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1.
采用湿化学法制备了多功能Fe3O4超粒子@介孔SiO2复合材料.该纳米复合材料具有超顺磁性,在商用磁铁下可实现快速富集、分离.SiO2的包覆增强了Fe3O4超粒子在近红外光区的吸收,提高了其光热性能;介孔结构的构建提高了近红外光的利用率,进一步提升了纳米复合物的光热性能,且介孔SiO2的壳层越厚,光热性能越优.细胞实验结果表明,Fe3O4超粒子@介孔SiO2在近红外光照射下具有较高的癌细胞杀伤能力.  相似文献   

2.
采用等体积浸渍法制备了Ni/SiO2及Ni与金属助剂M(M=Fe、Co、Cu、Zn及Ga)物质的量比为30的Ni基双金属催化剂(记作Ni30M/SiO2),利用H2-TPR、XRD、H2化学吸附、NH3-TPD以及N2物理吸附-脱附等手段对催化剂进行了结构表征,研究了不同助剂对催化剂结构与苯甲醚加氢脱氧性能影响。结果发现,金属助剂影响了催化剂前驱体中镍物种的还原性能,表明金属助剂及镍之间存在一定相互作用。Ni30M/SiO2中Ni-M双金属晶粒粒径和Ni/SiO2中金属Ni晶粒粒径相近。由于表面张力较低的金属会在双金属晶粒表面富集,Ni30M/SiO2的H2化学吸附量不同程度地低于Ni/SiO2。另外,Ni30M/SiO2催化剂的酸量(尤其较弱酸中心酸量)高于Ni/SiO2。在300℃、常压、苯甲醚质量空速1.0 h-1及H2与苯甲醚物质的量比为25:1条件下考察了各催化剂苯甲醚的加氢脱氧性能。Ni30M/SiO2上苯甲醚转化率不同程度低于Ni/SiO2,原因在于Ni30M/SiO2催化剂H2化学吸附量较低。Ga及Zn改性催化剂上三苯(包括苯、甲苯及二甲苯)选择性分别为81.7%和76.8%,高于Ni/SiO2(71.5%),且Ni30Ga/SiO2及Ni30Zn/SiO2上三苯收率(分别为65.0%及63.8%)高于或接近于Ni/SiO2(63.7%)。Ni/SiO2及Ni30M/SiO2催化剂中,Ni30Zn/SiO2具有较高甲基转移能力及较低C-C键氢解活性。从提高碳收率、降低耗氢量角度而言,Ni30Zn/SiO2具有较佳的加氢脱氧性能,与Ni和Zn之间作用及Zn亲氧性高于Ni有关。  相似文献   

3.
采用液相沉积法(LPD)制备了纳米氧化锆沉积硅胶色谱固定相(ZrO2/SiO2), 并将其应用于亲水作用色谱分离中. 考察并比较了ZrO2/SiO2、 硅胶(SiO2)和氧化锆(ZrO2) 3种色谱固定相在不同有机调节剂比例、 不同pH值及不同盐浓度的流动相条件下的色谱行为. 结果表明, 制备的ZrO2/SiO2色谱柱不仅具有SiO2色谱柱高柱效的优点, 表面沉积的纳米氧化锆还能有效屏蔽硅羟基, 有利于碱性物质的保留和分离, 表现出良好的亲水作用色谱性能. 将ZrO2/SiO2色谱柱用于4种脱氧核苷和5种碱性化合物的分离, 均得到了较好的效果, 展现出其作为色谱固定相良好的应用前景.  相似文献   

4.
溶胶-凝胶法制备聚醚砜-二氧化硅复合材料   总被引:5,自引:0,他引:5  
以聚醚砜(PES)为基体,通过溶胶-凝胶过程,得到了分散均匀的PES/SiO2杂化材料,用扫描电镜、透射电镜、傅里叶红外及差示扫描量热法研究不同SiO2含量的PES/SiO2杂化材料材料性能.结果表明,当PES/SiO2杂化材料中SiO2的质量分数大于10%时可获得有机聚合物链段与无机网络互穿的均匀分散的复合材料.此材料的玻璃化转变温度(Tg)明显提高.  相似文献   

5.
在无机SiO2纳米粒子存在下的苯丙乳液共聚合   总被引:18,自引:0,他引:18  
研究了在无机SiO2纳米粒子存在下的苯丙乳液共聚合.选择了能使苯丙乳液稳定存在的乳化剂体系,研究了温度和SiO2的加入对聚合过程转化率的影响,结果表明,SiO2的加入对聚合过程有阻聚作用,使单体的转化率降低.SEM照片证明SiO2粒子已经进入苯丙乳液粒子中,而且SiO2的加入对乳液制成的膜断面形态有一定影响.实验发现在无机SiO2纳米粒子存在下,苯丙乳液共聚合时有较多残渣出现,对此通过改进乳液聚合进行了有效地改善.同时对制成的复合材料进行了力学性能和热学性能的测定.  相似文献   

6.
掺杂WO3的SiO2/TiO2的溶胶热液合成及光催化性能   总被引:1,自引:0,他引:1  
采用溶胶-热液合成法制备了掺杂WO3的SiO2/TiO2复合光催化剂,用X射线衍射、红外光谱、Zeta电位分析、BET和透射电镜对样品进行了表征,并以甲基橙降解评价了其光催化性能.结果表明:改性后的光催化剂表现出较高的光催化性能,WO3和SiO2不仅增加了锐钛矿TiO2的稳定性,并阻止了TiO2晶粒的聚集生长.  相似文献   

7.
本文用分子探针法测定SiO2、1-Al2O5·SiO2和2-Al2O3·SiO2三种载体的表面结构,进一步研究、分析活性组分的分布,从而推出催化性能发生明显变化的可能原因。  相似文献   

8.
利用手性阴离子酸表面活性剂, 采用软模板法制备了具有不对称孔道结构的小介孔二氧化硅(SiO2)粒子. 将小介孔SiO2粒子引入聚偏四氟乙烯(PVDF)和聚酰亚胺(PI)中构建了两种有机/无机杂化膜. 利用傅里叶变换红外光谱(FTIR)、 透射电子显微镜(TEM)、 扫描电子显微镜(SEM)和比表面积分析等表征了小介孔SiO2粒子和有机/无机杂化膜的微结构, 并通过超滤实验和气体渗透实验分别考察两种杂化膜的性能. 研究结果表明, 表面含有大量亲水基团的小介孔SiO2粒子具有规则有序排列的孔道结构, 该孔道结构呈现螺旋扭曲和不对称性. 构建的两种有机/无机杂化膜的极性显著提升, 进而有效增强了PVDF杂化膜的膜通量和抗污染性能及PI杂化膜对CO2气体的分离性能, 克服了高分子膜的博弈效应(Trade-off效应). 另外, SiO2的小介孔孔道还可以在PI杂化膜中引入优先通过CO2分子的限域传质通道, 加速了CO2气体在杂化膜中扩散. 但过多小介孔SiO2粒子的加入导致其在高分子基质中团聚, 削弱杂化膜的极性和亲水性, 从而降低了两种杂化膜的分离性能.  相似文献   

9.
采用4种含不同官能基团修饰剂改性的二氧化硅SiO2增强溶聚丁苯橡胶(SSBR)/顺丁橡胶(BR)共混体系, 制备了SSBR/BR/SiO2橡胶纳米复合材料, 研究了其结构与性能. 结果表明, 在混炼胶体系中, 与未改性SiO2填充的SSBR/BR相比, 改性SiO2填充的SSBR/BR门尼黏度及结合橡胶含量显著增大, 表明填料-橡胶相互作用显著提高; 硫化焦烧时间缩短60%, 硫化速度增大了35%~40%. 在硫化胶体系中改性SiO2填充的SSBR/BR具有更大的交联密度, 填料分散性明显改善, 同时也表现出更为优异的物理机械性能, 100%和300%定伸模量提高47%以上, 旋转滚筒式磨耗机法(DIN)磨耗降低5%~12%, 生热降低了约7%~13%, 热空气老化性能提升4%~22%, 代表滚动阻力的tanδ在60 ℃降低8%~13%. 此外, 与SSBR/BR/1165MP硫化胶相比, 用90 mmol/kg氨基改性SiO2填充的SSBR/BR硫化胶的抗湿滑性能提高6.9%, 表现出最优的综合性能. 填料的良好分散及填料与聚合物的相互作用增强对于提高SSBR/BR/SiO2胎面胶综合力学性能具有重要意义.  相似文献   

10.
以陶瓷为骨架,用溶胶凝胶法和浸渍法制备了V2O5-MoO3/ TiO2催化剂,并用SiO2进行改性。采用浸渍法模拟碱K中毒,研究了SiO2改性前后催化剂中毒脱硝效率的变化,并通过BET、H2-TPR、NH3-TPD等技术手段对催化剂进行了表征。结果表明,加入SiO2后,催化剂的比表面积明显提高。SiO2改性后新鲜催化剂还原温度向低温方向迁移10 ℃左右,氧化还原能力得到了提高,其表面酸强度和酸量也得到较大的提高。反应评价结果表明,SiO2改性可以提高催化剂抗碱中毒的性能。  相似文献   

11.
制备了氨丙基键合硅胶(SiO2-N)、乙二胺-N-丙基键合硅胶(SiO2-2N)、二乙烯三胺基键合硅胶(SiO2-3N)、三乙烯四胺基键合硅胶(SiO2-4N)、四乙烯五胺基键合硅胶(SiO2-5N)、五乙烯六胺基键合硅胶(SiO2-6N)和聚乙烯亚胺基键合硅胶(SiO2-nN),一步法制备的SiO2-N和SiO2-2N的胺基键合密度高达2.07 mmol/g和1.71mmol/g,两步法制备的SiO2-nN的胺基键合密度为0.02mmol/g,其余胺基键合硅胶中胺基密度约为0.50mmol/g。这7种胺基键合硅胶被用于水溶液中常见重金属离子Pb2+的吸附研究。结果表明,在30℃条件下,分别加入10 mL 400 mg/L的Pb2+溶液(pH 5)和20 mg胺基键合硅胶进行吸附,10 h后,Pb2+吸附量达到最大,吸附过程符合Freundlich等温方程。SiO2-N、SiO2-2N、SiO2-3N、SiO2-4N、SiO2-5N、SiO2-6N和SiO2-nN对Pb2+的吸附量依次为131.28、138.98、85.37、75.22、61.87、79.12和114.06 mg/g,这些胺基键合硅胶在吸附Pb2+方面均非常具有潜力。  相似文献   

12.
不同金属盐改性对硅胶的水蒸气吸附性能影响   总被引:8,自引:0,他引:8  
用不同的金属盐溶液对中孔硅胶进行了改性,并进行了吸附水蒸气动力学实验.讨论了改性硅胶的吸湿性与离子半径之间的关系及吸附速率与平均孔径的关系.实验结果表明:(1) CaCl2,LiCl,MgCl2,ZnCl2改性硅胶,可以使硅胶的吸湿性能明显增加.其中用CaCl2改性的硅胶的吸湿量最大,其平衡吸湿量是未改性硅胶的3倍;(2) 用CaCl2溶液改性的中孔硅胶其吸湿量已接近微孔硅胶的吸湿量,但其吸附速率明显大于微孔硅胶的吸附速率;(3) 用CaCl2和ZnCl2的混合溶液改性硅胶对其吸湿量的提高没有明显效果.  相似文献   

13.
纳米二氧化硅复合悬浮液合成及聚合物吸附研究   总被引:1,自引:0,他引:1  
华峰君  孙静  高濂  杨玉良 《化学学报》2000,58(12):1660-1665
从水玻璃合成了纳米硅溶胶,并以它为起始原核,通过水解钛酸正丁酯沉积二氧化钛,制得了稳定的二氧化钛复合二氧化硅纳米悬浮液,研究了添加的高分子两亲分散剂聚醚多胺在硅胶粒上的吸附和二氧化钛沉积过程中的贡献。研究结果表明,添加的聚醚多胺吸附在硅胶粒表面,有利于硅溶胶的稳定;钛酸正丁酯-丁醇-硫酸水解反应是可逆的,二氧化钛向硅胶粒定向沉积,这些沉积物呈无定形态,在沉积过程中,吸附的这些添加剂发生离子化,其阳离子端基形成的离子氛有利于二氧化钛沉积,并能减少胶粒粘接或团聚。  相似文献   

14.
We report a simple and rapid method for the deposition of amorphous silica onto a gold surface. The method is based on the ability of lysozyme to mediate the formation of silica nanoparticles. A monolayer of lysozyme is deposited via non-specific binding to gold. The lysozyme then mediates the self-assembled formation of a silica monolayer. The silica formation described herein occurs on a surface plasmon resonance (SPR) gold surface and is characterized by SPR spectroscopy. The silica layer significantly increases the surface area compared to the gold substrate and is directly compatible with a detection system. The maximum surface concentration of lysozyme was found to be a monolayer of 2.6 ng/mm(2) which allowed the deposition of a silica layer of a further 2 ng/mm(2). For additional surface functionalization, the silica was also demonstrated to be a suitable matrix for immobilization of biomolecules. The encapsulation of organophosphate hydrolase (OPH) was demonstrated as a model system. The silica forms at ambient conditions in a reaction that allows the encapsulation of enzymes directly during silica formation. OPH was successfully encapsulated within the silica particles and a detection limit for the substrate, paraoxon, using the surface-encapsulated enzyme was found to be 20 microM.  相似文献   

15.
以弱阳离子交换聚合物微球(WCX)为模板、N-三甲氧基硅基丙基-N,N,N-三甲基氯化铵(TMSPTMA)为结构导向剂、四乙氧基硅烷(TEOS)为硅胶前驱体,在三乙醇胺弱碱催化作用下,水解缩合形成有机聚合物与二氧化硅复合微球,将此复合微球煅烧后得到大孔二氧化硅微球。探索了不同反应条件对二氧化硅微球的形貌、表面结构和分散性的影响;当TMSPTMA、TEOS与三乙醇胺的体积比为1∶2∶2时可以得到孔径在50~150 nm之间、粒径在2μm左右的硅胶微球。对所制备的大孔硅胶微球表面进行C18(十八烷基二甲基氯硅烷)键合修饰,然后将键合的填料装填到50 mm×4.6 mm的色谱柱中,考察了其对常见的几种标准蛋白质和市售大豆分离蛋白质的分离效果,结果显示这种填料在高效液相色谱蛋白质分离中具有一定的潜力。  相似文献   

16.
The structural development of the NiFe2O4 nanocrystals dispersed in a silica matrix was followed by IR and EPR spectroscopies of the dried gel 10NiO–10Fe2O3–90SiO2 after heat treatment. The dried gel obtained at 200°C was amorphous, in which Fe3+ and Ni2+ ions were distributed in the pores of silica matrix. When the dried gel was heat treated at 400°C, NiFe2O4 clusters were partially formed, showing an enhanced interaction with the silica matrix. NiFe2O4 clusters were completely formed in silica matrix when the heat treatment was increased to 600°C, at which the interactions between the clusters and silica matrix reached a maximum. The formation reaction of NiFe2O4 clusters was accompanied by a rearrangement of the silica matrix network. Further increase of the heat treatment temperature to 800°C led to superparamagnetic single domain NiFe2O4 nanocrystals (ca. 4 nm) dispersed in the silica matrix with the elimination of the interactions between magnetic nanocrystals and silica matrix.  相似文献   

17.
To reduce the amount of hazardous chemical bottle waste in the environment, we report the optimization research of silica extraction in chemical bottle waste into silica gel. Alkali fusion and sol–gel process were utilised to prepare silica gel effectively. The alkali fusion process was carried out by adding sodium hydroxide to produce sodium silicate. Afterwards, silica gel was prepared by the sol–gel method using hydrochloric acid. Box-Behnken Design (BBD) was applied to Optimisation factors the poptimiseactors affecting the silica recovery. The factors that optimised mass ratio, particle size, and temperature. The optimum recovery of silica gel was obtained by SiO2: NaOH mass ratio of 1:3, the particle size of 63–74 µm, and a temperature of 800 °C. The purity of silica gel optimum is 63.74% characterised using X-ray fluorescence. The structure of silica gel is the appearance of amorphous peaks at 2θ 20-30° characterised using an x-ray diffractogram. The silica gel surface was characterises using scanning electron microscopy-energy dispersive x-ray. It showed an irregular surface and characteristic showed that silica gel had a radius of 15.74 nm and a specific surface area of 297.08 m2.  相似文献   

18.
硅胶基质高效液相色谱填料研究进展   总被引:2,自引:0,他引:2  
高效液相色谱(HPLC)不仅是一种有效的分析分离手段,也是一种重要的高效制备分离技术。色谱柱是HPLC系统的核心,不同性能的填料是HPLC广泛应用的基础。硅胶是开发最早、研究最为深入、应用最为广泛的HPLC固定相基质,其制备方法主要有喷雾干燥法、溶胶-凝胶法、聚合诱导胶体凝聚法及模板法等。近年来,亚2μm小粒径硅胶、核-壳型硅胶、双孔径硅胶、介孔性硅胶、有机杂化硅胶等新型硅胶应用于HPLC并取得了色谱分离技术的飞速发展,例如基于亚2μm填料的超高压液相色谱技术、基于核-壳型填料的快速分离技术、基于杂化硅胶填料的高温液相色谱技术等。硅胶经表面化学键合、聚合物包覆等有机改性可制得先进的大分子限进填料、温敏性填料、手性填料等,大大扩展了HPLC的应用范围。本文对液相色谱用硅胶的制备方法、改性与修饰方法以及硅胶基质固定相的评价方法加以系统综述,概述了新型硅胶在HPLC中的应用进展,并对硅胶基质填料的发展方向与应用前景进行了展望。  相似文献   

19.
The deposition kinetics of RNA extracted from both virus and bacteria on silica surfaces were examined in both monovalent (NaCl) and divalent (CaCl(2)) solutions under a wide range of environmentally relevant ionic strength and pH conditions by utilizing a quartz crystal microbalance with dissipation (QCM-D). To better understand the RNA deposition mechanisms, QCM-D data were complemented by diffusion coefficients and zeta potentials of RNA as a function of examined solution chemistry conditions. Favorable deposition of RNA on poly-l-lysine-coated (positively charged) silica surfaces was governed by the convective-diffusive transport of RNA to the surfaces. The deposition kinetics of RNA on bare silica surfaces were controlled by classic Derjaguin-Landau-Verwey-Overbeek (DLVO) interactions. The presence of divalent cations (Ca(2+)) in solutions greatly enhanced the deposition kinetics of RNA on silica surfaces. Solution pH also affected the deposition behavior of RNA on silica surfaces. Release experiments showed that detachment of RNA from silica surfaces was significant in NaCl solutions, whereas, the deposited RNA on silica surfaces in CaCl(2) solutions was more likely to be irreversible.  相似文献   

20.
Mesoporous silica metal oxide (ZnO and CdO) thin films have been used as metal ion precursors to produce the first examples of mesoporous silica metal sulfide (meso-SiO(2) @ZnS, meso-SiO(2) @CdS) or silica metal selenide (meso-SiO(2) @ZnSe, meso-SiO(2) @CdSe) thin films, in which the pore walls are made up of silica and metal sulfide or metal selenide nanoflakes, respectively. A gentle chemical etching with a dilute HF solution of the meso-SiO(2) @CdS (or meso-SiO(2) @CdSe) produces mesoporous cadmium sulfide (meso-CdS) (or cadmium selenide, meso-CdSe). Surface modified meso-CdS displays bright blue photoluminescence upon excitation with a UV light. The mesoporous silica metal oxides are formed as metal oxide nanoislands over the silica walls through a self-assembly process of a mixture of metal nitrate salt-two surfactants-silica source followed by calcination step. The reactions, between the H(2) S (or H(2) Se) gas and solid precursors, have been carried out at room temperature and monitored using spectroscopy and microscopy techniques. It has been found that these reactions are: 1)?taking place through the diffusion of sulfur or selenium species from the top metal oxide layer to the silica metal oxide interface and 2)?slow and can be stopped at any stage to obtain mesoporous silica metal oxide metal sulfide or silica metal oxide metal selenide intermediate thin films.  相似文献   

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