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1.
以3-氨丙基三乙氧基硅烷为偶联剂,采用后合成法对介孔分子筛(SBA-15)的表面进行改性,制得氨基功能化的介孔NH<,2>-SBA-15材料(简称NH<,2>-SBA-15),其结构和性能经FT-IR,元素分析,XRD,SEM及低温N<,2>吸附-脱附表征.结果表明,氨基成功地嫁接到SBA-15表面,含量高达3.47 ...  相似文献   

2.
介孔材料氨基表面修饰及其对CO2的吸附性能   总被引:15,自引:0,他引:15  
采用接枝方法在介孔材料MCM-41和SBA-15的孔道内表面进行氨基化修饰, XRD、29Si-NMR、FT-IR、TGA、BET等测试结果表明, 氨丙基三乙氧基硅烷(APTS)和氨乙基氨丙基甲基二甲氧基硅烷(AEAPMDS)都分别接枝在介孔材料的孔道内, 表面氨基修饰量约为1.5-2.9 mmol·g-1. 表面修饰后介孔材料的孔道仍高度有序, 但比表面积减小. 表面修饰前后介孔材料对CO2的吸附性能发生显著变化, 由于物理吸附转化为以氨基为活性中心的化学吸附, 吸附量从修饰前的0.67 mmol·g-1提高到2.20 mmol·g-1.  相似文献   

3.
环糊精修饰中孔分子筛SBA15作为手性色谱固定相及其应用   总被引:4,自引:1,他引:3  
采用聚环氧乙烯醚-聚环氧丙烯醚-聚环氧乙烯醚(P123)为模板, 正硅酸乙酯为硅源, 在酸性介质中采用静置法合成出球形Φ 4.3 μm介孔氧化硅SBA15,通过γ-(2,3-环氧丙氧)丙基三甲氧基硅烷(KH560)在无水条件下将β-环糊精键合到SBA15表面和孔道内部.利用X射线衍射(XRD)、比表面积测定仪、红外光谱(FT-IR)、扫描电镜(SEM)和差显量热仪进行了表征.该材料湿法装填成色谱柱后成功分离了手性药物布洛芬和Dns-Phe对映体,其分离度分为别为2.03和1.04,说明其在色谱填料和手性分离上都具有广泛的应用前景.  相似文献   

4.
以3-氨丙基三乙氧基硅烷(APTES)、水杨醛和铜离子为改性剂,通过后嫁接法制得铜席夫碱配合物改性SBA-15(Cu-SBA-15),并以毒死蜱为模型药物,制备了毒死蜱/铜席夫碱配合物改性SBA-15缓释体系。利用TEM、SEM、XRD、N2吸附-脱附、TG、FTIR和XPS对SBA-15、氨基改性SBA-15(NH_2-SBA-15)、水杨醛希夫碱改性SBA-15(SA-SBA-15)的形貌、结构和Cu-SBA-15的配位情况进行了表征,考察了SBA-15在改性前后对毒死蜱的吸附量和缓释性能,并着重探究了毒死蜱/铜席夫碱配合物改性SBA-15载药体系在不同pH值下的释药行为。结果表明,APTES和水杨醛能够通过后嫁接法修饰于SBA-15,修饰后仍保持十分有序的孔道结构。SBA-15通过改性后,其对毒死蜱的吸附量由100 mg·g~(-1)增加至195 mg·g~(-1),且其对药物的缓释性能也得到改善。毒死蜱/铜席夫碱配合物改性SBA-15缓释体系显示出明显的pH值响应性,pH=3时的释药速率大于pH=11时,而在中性条件下的缓释效果相对最好。载药体系的释药行为可用Riger-Peppas动力学模型来描述,其药物释放由Fick扩散控制。  相似文献   

5.
以介孔分子筛SBA-15为载体, 先采用γ-氨丙基三乙氧基硅烷(APTES)进行氨基硅烷化修饰, 然后经甲基三乙氧基硅烷(MTES)疏水修饰后固载双水杨醛缩乙二胺合钴配合物(Cosalen). 采用傅里叶变换红外光谱、 紫外-可见漫反射光谱、 X射线光电子能谱、 元素分析、 等离子体发射光谱、 X射线衍射和氮气物理吸附等手段对制备的固载型催化剂Cosalen/SBA-15进行了物相结构和修饰程度的表征, 并考察了样品对甲苯、 苯甲醛和苯甲醇的吸附性能及在甲苯液相氧化反应中的催化性能. 结果表明, 固载型催化剂Cosalen/SBA-15的介孔结构和孔道有序性保持良好, Cosalen通过与氨基配位固载在修饰后的载体SBA-15上, 且高度分散, 氨基硅烷化和甲基修饰明显增强了其表面疏水性能, 对苯甲醛和苯甲醇的吸附量降低. 疏水性Cosalen/SBA-15协同N-羟基邻苯二甲酰亚胺(NHPI)催化甲苯液相分子氧氧化反应, 无溶剂体系在130 ℃下反应2 h, 甲苯转化率达到16.0%, 产物中苯甲醛和苯甲醇的总选择性为32.0%, 在一定程度上抑制了极性产物深度氧化为苯甲酸. 高温不利于苯甲醛和苯甲醇选择性的提高, 降低温度至110 ℃, 甲苯转化率达到12.9%时, 苯甲醛和苯甲醇的总选择性提高到43.9%.  相似文献   

6.
酸诱导介观相转变硅基介孔材料的合成机理及其改性   总被引:1,自引:1,他引:0  
采用两步法以三嵌段共聚物P104(PEO27-PPO61-PEO27)为模板剂合成介孔材料, 研究了介孔材料结构随体系pH 值的变化, 探讨了体系中介观相转变的机理. 研究表明,随着pH 的升高, 发现体系中无机物种和模板剂所组成的介观相发生了转变,由P6mm 的SBA-15(pH=1.51-2.67)2D六角孔道结构转变为3D 蠕虫状孔道的MSU-X(pH=3.93-4.56)结构. 对所得的两种不同种类的硅基材料以γ-胺丙基三乙氧基硅烷(APTES: NH2(CH2)3Si(C2H5O)3)进行表面烷基化改性结果表明, 在同样的条件下, 经过改性后MSU-X类介孔材料孔壁上接枝的烷基数目要远超过SBA-15 类介孔材料.  相似文献   

7.
采用简单的方法合成高浓度氨基修饰的高度有序氧化硅材料并深入研究氨基官能化材料的孔结构以及氨基的存在状态和可利用性。结果表明,氨基基团共价连接到SBA-15的孔表面,即使初始合成体系中的APTES(氨丙基三乙氧基硅烷)浓度高达30mol%时材料依然保持高度的有序性。合成体系中APTES浓度为20%的样品还保持良好的介孔结构,比表面积为680 m2·g-1,孔容为0.89 cm3·g-1,此介孔结构中的氨基官能团对镍离子表现出很强的亲和力,Ni2+的吸附量高达1.88 mmol·g-1,相比之下未官能化的SBA-15对Ni2+没有吸附作用。当初始合成体系中APTES的浓度进一步增大到30%时,修饰到介孔氧化硅材料的氨基含量也随之增大,但由于材料的孔隙度急剧降低,这些氨基的可利用性也降低。  相似文献   

8.
介孔材料的修饰及固定青霉素酰化酶的稳定性研究   总被引:4,自引:0,他引:4  
利用扩孔剂的作用合成出较大孔径(12 nm)的介孔材料SBA-15, 并进行表面氨基修饰, 以此为载体, 以戊二醛为交联剂, 对青霉素酰化酶进行组装固定, 并对固定化青霉素酰化酶(PGA)的稳定性进行了深入的研究. 实验结果表明, PGA与载体交联后仍保持活性. 热稳定性研究结果表明, 制备的固定化青霉素酰化酶在低于60 ℃时保持稳定; pH在6~11范围内保持稳定; 固定化酶重复使用10次之后, 仍具有高达90%的残留活力.  相似文献   

9.
本文通过改进的水热法制备了孔径较大的有序介孔SBA-15,其孔径(Dp)为10.1 nm,并采用浓盐酸、三甲基氯硅烷(TMCS)和3-氨丙基三乙氧基硅烷(APTES)对SBA-15表面进行了羟基、甲基和氨基改性处理。以嫁接不同表面官能团的SBA-15为模板,合成了一系列菱方晶系钙钛矿型介孔La_(0.8)Sr_(0.2)CoO_3氧化物,系统地研究了模板SBA-15的表面性能对La_(0.8)Sr_(0.2)CoO_3氧化物结构和性能的影响。X射线衍射(XRD)图谱表明,外表面引入―CH_3,内表面羟基化和引入―NH_2的模板有利于合成结晶度较高的、物相单一的钙钛矿结构氧化物。小角XRD图谱、高分辨率透射电子显微镜(HRTEM)图像以及N2吸附测试结果表明,所制备的催化剂为介孔结构。CO氧化的催化活性测试表明,采用表面改性的模板合成的La_(0.8)Sr_(0.2)CoO_3氧化物表现出较高的催化活性和稳定性,在140℃时可以实现CO的完全转化,连续使用100 h后催化剂的催化活性几乎没有下降。X射线光电子能谱(XPS)、H_2程序升温还原(H_2-TPR)和O_2程序升温脱附(O_2-TPD)测试结果表明,催化剂表面丰富的吸附氧物种,高价态的Co离子,钙钛矿结构中Sr在表面富集,及优良的低温氧化还原性是催化活性提高的主要原因。  相似文献   

10.
采用三种氨基硅烷试剂(APTS: 3-氨丙基三甲氧基硅烷, TPED: N-(2-氨乙基)-3-氨丙基三甲氧基硅烷, TPDT: 3-[2-(2-氨基乙基氨基)乙基氨基]丙基-三甲氧基硅烷)对介孔SBA-15分子筛进行后嫁接表面功能化(分别记为APTS-SBA-15, TPED-SBA-15和TPDT-SBA-15), 然后利用氨基与氯金酸之间的静电作用及化学还原法, 将金纳米粒子引入分子筛的介孔孔道. 采用N2物理吸附、X射线衍射(XRD)、透射电子显微镜(TEM)、X射线光电子能谱(XPS)等手段对催化剂的结构和电子性质进行了系统表征; 以巴豆醛液相加氢制巴豆醇反应比较了氨基硅烷的种类对催化性能的影响. 结果表明, 氨基硅烷的给电子能力是决定金催化剂上C=O键加氢选择性的主要因素, 氨基硅烷的给电子能力越强, 金活性位上的电子密度越高, 则巴豆醇的选择性和收率就越高.  相似文献   

11.
Hexagonally ordered SBA-15 mesoporous silica spheres with large uniform pore diameters are obtained using the triblock copolymer, Pluronic P123, as template with a cosurfactant cetyltrimethylammonium bromide (CTAB) and the cosolvent ethanol in acidic media. A series of surface modified SBA-15 silica materials is prepared in the present work using mono- and trifunctional alkyl chains of various lengths which improves the hydrothermal and mechanical stability. Several techniques, such as element analysis, nitrogen sorption analysis, small angle X-ray diffraction, scanning electron microscopy (SEM), FTIR, solid-state (29)Si and (13)C NMR spectroscopy are employed to characterize the SBA-15 materials before and after surface modification with the organic components. Nitrogen sorption analysis is performed to calculate specific surface area, pore volume and pore size distribution. By surface modification with organic groups, the mesoporous SBA-15 silica spheres are potential materials for stationary phases in HPLC separation of small aromatic molecules and biomolecules. The HPLC performance of the present SBA-15 samples is therefore tested by means of a suitable test mixture.  相似文献   

12.
MCM-41 and SBA-15 silicas were studied by (29)Si solid-state NMR and (15)N NMR in the presence of (15)N-pyridine with the aim to formulate generic structural parameters that may be used as a checklist for atomic-scale structural models of this class of ordered mesoporous materials. High-quality MCM-41 silica constitutes quasi-ideal arrays of uniform-size pores with thin pore walls, while SBA-15 silica has thicker pore walls with framework and surface defects. The numbers of silanol (Q(3)) and silicate (Q(4)) groups were found to be in the ratio of about 1:3 for MCM-41 and about 1:4 for our SBA-15 materials. Combined with the earlier finding that the density of surface silanol groups is about three per nm(2) in MCM-41 (Shenderovich, et al. J. Phys. Chem. B 2003, 107, 11924) this allows us to discriminate between different atomic-scale models of these materials. Neither tridymite nor edingtonite meet both of these requirements. On the basis of the hexagonal pore shape model, the experimental Q(3):Q(4) ratio yields a wall thickness of about 0.95 nm for MCM-41 silica, corresponding to the width of ca. four silica tetrahedra. The arrangement of Q(3) groups at the silica surfaces was analyzed using postsynthesis surface functionalization. It was found that the number of covalent bonds to the surface formed by the functional reagents is affected by the surface morphology. It is concluded that for high-quality MCM-41 silicas the distance between neighboring surface silanol groups is greater than 0.5 nm. As a result, di- and tripodical reagents like (CH(3))(2)Si(OH)(2) and CH(3)Si(OH)(3) can form only one covalent bond to the surface. The residual hydroxyl groups of surface-bonded functional reagents either remain free or interact with other reagent molecules. Accordingly, the number of surface silanol groups at a given MCM-41 or SBA-15 silica may not decrease but increase after treatment with CH(3)Si(OH)(3) reagent. On the other hand, nearly all surface silanol groups could be functionalized when HN(Si(CH(3))(3))(2) was used.  相似文献   

13.
王金娥  杨春 《化学学报》2009,67(4):271-275
合成了表面含有SiOH基团的钨磷酸盐衍生物(Bu4N)3PW11O39[O(SiOH)2] (TBAPW11Si2), 并通过其与纯硅介孔分子筛SBA-15表面SiOH的缩合反应, 将TBAPW11Si2二次嫁接到SBA-15的介孔孔道中, 得到了TBAPW11Si2/SBA-15介孔杂化材料. 表征结果显示, 孔内TBAPW11Si2的Keggin结构保留完整, 并与孔壁共价键联. 样品仍保持六方对称的孔阵结构, 但孔道部分被堵, 孔容、孔径、比表面积下降. 该杂化样品对甲基橙的光催化降解不仅显示高催化活性, 而且由于键联的多金属氧酸盐在水溶液中的抗浸取能力强, 催化剂的使用寿命大大延长.  相似文献   

14.
Synthesis of carboxyl-modified rod-like SBA-15 by rapid co-condensation   总被引:1,自引:0,他引:1  
Carboxyl-modified SBA-15 rod-like mesoporous materials have been synthesized by a facile rapid co-condensation of tetraethylorthosilicate (TEOS) and 2-cyanoethyltriethoxysilane (CTES), followed by hydrolysis of cyanide groups in sulfuric acid. The concentration of carboxylic groups was varied by changing the silica source ratio of CTES/TEOS from 0.05 to 0.3. X-ray diffraction (XRD), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) showed that the uniform ordered mesoporous structure and rod-like morphology of SBA-15 have been preserved even at the high concentration of carboxylic groups employed. Characterization by Fourier transformed infrared spectroscopy (FTIR), solid-state NMR investigation indicated that carboxylic groups have been successfully grafted onto the surface of SBA-15 through siloxane bonds [(O(3))SiCH(2)CH(2)COOH. The negative charges of the modified SBA-15 materials were enhanced by the presence of the carboxylic groups on the surface. The capacity of lysozyme adsorption of the modified SBA-15 materials were found to be significantly improved as compared with pure silica SBA-15. The maximum amount of lysozyme adsorption on carboxyl-modified was increased with the pH of solution increased from 5.5 to 9.0.  相似文献   

15.
We report the first formation of arrays of InN nanorods inside the nanoscale channels of mesoporous silica SBA-15. In(NO3)3 dissolved in methanol was incorporated into SBA-15 powder without prior pore surface functionalization. Formation of InN nanorod arrays was carried out by ammonolysis at 700 degrees C for 8 h. The final products have been characterized by FT-IR spectra, (29)Si MAS NMR spectra, Raman spectra, XRD patterns, TEM images, nitrogen adsorption-desorption isotherm measurements, and optical spectroscopy. The freestanding InN nanorods observed after silica framework removal with HF solution show diameters of 6-7.5 nm and lengths of 25-50 nm. Formation of a trace amount of In2O3 was also verified. The InN nanorods exhibit a broad band centered at around 550-600 nm, and a band gap energy of 1.5 eV was determined. No light absorption in the near-IR region was measured. The nanorods give a weak emission band centered at around 600 nm. These optical properties are believed to be related to the possible incorporation of oxygen during InN nanorod synthesis.  相似文献   

16.
Highly ordered mesoporous SBA-15 silica with large pore diameter of 18 nm (nominal BJH pore diameter ~22 nm) and short pore length (~500 nm) was synthesized using a micelle expander 1,3,5-triisopropylbenzene in the absence of ammonium fluoride by employing short initial stirring time at 17 °C followed by static aging at low temperature. Scanning and transmission electron microscopies revealed that the material comprised of platelet particles in which large mesopores were nearly flawlessly arranged within uniform domains up to 3 μm in size. The platelet SBA-15 had the (100) interplanar spacing of 17 nm, high surface area (~470 m(2) g(-1)) and large pore volume (~1.6 cm(3) g(-1)). The hydrothermal treatment at 130 °C for 2 days was employed to eliminate constrictions from the pore channels. The control experiment showed that a sample prepared with prolonged stirring had very similar mesoporous properties, but the particle size was smaller and the domains were irregular, proving that the static conditions facilitate the formation of SBA-15 with platelet particle morphology. The absence of ammonium fluoride was also critical in attaining the platelet particle shape.  相似文献   

17.
The purpose of this study was to improve our understanding of the molecular organization of hydrophobic guest molecules in the presence of co-adsorbed water inside SBA-15 ordered mesoporous silica material. Understanding this adsorption competition is essential in the development of applications of controlled adsorption and desorption. The poorly water soluble drug compound itraconazole and the fluorescent probe Nile red were selected for the study. The interaction between itraconazole and SBA-15 was investigated using FT-IR, (1)H MAS NMR and (29)Si MAS NMR spectroscopy, by determination of adsorption isotherms and release kinetics in simulated gastric fluid. The distribution and migration of the hydrophobic fluorescent probe Nile red was visualized in situ using confocal fluorescence microscopy. For both molecules, there was a pronounced influence of the co-adsorbed water on adsorption, hydrophobic aggregation and migration in SBA-15 pores. These insights contribute to the development of practical methods for loading ordered mesoporous silica materials with hydrophobic molecules.  相似文献   

18.
The adsorption of water in two mesoporous silica materials with cylindrical pores of uniform diameter, MCM-41 and SBA-15, was studied by 1H MAS (MAS=magic angle spinning) and static solid-state NMR spectroscopy. All observed hydrogen atoms are either surface -SiOH groups or hydrogen-bonded water molecules. Unlike MCM-41, some strongly bound water molecules exist at the inner surfaces of SBA-15 that are assigned to surface defects. At higher filling levels, a further difference between MCM-41 and SBA-15 is observed. Water molecules in MCM-41 exhibit a bimodal line distribution of chemical shifts, with one peak at the position of inner-bulk water, and the second peak at the position of water molecules in fast exchange with surface -SiOH groups. In SBA-15, a single line is observed that shifts continuously as the pore filling is increased. This result is attributed to a different pore-filling mechanism for the two silica materials. In MCM-41, due to its small pore diameter (3.3 nm), pore filling by pore condensation (axial-pore-filling mode) occurs at a low relative pressure, corresponding roughly to a single adsorbed monolayer. For SBA-15, owing to its larger pore diameter (8 nm), a gradual increase in the thickness of the adsorbed layer (radial-pore-filling mode) prevails until pore condensation takes place at a higher level of pore filling.  相似文献   

19.
利用非水溶剂快速挥发的方法,以三嵌段共聚物P123等作为结构导向剂,双三乙氧硅基乙烷作为硅源,合成出一系列大孔径(>4nm)、高有序度、具有二维六角结构并且墙壁中含双亚甲基的介孔有机氧化硅(PMO)材料,并通过XRD、TEM、N2吸附-脱附、29SiNMR和SEM等方法对材料进行了表征.  相似文献   

20.
A novel copolymer with fluorescence properties in mesoporous silica SBA-15 was prepared via a combination of surface-initiated reversible addition-fragmentation chain transfer(RAFT) polymerization and "click" chemistry.A sufficient amount of peroxide groups were introduced into mesoporous silica SBA-15 channel pores and were further used to initiate the RAFT polymerization of styrene and 4-vinylbenzyl azide,resulting in SBA-15 supported polystyrene-co-poly(4-vinylbenzyl azide) copolymer(PS-co-PVBA/SBA-15) hybrid material.The samples were characterized by Fourier transform infrared spectroscopy(FT-IR),transmission electron microscopy(TEM),thermogravimetry analysis(TGA),N_2 adsorption-desorption isotherms and X-ray diffraction(XRD),respectively.The results show that the styrene and 4-vinylbenzyl azide had copolymerized inside mesoporous silica SBA-15.Subsequently,Npropargyl-carbazole(PC) was connected to PS-co-PVBA/SBA-15 hybrid material via "click" reaction,resulting in PS-co-PVBC/SBA-15 with carbazole side groups hybrid material.The fluorescence spectrum is dominated by a broad band from 350 nm to 400 nm in narrow region and the maximum peak is 362 nm,indicating the characteristic absorption of the carbazole group of PS-co-PVBC/SBA-15 hybrid material.  相似文献   

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