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1.
史楠  高保娇  杨青 《物理化学学报》2015,30(11):2168-2176
以微米级硅胶微粒为基质, 通过接枝聚合和大分子反应, 制备了具有刷状结构的阳离子性接枝微粒, 深入研究了其对牛血清白蛋白(BSA)的强吸附能力、吸附机理和吸附热力学. 首先使含叔胺基团的单体甲基丙烯酸二甲基氨基乙酯(DMAEMA)在硅胶微粒表面发生接枝聚合, 制得接枝微粒PDMAEMA/SiO2, 然后以氯乙胺为试剂, 使接枝大分子PDMAEMA链中的叔胺基团发生季铵化反应, 获得了具有刷状结构的阳离子聚电解质的功能接枝微粒QPDMAEMA/SiO2. 测定了微粒QPDMAEMA/SiO2的zeta 电位, 实施了对BSA的等温吸附实验, 考察了介质pH值、离子强度及温度对吸附作用的影响, 研究了吸附热力学. 研究结果表明, 功能接枝微粒QPDMAEMA/SiO2 比接枝微粒PDMAEMA/SiO2 具有更高的zeta 电位, 在静电相互作用驱动下, 微粒QPDMAEMA/SiO2对BSA具有很强的吸附能力. 吸附容量随介质pH值的增大呈现先增大后减小的变化趋势,当pH值等于BSA的等电点(pI=4.7)时, 具有最高的吸附容量(高达112 mg·g-1). 以等电点为界, 离子强度对吸附容量会产生完全相反的影响作用: 当介质pH值小于BSA的等电点时, 电解质浓度增大, 吸附容量增高; 当介质pH值等于BSA的等电点时, 吸附容量几乎不随电解质的浓度发生变化. 吸附过程熵值减小而且放出热量,是一个焓驱动的吸附过程.  相似文献   

2.
使含有氨基的改性硅胶微粒表面的氨基与溶液中的过硫酸盐构成氧化-还原引发体系,实施了甲基丙烯酸二甲基氨基乙酯(DMAEMA)在硅胶微粒表面的引发接枝聚合,制得接枝微粒PDMAEMA/SiO2;又以氯乙胺为试剂,使接枝的大分子PDMAEMA的叔胺基团发生季铵化反应,实现了接枝微粒PDMAEMA/SiO2的季铵化(Quaternization)转变,制得了阳离子性功能接枝微粒QPDMAEMA/SiO2。采用红外光谱(FTIR)、扫描电子显微镜(SEM)及Zeta电位测定等多种手段对两种微粒进行了表征。主要研究了温度对接枝聚合和季铵化转变反应的影响,优化了反应条件。还考察了功能接枝微粒QPDMAEMA/SiO2对阿魏酸的子吸附性能。研究结果表明,采用-NH2//S2O82-表面引发体系,可有效地实现DMAEMA的接枝聚合,适宜的反应温度为35℃;氯乙胺与接枝微粒叔胺基团之间的季铵化反应可顺利进行,适宜的反应温度为60℃,叔胺基团的季铵化度可达82%。凭借主-客体之间的强静电相互作用并协同以阳离子-π相互作用,功能接枝微粒QPDMAEMA/SiO2对阿魏酸可产生很强的吸附作用,在中性条件下,吸附容量高达187mg/g。  相似文献   

3.
采用溶液聚合法将甲基丙烯酸(MAA)接枝于硅胶微粒表面,制得了接枝微粒PMAA/SiO2;并通过静态吸附实验研究了该功能微粒对胆红素的吸附性能,考察了介质pH值、离子强度及温度等因素对吸附性能的影响,研究了在牛血清白蛋白(BSA)存在下该微粒的吸附性能.静态吸附实验结果表明,接枝微粒PMAA/SiO2对胆红素具有较强吸...  相似文献   

4.
以紫外吸收光谱和荧光发射光谱为手段,研究了阳离子单体丙烯酰氧乙基三甲基氯化铵(DAC)与牛血清白蛋白(BSA)之间的相互作用。采用表面引发接枝聚合法制备了接枝微粒SiO2-g-PDAC,探索研究了接枝大分子PDAC与BSA之间的相互作用及作用机理。研究结果表明:在水溶液中,单体DAC与BSA之间可产生强静电相互作用,凭借此强次价键力,单体DAC与BSA可形成主-客体复合物,且在中性溶液中,单体DAC与BSA之间的静电相互作用最强。接枝大分子PDAC与BSA之间也具有强静电相互作用,接枝微粒SiO2-g-PDAC对BSA可产生强吸附作用。当介质的pH在BSA的等电点(4.7)附近时,接枝微粒对BSA的吸附容量最大;升高温度不利于主-客体之间的静电相互作用,接枝微粒对BSA的吸附容量随温度升高而降低。  相似文献   

5.
汪剑  高保娇  郭浩鹏 《物理化学学报》2007,23(12):1905-1911
以硅胶表面接枝聚甲基丙烯酸(PMAA)的复合型功能微粒PMAA/SiO2为固体吸附剂, 对水介质中的抗蚜威进行了静态吸附实验, 通过考察温度、pH值及盐度(NaCl浓度)对吸附容量的影响, 重点研究了PMAA/SiO2对抗蚜威的吸附机理. 为确认所提出的机理的正确性, 还采用紫外光谱吸收法, 研究了单体甲基丙烯酸与抗蚜威之间的相互作用, 也考察了在非水介质CCl4中PMAA/SiO2对抗蚜威的吸附作用. 研究结果表明, PMAA/SiO2对抗蚜威具有强的吸附作用, 吸附的驱动力是氢键、静电以及疏水相互作用三种作用的协同, 其中主驱动力是静电相互作用. 温度升高, 吸附容量减小; 盐度增大, 吸附容量降低; 当pH<8时, 吸附容量随pH升高而增大; 当pH>8时, 吸附容量随pH升高而减小; 当pH=8 时,吸附容量最大.  相似文献   

6.
采用反相悬浮聚合法制备了甲基丙烯酸羟乙酯(HEMA)与N-乙烯基吡咯烷酮(NVP)的交联共聚微球HEMA/NVP,然后采用"接出"法,实施了甲基丙烯酸(MAA)在交联微球表面的接枝聚合,制得了接枝微球PMAA-HEMA/NVP.以溶菌酶(LYZ)为模型碱性蛋白,深入研究了接枝微球PMAA-HEMA/NVP对碱性蛋白的吸附性能与吸附机理.测定了微球PMAA-HEMA/NVP的zeta电位,考察了PMAA接枝度、介质pH值及离子强度等因素对体系吸附性能的影响.结果表明,在较大的pH范围内,接枝微球PMAA-HEMA/NVP的zeta电位为绝对值较大的负值,即其表面携带有高密度的负电荷.在强静电相互作用的驱动下,接枝微球PMAA-HEMA/NVP对溶菌酶表现出很强的吸附能力.随介质pH值的增高,接枝微球对溶菌酶的吸附容量呈现先增大后减小的变化趋势,在与溶菌酶等电点接近的pH值处(pH=9),具有最大的吸附容量(90mg.g-1);离子强度对接枝微球的吸附能力也有较大的影响,当pH9时,溶菌酶吸附容量随NaCl浓度的增高而减小;当pH9时,吸附容量随NaCl浓度的增高而增大.  相似文献   

7.
将4-乙烯基吡啶(4VP)接枝聚合于微米级硅胶表面,制得了接枝有聚4-乙烯基吡啶(P4VP)的接枝微粒P4VP-SiO_2,测定了P4VP-SiO_2的红外光谱,袁征了其化学结构,并测定了该复合型功能微粒材料的Zeta电位.采用静态法研究了P4VP-SiO_2对酸性氨基酸天冬氨酸与谷氨酸的吸附性能,考察了介质pH、离子强度及温度对其吸附性能的影响,探索了吸附机理.研究结果表明:在较大的pH范围内,P4VP-SiO_2的Zeta电位为较高的正值,即微粒表面携带有高密度的正电荷;酸性氨基酸天冬氨酸与谷氨酸等电点都较低,所以在一般的介质pH范围内,它们的分子带有负电荷;凭借静电相互作用,P4VP-SiO_2对酸性氨基酸天冬氨酸与谷氨酸均表现出很强的吸附能力,而对中性与碱性氨基酸(在一般的介质pH范围内分子带有正电荷)的吸附能力则很弱;随介质pH的增大,P4VP-SiO_2对天冬氨酸与谷氨酸的吸附能力呈现先增强后减弱的规律,在pH=4处,吸附容量具有最大值,分别为280 mg/g与230 mg/g;温度升高,吸附容量减小;盐度增大,吸附容量降低.  相似文献   

8.
首先使用偶联剂γ-氨丙基三甲氧基硅烷(AMPS)对微米级硅胶微粒进行了表面改性,制得表面带有伯胺基的改性微粒SiO2-AMPS,接着使4-(二乙氨基)水杨醛(DEAS)与微球SiO2-AMPS发生席夫碱反应,制得表面含有芳叔胺基的改性微粒SiO2-DEAS.使改性微粒SiO2-DEAS表面的芳叔胺基团与溶液中的BPO构成氧化-还原引发体系,实现了油溶性单体苯乙烯(St)在硅胶微粒表面的引发接枝聚合,制得了高接枝度(27 g/100g)的接枝微粒SiO2-DEAS-g-PSt.采用红外光谱(FTIR)、扫描电镜(SEM)及热重分析(TGA)等方法对接枝微粒SiO2-DEAS-g-PSt进行了表征.在此基础上,重点研究了主要因素对芳叔胺-BPO体系引发St接枝聚合的影响.研究结果表明,与在固体微粒表面引入可聚合双键的"穿过接枝"(grafting through)法相比,芳叔胺-BPO体系引发的接枝聚合,由于活性位点位于载体表面,故具有高的接枝度,是油溶性单体的一种高效率的表面引发接枝法.为制得高接枝度的接枝微粒SiO2-DEAS-g-PSt,适宜的温度为50℃,适宜的BPO用量为单体的3 wt%左右,适宜的单体浓度为10 wt%.  相似文献   

9.
通过用表面引发接枝聚合和高分子反应制备8-羟基喹啉型复合螯合微粒.首先使用γ-氨丙基三甲氧基硅烷(AMPS)对微米级硅胶微粒进行表面改性,制得改性微粒AMPS-SiO2;使改性微粒AMPS-SiO2表面的氨基与溶液中的过硫酸盐构成氧化-还原引发体系,实施了甲基丙烯酸羟乙酯(HEMA)在硅胶微粒表面的高效引发接枝聚合,制得了接枝微粒PHEMA/SiO2.又以5-氯甲基-8-羟基喹啉(CHQ)为试剂,使接枝的PHEMA发生大分子反应,实现了接枝微粒PHEMA/SiO2的8-羟基喹啉功能化转变,制得了复合微粒HQ-PHEMA/SiO2.采用多种手段对两种微粒进行了表征,重点研究了氨基-过硫酸盐表面引发接枝体系的接枝聚合机理,并研究了CHQ与接枝PHEMA的醇羟基之间取代反应的机理,还初步考察了功能微粒HQ-PHEMA/SiO2对重金属离子的螯合吸附性能.研究结果表明,氨基-过硫酸盐表面引发接枝聚合体系具有很高的引发活性,在室温(30℃)即可制得高接枝密度(40 g/100g)的接枝微粒PHEMA/SiO2;CHQ与接枝PHEMA的醇羟基之间的取代反应遵循SN1的反应历程,使用强极性溶剂有利于反应的进行.微粒HQ-PHEMA/SiO2对重金属离子呈现很强的螯合吸附能力,是一种功能复合微粒.  相似文献   

10.
螯合吸附材料PAO/SiO_2对重金属离子的螯合吸附行为   总被引:2,自引:0,他引:2  
将丙烯腈接枝聚合在微米级硅胶微粒表面,经偕胺肟化转变,制得了接枝有聚偕胺肟(PAO)的复合型螯合吸附材料PAO/SiO2。本文重点考察了螯合吸附材料PAO/SiO2对几种重金属离子的螯合吸附行为,深入地研究了吸附机理。研究结果表明,偕胺肟基团与重金属离子之间的静电作用与配位螯合作用的协同,导致PAO/SiO2对重金属离子产生强的螯合吸附作用。在可抑制金属离子水解的pH范围内,介质的pH值越高,PAO/SiO2的螯合吸附能力越强;PAO/SiO2对性质不同的金属离子的吸附性能是有差别的,吸附容量的顺序为Cu2+Ni2+Pb2+Cd2+。  相似文献   

11.
In the present study, adsorption isotherms of a polycarboxylic-acid-type biosurfantant, the sodium salt of (2-(2-carboxyethyl)-3-decyl maleic anhydride) (DCMA-3Na), on TiO2, zeta potential, and changes in particle aggregate size as a function of biosurfactant concentration, solid-liquid ratio and pH were systematically investigated. The adsorption of DCMA-3Na on the surface of TiO2 shows a relatively weak dependence on pH, unlike the adsorption behavior of chemically-synthesized surfactants. Adsorption of DCMA-3Na still occurs at pH above the isoelectric points of TiO2 due to the buffering capacity, which is due to three carboxylate functional groups in the hydrophilic moiety of DCMA-3Na. Since DCMA-3Na has three anionic head groups, the zeta potential of TiO2 at pH 3 decreases very steeply from positive to negative values as the surface charges are neutralized by the adsorption of biosurfactants. Trends in zeta potentials as a function of equilibrium DCMA-3Na concentration are quite closely related to the changes in flocculation of individual TiO2 particles.  相似文献   

12.
Adsorption of bovine serum albumin (BSA) was studied at different acidities of the medium on the non-charged and titanium hydroxide-modified surfaces of the carbon fibers (ACF and ACF-B (Ti)). The fiber covered with titanium hydroxide was shown to have the highest adsorption capacity at pH = 4.7, which is close to the isoelectric point of BSA. The cathodic polarization has the greatest effect on the BSA desorption ability, which enabled the determination of conditions for recovering the adsorption capacity of the fibrous sorbent.  相似文献   

13.
Two effective types of superparamagnetic nano-scale adsorbents of bayerite/SiO2/Fe3O4 have been synthesized via three sequential steps: chemical precipitation of Fe3O4, coating of SiO2 on Fe3O4 using acidifying method, and further coating of bayerite (Al(OH)3) on SiO2/Fe3O4 adopting sol–gel (MASG) or homogeneous precipitation (MAHP) methods. The characteristics of MASG and MAHP were identified using the transmission electron microscopy (TEM) micrograph, scanning electron microscopy with energy dispersive X-ray spectroscopy (SEM/EDX), X-ray powder diffractometer (XRD), and superconducing quantum interference device (SQUID). Removal of fluoride from aqueous solution was examined to evaluate the adsorptive capacity of MASG, MAHP, and commercial activated alumina (CA), and the effects of enclosure of Fe3O4 with SiO2 for SiO2/Fe3O4, MASG, and MAHP particles. Among the adsorbents tested under the same experimental condition, MASG is the most effective adsorbent, of which the adsorption capacities are 38 g/kg (based on adsorbent mass of adsorption in terms of equilibrium constant qL of Langmuir isotherm), and can compete with CA even at a high pH value. The innovative superparamagnetic adsorbents synthesized in this study possess physicochemical stability at pH range of 6–8 and great potential in the adsorption processes due to not only their high adsorption capacity but also the conveniently magnetic separation which can overcome the difficulty in solid–liquid separation for nano-particles in solutions.  相似文献   

14.
Micron-sized silica gel particles were chemically modified on their surfaces with the coupling agent, γ-methacryloxypropyl trimethoxysilane (MPS), double bond was introduced onto the surfaces of silica gel particles, and the modified particles MPS–SiO2 were obtained. Then, poly(4-vinylpyridine) (P4VP) was grafted from the silica gel surfaces, and grafting particles P4VP/SiO2 was prepared. Finally, the coordination between grafted P4VP and cupric ions Cu2+ was performed, and the supported complex Cu(II)–P4VP/SiO2 was obtained. The grafting particles P4VP/SiO2 and the supported complex Cu(II)–P4VP/SiO2 were characterized with infrared spectra (FTIR), thermogravimetric analysis (TGA) and scanning electron microscopy (SEM). Cu(II)–P4VP/SiO2 was used as a catalyst for the oxidation of ethyl benzene into acetophenone with molecular oxygen under ordinary pressure. The experimental results show that the supported complex Cu(II)–P4VP/SiO2 can be successfully prepared via grafting polymerization of 4VP and coordination between the grafted P4VP and cupric ions Cu2+. In oxidation of ethyl benzene into acetophenone by molecular oxygen under ordinary pressure, the supported complex Cu(II)–P4VP/SiO2 displayed high catalytic activity and excellent catalytic selectivity up to more than 98% for the transformation of ethyl benzene to acetophenone.  相似文献   

15.
研究Ta掺杂六方相氧化钨(hex-WO3)材料在吸附Sr2+过程中其表面zeta电位的变化情况,并进一步探讨了吸附过程的热力学及吸附机理。结果表明:(1)在实验pH值范围内,Ta掺杂hex-WO3悬浮液的zeta电位值随溶液中电解质的价态增大而增大;(2)且zeta电位随体系中离子强度的增加而增大;(3) Ta掺杂hex-WO3对Sr2+的吸附容量随着温度降低而增大,随着离子强度的增加而减少;(4)吸附过程的吸附焓为-47 kJ·mol-1,且Sr2+离子与材料表面之间主要为化学相互作用;(5) Ta掺杂hex-WO3对Sr2+吸附过程主要为材料表面吸附及材料孔道内离子交换共同作用。  相似文献   

16.
An experimental investigation on the adsorption of F(ab')2 from rabbit IgG onto polystyrene (PS) latex beads is described. All adsorption isotherms were of high affinity and showed well-defined plateaus. Maximum protein adsorption was found around the average isoelectric point (IEP) of the dissolved protein. According to the findings, the F(ab')2 adsorption on the polystyrene surface is strongly irreversible with respect to ionic strength changes. The pH changes, however, exert a certain effect on the adsorption-desorption process of F(ab')2 on negatively charged polystyrene surfaces. In order to determine the role played by the electrostatic forces in the F(ab')2 adsorption onto negatively charged latex particles, an electrokinetic study of the protein-latex complexes has also been carried out. The isoelectric pH of the F(ab')2-PS complexes is always smaller than the IEP of the dissolved F(ab')2, indicating that the PS surface charge must partly compensate the positive charge on the protein. Finally, a comprehensive study on the colloidal stability of the sensitized latex beads was performed.  相似文献   

17.
The adsorption of bovine serum albumin (BSA) on fused silica at pH 4.7 was studied at the single molecules level by total-internal-reflection fluorescence microscopy. This pH value was the isoelectric point of BSA. At low [BSA] of 20 pM, protein molecules adsorbed as monomers. At intermediate [BSA] of 500 pM, protein molecules adsorbed as clusters of about five monomers on average. Both monomers and clusters had adsorption rate coefficients of the order 10−7 m s−1 and desorption rate coefficients of about 2 × 10−2 s−1. The respective steady-state coverage was about 10× higher than that at neutral pH, presumably because of the more favorable BSA–silica electrostatics. At pH 4.7 and with [BSA] higher than 100 nM, adsorption begot further adsorption to produce nonlinear isotherms. The coverage at 1 μM BSA was 2.5× that of the linearly extrapolated coverage. This suggests that at pH 4.7, solute–adsorbate affinity was the dominant factor that explains the enhanced adsorption observed in ensemble measurements.  相似文献   

18.
Adsorption and desorption of lysozyme on nano-sized magnetic particles and its conformational change were studied in this work. Adsorption of lysozyme on nano-sized magnetic particles (Fe3O4) was carried out at different pH. Maximum adsorption of lysozyme (4.65 mg/m2) occurred at its isoelectric point (pI=11.1). Differential scanning calorimetry (DSC) results show that the lysozyme adsorbed on magnetic particles did not show any thermal transition over the range 20–100 °C. High desorption of lysozyme from magnetic particles was achieved using NaH2PO4 (pH 4.0) (90%) and NaSCN (pH 6.0) (97%) as desorbents. The conformational change of the lysozyme desorbed by NaH2PO4 was small, while the lysozyme desorbed by NaSCN underwent a significant conformational change as measured by the intrinsic fluorescence. Eighty-eight and 82% activity was retained in the desorbed enzyme for desorption by NaH2PO4 and NaSCN, respectively.  相似文献   

19.
We investigated the adsorption of bovine serum albumin (BSA) on colloidal Al2O3 particles in an aqueous environment. Changes in the zeta potential of the Al2O3 particles upon the adsorption of BSA were measured using an electro-acoustic technique. The mass of protein adsorbed was determined by using UV-vis spectroscopy. The change of the isoelectric point of the Al2O3 powder-protein suspension was found to be a function of adsorbed protein mass. It was shown that approximately one monolayer of BSA was needed to fully mask the surface and to compromise the charge of Al2O3. From titration experiments it follows that about 30-36% of the negatively charged groups of the protein form bonds with the protonated and charged Al2O3 surface. On the basis of our observations we introduced a new adsorption model for BSA on Al2O3 particles.  相似文献   

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