations. The approximate pore structures of FDU-12s can be regarded as a face-centered cubic (fcc) close-packing of spherical cages, each connected to 12 nearest neighboring cages. However, the ideal spherical model is only valid for the FDU-12s prepared at a low temperature (L-FDU-12-100). The cage shape of the FDU-12s synthesized at a high temperature deviates from perfect spheres and is accompanied by an entrance enlargement. The temperature-dependent behavior of the PEO block is discussed with regard to its influence on the micelles and hence the cage configuration. The better understanding of the formation mechanism via the combined characterization techniques and modeling may lead to a more rational approach for tuning the pore cages and entrances of the mesoporous FDU-12 materials.  相似文献   

9.
A synthesis strategy for the systematic control of the pore wall thickness has been developed for the mesoporous silicas with 2-D hexagonal order using ionic and nonionic surfactant mixtures. The mesoporous silicas have been used as templates for the synthesis of 2-D hexagonally ordered mesoporous carbons with controlled pore diameters. The synthesis strategy and results are useful not only for tailoring the properties of the mesoporous materials but also for extending our insights into the synthesis mechanism.  相似文献   

10.
A facile and simplified method was developed for the synthesis of 3D cubic mesoporous SBA-16 with both a spherical morphology and controllable pore size. The addition of CTAB during the synthesis allowed not only good control over the macroscopic morphology but also a significant reduction in the synthesis time. Notably, the pore size can simultaneously be adjusted by simply controlling the heating temperature. The pharmaceutical performance of the resulting SBA-16 for the delivery of the water-insoluble drug indomethacin (IMC), a non-steroidal anti-inflammatory agent used as a model drug, was systematically studied using nitrogen adsorption, powder X-ray diffraction, differential scanning calorimetry, infrared spectrometry and in vitro dissolution investigations. It was found that IMC could be effectively loaded into mesoporous SBA-16 via the solvent deposition method. An altered physical state and a marked improvement in the dissolution rate were observed for IMC after being loaded into SBA-16 microspheres. In particular, SBA-16 microspheres with the largest pore size (9.0 nm) and highly open and accessible pore networks exhibited the fastest drug release profile. We envisage that the improved drug delivery profiles obtained using SBA-16 as described in our work will offer an interesting option for the formulation of poorly water-soluble drugs.  相似文献   

11.
Porous ceramics are of great interest for filtration, catalysis, and reactive separation processes. Performance in these applications is highly dependent on features such as pore size distribution and connectivity and wall composition. Here, we describe a method allowing the rational design and synthesis of mesoporous silica composites with controlled heterogeneous pore architectures and demonstrate its validity by producing structures with predetermined placement of regions having different pore size and pore organization.  相似文献   

12.
The heterogenization of homogeneous metal complex catalysts has attracted great attention. The encapsulation of metal complexes into nanochannels of mesoporous materials is achieved by coating metal oxides at/near the pore entrance by diffusion‐limited atomic layer deposition (ALD) to produce a hollow plug. The pore size of the hollow plug is precisely controlled on the sub‐nanometer scale by the number of ALD cycles to fit various metal complexes with different molecular sizes. Typically, Co or Ti complexes are successfully encapsulated into the nanochannels of SBA‐15, SBA‐16, and MCM‐41. The encapsulated Co and Ti catalysts show excellent catalytic activity and reusability in the hydrolytic kinetic resolution of epoxides and asymmetric cyanosilylation of carbonyl compounds, respectively. This ALD‐assisted encapsulation method can be extended to the encapsulation of other homogeneous catalysts into different mesoporous materials for various heterogeneous reactions.  相似文献   

13.
The synthesis of new ordered mesoporous adsorbents, specifically of the MCM-41 type, involves a step of thermal elimination of the template (a surfactant) where CRTA is shown to provide a 'soft chemistry' route. Once the mesoporous (i.e. 2 to 50 nm pore width) material is obtained, the pore size is determined by thermoporometry, a convenient application for low temperature DSC. Finally, the hydrophobic - hydrophilic properties of the pore walls are explored by immersion microcalorimetry in water. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

14.
《天然气化学杂志》2012,(3):275-281
Precise control of the pore sizes for porous carbon materials is of importance to study the confinement effect of metal particles because the pore size in nanosize range will decide the physical and chemical properties of the metal nanoparticles.In this paper,we report a new approach for the synthesis of iron doped ordered mesoporous carbon materials with adjustable pore size using Fe-SBA-15 as hard template and boric acid as the pore expanding reagent.The pore size can be precisely adjusted by a step of 0.4 nm in the range of 3-6 nm.The carbonization temperature can be lowered to 773 K due to the catalytic role of the doped iron.The present approach is suitable for facile synthesis of metal imbedded porous carbon materials with tunable pore sizes.  相似文献   

15.
Interfacing magnetic particles with ordered mesoporous materials is an effective direction for the development of functional porous composite materials with rationally designed core–shell structures. Owing to the combined properties of magnetic nanoparticles and mesoporous silica (high surface area, large pore volume, porosity, and biocompatibility), core–shell magnetic mesoporous silica materials have generated tremendous interest in various disciplines, including chemistry, materials, bioengineering, and biomedicine. Interfacial assembly strategies enable the rational construction of magnetic mesoporous silica materials with well‐defined core–shell structure, morphology, pore parameters, and surface wettability, which can decisively influence their physical and chemical properties and thus improve their application performance. This Minireview summarizes recent progress in the synthesis of core–shell magnetic mesoporous silica and the adjustment of key parameters, including pore size, morphology, and pore orientation.  相似文献   

16.
Synthesis of functionalized mesoporous carbon by an easy-accessed method is of great importance towards its practical applications.Herein,an evaporation induced self-assembly/carbonization(EISAC) method was developed and applied to the synthesis of sulfonic acid group functionalized mesoporous carbon(SMC).The final mesoporous carbon obtained by EISAC method possesses wormlike mesoporous structure,uniform pore size(3.6 nm),large surface area of 735 m2/g,graphitic pore walls and rich sulfonic acid group.Moreover,the resultant mesoporous carbon achieves a superior electrochemical capacitive performances(216 F/g)to phenolic resin derived mesoporous carbon(OMC,152 F/g)and commercial activated carbon(AC,119 F/g).  相似文献   

17.
The facile synthesis of highly ordered mesoporous aluminas with high thermal stability and tunable pore sizes is systematically investigated. The general synthesis strategy is based on a sol-gel process associated with nonionic block copolymer as templates in ethanol solvent. Small-angle XRD, TEM, and nitrogen adsorption and desorption results show that these mesoporous aluminas possess a highly ordered 2D hexagonal mesostructure, which is resistant to high temperature up to 1000 degrees C. Ordered mesoporous structures with tunable pore sizes are obtained with various precursors, different acids as pH adjustors, and different block copolymers as templates. These mesoporous aluminas have large surface areas (ca. 400 m2/g), pore volumes (ca. 0.70 cm3/g), and narrow pore-size distributions. The influence of the complexation ability of anions and hydro-carboxylic acid, acid volatility, and other important synthesis conditions are discussed in detail. Utilizing this simple strategy, we also obtained partly ordered mesoporous alumina with hydrous aluminum nitrate as the precursor. FTIR pyridine adsorption measurements indicate that a large amount of Lewis acid sites exist in these mesoporous aluminas. These materials are expected to be good candidates in catalysis due to the uniform pore structures, large surface areas, tunable pore sizes, and large amounts of surface Lewis acid sites. Loaded with ruthenium, the representative mesoporous alumina exhibits reactant size selectivity in hydrogenation of acetone, D-glucose, and D-(+)-cellobiose as a test reaction, indicating the potential applications in shape-selective catalysis.  相似文献   

18.
Magnetic mesoporous silica nanoparticles (M-MSNs) are emerging as one of the most appealing candidates for theranostic carriers. Herein, a simple synthesis method of M-MSNs with a single Fe(3)O(4) nanocrystal core and a mesoporous shell with radially aligned pores was elaborated using tetraethyl orthosilicate (TEOS) as silica source, cationic surfactant CTAB as template, and 1,3,5-triisopropylbenzene (TMB)/decane as pore swelling agents. Due to the special localization of TMB during the synthesis process, the pore size was increased with added TMB amount within a limited range, while further employment of TMB lead to severe particle coalescence and not well-developed pore structure. On the other hand, when a proper amount of decane was jointly incorporated with limited amounts of TMB, effective pore expansion of M-MSNs similar to that of analogous mesoporous silica nanoparticles was realized. The resultant M-MSN materials possessed smaller particle size (about 40-70 nm in diameter), tunable pore sizes (3.8-6.1 nm), high surface areas (700-1100 m(2)/g), and large pore volumes (0.44-1.54 cm(3)/g). We also demonstrate their high potential in conventional DNA loading. Maximum loading capacity of salmon sperm DNA (375 mg/g) was obtained by the use of the M-MSN sample with the largest pore size of 6.1 nm.  相似文献   

19.
A new emulsion method for preparing ordered mesoporous materials with polymer PEG as the swelling agent has been explored in the present work. The synthesis conditions including the chain length and the PEG concentration, the duration of aging, the kind of emulsion, and the time when the swelling agents were added to the reaction system are discussed. The results show that with the advantage of the emulsion method, the nucleation and growth were controlled very well. The nicely spherical particles produced by the emulsion method were more uniform and less prone to agglomerate than those produced through the hydrothermal method. When different MW PEG were added as swelling agents, the pore size changed little: it was centered around 4 nm and had a narrow distribution. When different concentrations of PEG were applied, BET surface area, pore size, and pore volume changed. To summarize, in the formation of mesoporous materials, polymers such as PEG can not only control the pore size from 3 to 70 nm through variation of concentration, but also regulate the structures and improve the morphology of particles by the chain length of polymers. By adjusting the time of addition of the swelling agents, a poroshell mesoporous material was prepared. This method is particularly important for those applications that strictly require particle uniformity, such as chromatography separation.  相似文献   

20.
Double-wall carbon nanotubes (DWNTs) have been selectively synthesized over Fe/Co loaded mesoporous silica by catalytic chemical vapor deposition of alcohol. Several silica materials with desired pore diameter and morphology have been investigated for the DWNT growth. The diameter distribution and selectivity of the DWNT are found to depend on the reaction temperature, pore size, and thermal stability of the support material. A high-yield synthesis of DWNTs has been achieved at 900 degrees C over high-temperature stable mesoporous silica. The outer diameter of DWNTs is found to be in the range of 1.5-5.4 nm with a "d" spacing of 0.38 +/- 0.02 nm between inner and outer layers, which is much larger than those of multiwall carbon nanotubes.  相似文献   

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