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1.
以Fe3O4@SiO2为磁核,在其表面包裹壳聚糖,再通过分子印迹技术,制得Fe3O4@SiO2@CTS镍离子印迹聚合物。采用XRD、FTIR和SEM对镍离子印迹聚合物的结构和形貌进行表征。通过正交实验确定了镍离子印迹聚合物对Ni2+的最佳吸附条件为:Ni2+初始浓度为80 mg·L-1、印迹聚合物用量为25 mg、pH值为5.0、吸附时间为3 h,印迹聚合物对Ni2+的吸附量可达66.73 mg·g-1。Fe3O4@SiO2@CTS镍离子印迹聚合物对Ni2+的吸附符合拟二级动力学方程,吸附过程符合Freundlich等温吸附模型。  相似文献   

2.
以十六烷基溴化铵(CTAB)为结构导向剂, 正硅酸乙酯(TEOS)为硅源, 在碱性环境下经过自组装过程对单分散性磁性Fe3O4纳米粒子进行包覆, 制备出磁性硅基介孔纳米粒子Fe3O4@SiO2. 结合X射线衍射、 傅里叶变换红外光谱(FTIR)、 透射电子显微镜(TEM)以及氮气吸附-脱附等技术对Fe3O4@SiO2粒子进行表征. 结果表明Fe3O4@SiO2纳米粒子具有球形形貌, 平均直径约为150 nm, 蠕虫状介孔结构, 比表面积为932 m2/g, 孔径为2.5 nm且分布较均匀, 包覆后Fe3O4的结构得以保持, 同时材料具有很好的磁响应能力. 以抗癌药紫杉醇(Paelitaxel, TXL)为模型药物进行负载, 实验结果表明, Fe3O4@SiO2对TXL的负载能力为80 mg/g, TXL-Fe3O4@SiO2对TXL的缓释时间持续120 h以上, 累积释放量达到30 mg/g. 通过噻唑蓝比色(MTT)法测量了TXL-Fe3O4@SiO2粒子对体外培养的HeLa细胞的细胞毒性, 与相同浓度的TXL相比, TXL-Fe3O4@SiO2对HeLa细胞的抑制率明显增高.  相似文献   

3.
致力于探究绿色环保的水体重金属污染处理方法,本文以生物废弃材料花生壳作为原料,添加了具有丰富官能团和较大表面积的氧化石墨烯,利用共沉淀法制备出了一种新型的Fe3O4-GO-PSC磁性复合材料。采用X射线光电子能谱仪、傅里叶变换红外光谱仪、扫描电镜及比表面分析仪等辅助分析技术,对Fe3O4-GO-PSC的结构进行了表征。探究了不同条件下复合材料对Pb2+的吸附效果并初探了其吸附机理。实验发现:当pH=5,反应时间为30 min、温度为40℃以及Pb2+浓度为40 mg/L时去除效果最佳,吸附率达到97.56%。水体共存离子的种类和浓度均会对Pb2+的吸附造成不同程度的影响。吸附动力学与准二级动力学方程拟合一致,吸附热力学与Langmuir吸附模型一致,最大吸附量为140.25 mg/g。该研究所开发的Fe3O4-GO-PSC吸附剂对Pb2+的去除能力明显优于商业AC吸附剂...  相似文献   

4.
王秋实  贺军辉 《应用化学》2020,37(11):1316-1323
设计和合成吸附速率快、选择性好的吸附富集材料对Hg2+的高效吸附和精确检测具有重要意义。 本文中,采用简单、经济的策略制备了磁性硫化铜复合纳米材料(Fe3O4@SiO2@CuS),并且通过一系列吸附实验考察了核-壳结构的Fe3O4@SiO2@CuS对水溶液中Hg2+的吸附性能。 结果表明,Fe3O4@SiO2@CuS显示出了快速的吸附富集速率和良好的吸附容量。 同时,在多种金属离子共存的情况下,该材料表现出了优异的吸附选择性,Hg2+吸附率高达99.9%。 由于该材料具备磁性,因此通过外加磁场即可实现吸附剂与水体简便快速的分离。 以上结果表明,磁性金属硫化物纳米材料在吸附富集和检测领域具有良好的应用前景。  相似文献   

5.
以磁性二氧化硅(Fe2O3@SiO2)为基质,利用表面原子转移自由基聚合技术(SI-ATRP),在改性后的Fe2O3@SiO2内表面接枝甲基丙烯酸十八烷基酯(SMA)、外表面接枝甲基丙烯酸缩甘油酯(GMA),酸解后得到磁性反相限进材料Fe2O3@SiO2-SMA-GMMA,并通过扫描电镜(SEM)、X射线衍射(XRD)、透射电镜(TEM)、振动样品磁强计(VSM)和元素分析对其进行表征。研究表明,Fe2O3@SiO2-SMA-GMMA对牛血清白蛋白(BSA)的排阻能力为90.4%;对磺胺异恶唑(SIZ)、磺胺二甲氧基嘧啶(SDM)、甲氧苄啶(TMP)和磺胺甲基嘧啶(SMR)的最大吸附量分别为2.76、2.24、1.51和1.34 mg/g。Fe2O3@SiO2-SMA-GMMA应用于牛奶和牛血清样品中SIZ、SMR和SDM的分离富集,SIZ、SMR和SDM的加标回收率为88.7%~90.8%,相对标准偏差为3.3%~5.3%。磁性反相限进材料可简化生物基质样品的前处理过程,对血液样品或食品样品等领域的分析检测具有重要价值。  相似文献   

6.
通过原位反应合成法成功合成了一种新型水溶性的磁性荧光复合纳米粒子Fe3O4@SiO2@ZrO2:Tb3+,并通过扫描电子显微镜(SEM)、X射线粉末衍射仪(XRD)、红外光谱仪(FT-IR)、磁性测试仪和荧光(PL)光谱对其形貌、尺寸、相组成、磁性和荧光性能进行了表征。 结果表明,核(Fe3O4@SiO2)壳(ZrO2:Tb3+)结构组成的磁性荧光复合纳米粒子具有超顺磁性,其饱和磁化强度达到36 emu/g,并且在494 nm(5D47F6)、549 nm(5D47F5)、587 nm(5D47F4)和625 nm(5D47F3)处具有4个Tb3+特有的荧光发射光谱带峰值。 磁性荧光双功能的复合纳米粒子在生物医学领域具有潜在的应用价值。  相似文献   

7.
曹向宇  李垒  陈灏 《化学学报》2010,68(15):1461-1466
采用改进的氧化沉淀法在羧甲基纤维素(CMC)体系中制备了以磁性纳米Fe3O4为核心, 外层包覆羧甲基纤维素的复合磁性纳米材料. 用透射电镜、X射线衍射、红外光谱、Zeta电位和震动样品磁强计对复合纳米Fe3O4进行了表面形貌、结构和磁学的表征. 在此基础上研究了复合纳米Fe3O4对Cu2+的吸附性能, 探讨了溶液pH、反应时间和 Cu2+的初始浓度对其吸附性能的影响. 实验结果表明, 复合Fe3O4粒子为反尖晶石型, 平均粒径在40 nm左右, 羧甲基纤维素在Fe3O4粒子表面是化学吸附, 复合Fe3O4粒子的饱和磁化强度为36.74 emu/g, 在中性溶液中Cu2+的吸附量最高, 吸附平衡时间为1.5 h, 二级动力学模型能够很好地拟合吸附动力学数据, 吸附等温数据符合Langmuir模型. 复合纳米Fe3O4对Cu2+的吸附机理主要为表面配位反应.  相似文献   

8.
采用溶剂热法和溶胶-凝胶法制备了顺磁性Fe3O4@SiO2颗粒,以Pickering乳液界面保护法实现颗粒表面分区获得Fe3O4@SiO2 Janus颗粒,进一步选区复合生长Pt或Ag纳米颗粒制备Fe3O4@SiO2-Pt和Fe3O4@SiO2-Ag Janus颗粒.Fe3O4@SiO2-Pt Janus颗粒的Pt一侧进行催化过氧化氢的反应,具有自驱动功能.因其顺磁性和两亲性,Fe3O4@SiO2-Ag Janus颗粒能够作为磁响应颗粒乳化剂稳定油水乳液,并将Ag的催化功能引入界面.  相似文献   

9.
采用水解三氯化铁得到Fe3O4磁核,然后水解四乙氧基硅烷(TEOS)得到Fe3O4@SiO2,再在其表面包覆半导体CdS即可得到良好的磁性光电信标Fe3O4@SiO2@CdS。材料形貌、组成分析及光电化学测试表明成功地合成了具有超顺磁性的Fe3O4@SiO2@CdS纳米复合材料。该材料分散均匀、具有良好的光学性能、在光电化学传感及光电催化等领域具有良好的应用前景。  相似文献   

10.
袁洋  王佳新  曹玉华 《电化学》2019,25(6):757-763
采用表面印迹技术,以磁性二氧化硅纳米粒子(Fe3O4@SiO2 NPs)作为载体、血红蛋白(Hb)为模板分子、正硅酸乙酯(TEOS)为印迹聚合物单体,制备了Hb印迹Fe3O4@SiO2的磁性印迹纳米粒子(MMIPs NPs). MMIPs NPs具有磁性内核和血红蛋白印迹壳层的核壳结构,可以富集并固定Hb. 使用壳聚糖将MMIPs NPs固定于磁性电极表面,构建血红蛋白类酶生物传感器,研究了Hb对过氧化氢(H2O2)的催化活性. MMIPS NPS相比于磁性非印迹纳米粒子(MNIPS NPS),催化电流增加了14.3%. 采用磁性电极,MMIPS NPS、Hb和O2的顺磁性使得该类酶生物传感器对H2O2的催化电流增加了60.0%. 血红蛋白类酶生物传感器电流响应与H2O2浓度在25 ~ 200 μmol·L-1间呈线性关系,检出限为3 μmol·L-1(S/N=3),表明该类酶传感器对H2O2具有良好的催化性能.  相似文献   

11.
周春于  杨俊玲  于振东 《化学通报》2018,81(10):914-918,923
以废弃的虾壳为原料制备壳聚糖,以壳聚糖为壳、磁性Fe_3O_4为核、液体石蜡为分散剂、T-80为乳化剂、戊二醛为交联剂制备了纳米Fe_3O_4@壳聚糖材料。利用扫描电镜、热重分析仪、红外光谱仪、X射线衍射仪对其进行了表征。结果显示,纳米Fe_3O_4@壳聚糖材料为表面光滑的球形结构,直径约75.82nm,壳聚糖和Fe_3O_4的质量比为2∶1。吸附动力学实验研究表明,纳米Fe_3O_4@壳聚糖材料对Cu~(2+)吸附符合准二级动力学,以化学吸附为主,平衡吸附容量为17.32mg/g。吸附等温线实验研究表明,吸附符合Freundlic模型,纳米Fe_3O_4@壳聚糖材料与Cu~(2+)之间的交互作用强烈,最大吸附容量为213.68mg/g。  相似文献   

12.
A series of granular pH-sensitive semi-interpenetrating polymer network (semi-IPN) hydrogels based on chitosan (CTS), acrylic acid (AA) and gelatine (GE) were utilized for the adsorption and recycle of Pb(II) from aqueous solutions. The composite hydrogels have been characterized by FT-IR and TGA. The effects of contact time, pH value and initial Pb(II) concentration on the adsorption were investigated. Results indicated that the adsorption capacity of the hydrogel increased with increasing pH value and initial Pb(II) concentration, and a pH-sensitive adsorption characteristic was presented. The adsorption rate of the semi-IPN hydrogels on Pb(II) is fast with an adsorption rate constant of 14.9790 mg/(g·s), and adsorption equilibrium could be reached within 10 min. The adsorption isotherms of the hydrogels for Pb(II) could be described well by the Langmuir equation, rather than the Freundlich equation. The as-prepared hydrogels showed good reusability with 0.05 mol/l HNO3 solutions as the desorbing agent and 0.1 mol/l NaOH solutions as the regeneration agent, respectively. After five consecutive adsorption-desorption processes, the semi-IPN hydrogel with 20 wt% GE may reach 85.26% of its initial adsorption capacity. In addition, the adsorbed Pb(II) can be quantitatively recovered by simply eluting the hydrogel with dilute HNO3 solution, and a recovery ratio of 89.27% was reached for the semi-IPN hydrogel. The satisfactory adsorption amount is mainly derived from the chelating of functional groups (i.e. –COO? and –NH2) with Pb(II) ions. The hydrogel adsorbents exhibited excellent affinity for Pb(II), and can be applied to treat wastewater containing heavy metal ion and simultaneously recover the valuable metal sources.  相似文献   

13.
过渡元素杂多钨硅酸盐氧化还原性质的研究   总被引:7,自引:0,他引:7  
本文通过极谱和循环伏安法,结合紫外光谱和X射线光电子能谱,研究了过渡元素钨硅杂多酸盐Kn[SiM(H2O)W11O39](M=Mn^2^+,Fe^3^+,Co^2^+,Ni^2^+,Zn^2^+,Cd^2^+)在溶液中的氧化还原性质,提出了它们的还原机理.杂多阴离子的极谱半波还原电位E1/2的顺序为Ni^2^+>Co^2^+>Zn^2^+>Fe^2^+>Mn^2^+,发现杂多阴离子的E1/2与其组分中的过渡元素的电负性X和过渡金属离子与水合电子反应速率常数的对数logke-分别有线性关系,讨论了过渡元素对杂多阴离子氧化还原性的影响.  相似文献   

14.
合成了两种磺酰胺类化合物, 并研究了其荧光性能. 通过它们对金属阳离子的选择性识别实验, 发现其在乙醇水溶液中均对Fe3+有专一性的识别作用, 并在NH2OH·HCl和H2O2的存在下, 两种化合物对Fe3+都具有氧化-还原荧光“开-关”作用.  相似文献   

15.
HUANG  Mian-Li YU  Yan 《结构化学》2011,30(9):1348-1354
A novel wastewater purification material was prepared by a hydrothermal method. It was mainly made from oyster shells with the merits of long service time, large surface area, high lead removal efficiency and excellent recyclable properties. The technological conditions were decided respectively based on the lead removal efficiencies. At pH = 5 and 30 ℃, for the wastewater with the initial concentration of Pb2+ to be 5 mg/L, adsorption time 24 h, and 1 mg to 40 mL of mass ratio between adsorbent and Pb2+, the maximum adsorption capacity can reach 0.19 mg/g. The lead removal material prepared by hydrothermal method has excellent recycle performance. The equilibrium adsorption capacity can get to 9.71 mg/g and the average Pb2+ removal rate is as high as 66.39%. After reusing for 60 times, the SEM observation shows that the hydrates of reticular formation is formed after hydrothermal modification, which provides a good attachment position for Pb2+, indicating the physical adsorption is dominant.  相似文献   

16.
在以共沉淀法制备的磁性纳米Fe3O4粒子(Magnetic nanoparticles, MNP)表面进行了化学修饰, 制备了一种新型富含羧基功能团的核壳磁性纳米吸附剂(Carboxylic functionalized Fe3O4 magnetic nanoparticles, CMNP). 利用透射电子显微镜(TEM)、 X射线衍射仪(XRD)、 X射线能量色散谱(EDS)、 振动样品磁强计(VSM)、 傅里叶变换红外光谱(FIIR)和热重分析仪(TGA)对CMNP的形貌、 结构、 化学组成和磁性能进行了表征, 并考察了吸附剂对Cu2+的吸附性能, 研究了溶液pH值、 吸附时间和Cu2+初始浓度对吸附性能的影响. 结果表明, 羧基化核壳磁性纳米Fe3O4颗粒的平均粒径为15 nm, 具有良好的超顺磁性, 饱和磁化强度为41.84 A·m2/kg, 在10 min中内可达到吸附平衡, 在pH=7.0时吸附量最高, 吸附等温数据符合Langmuir模型, 饱和吸附量qm= 43.48 mg/g.  相似文献   

17.
Layered LiNi1/3Co1/3Mn1/3O2 has the isostructure of α-NaFeO2 and shows high rate capacity with stable cycleability. Furthermore, the thermal behavior of this material is milder than that of lithium nickel oxide and lithium cobalt oxide. In addition, it is expected to be stable at elevated temperatures. Therefore LiNi1/3Co1/3Mn1/3O2 may be the most promising cathode materials of lithium-ion secondary battery.In this research, LiNi1/3Co1/3Mn1/3O2 was prepared by solid-state reaction, sol-gel method and mixed hydroxide method. The influences of synthesis method on the physical and electrochemical properties of LiNi1/3Co1/3Mn1/3O2 were characterized by means of X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), scanning electron microscope (SEM), charge/discharge cycling cyclic voltammetry and differential scanning calorimetry (DSC). XPS studies show that the predominant oxidation states of Ni, Co and Mn in the LiNi1/3Co1/3Mn1/3O2 compound are 2+, 3+ and 4+. From the voltage profile and cyclic voltammetry, the redox processes occurring at ~3.8V and ~4.5V are assigned to the Ni2+/Ni3+ and Co3+/Co4+ couples, respectively. Different preparation methods result in the difference in morphology (shape, particle size and specific surface area) and electrochemical behaviors. A sample prepared by solid-state reaction has the worst electrochemical performance among these three methods. Sample synthesized by mixed hydroxide method displays the better rate capacity than that prepared by sol-gel method, while the capacity retention of sample prepared by sol-gel method is superior to that synthesized by mixed hydroxide method.  相似文献   

18.
The adsorption of Co2+ ions from nitrate solutions using iron oxide nanoparticles of magnetite (Fe3O4) and maghemite (gamma-Fe2O3) has been studied. The adsorption of Co2+ ions on the surface of the particles was investigated under different conditions of oxide content, contact time, solution pH, and initial Co2+ ion concentration. It has been found that the equilibrium can be attained in less than 5 min. The maximum loading capacity of Fe3O4 and gamma-Fe2O3 nanoparticles is 5.8 x 10(-5) and 3.7 x 10(-5) mol m(-2), respectively, which are much higher than the previously studied, iron oxides and conventional ion exchange resins. Co2+ ions were also recovered by dilute nitric acid from the loaded gamma-Fe2O3 and Fe3O4 with an efficiency of 86 and 30%, respectively. That has been explained by the different mechanisms by including both the surface and structural loadings of Co2+ ions. The surface adsorption of Co2+ on Fe3O4 and gamma-Fe2O3 nanoparticles has been found to have the same mechanism of ion exchange reaction between Co2+ in the solution and proton bonded on the particle surface. The conditional equilibrium constants of surface adsorption of Co2+ on Fe3O4 and gamma-Fe2O3 nanoparticles have been determined to be log K=-3.3+/-0.3 and -3.1+/-0.2, respectively. The structural loading of Co2+ ions into Fe3O4 lattice has been found to be the ion exchange reaction between Co2+ and Fe2+ while that into gamma-Fe2O3 lattice to fill its vacancy. The effect of temperature on the adsorption of Co2+ was also investigated, and the value of enthalpy change was determined to be 19 kJ mol(-1).  相似文献   

19.
以二氧化硅包覆的磁性氧化石墨烯为载体, 利用热聚合方法制备了对四溴双酚A(TBBPA)有特异吸附效果的新型磁性印迹复合材料. 采用透射电子显微镜(TEM)、 扫描电子显微镜(SEM)、 傅里叶变换红外光谱(FTIR)、 热重分析(TGA)和样品振动磁强计(VSM)对该印迹复合材料进行了表征. 结果表明, 在氧化石墨烯表面制备了一层厚度为55~65 nm、 热稳定良好的磁性印迹层. 结合磁固相萃取技术(M-SPE)和高效液相色谱(HPLC)检测技术研究了该磁性印迹复合材料对四溴双酚A的吸附行为, 结果表明该印迹复合材料对四溴双酚A具有良好的选择吸附能力, 最大吸附量为16.33 mg/g. 结合HPLC检测技术, 该印迹复合材料可用于分离富集饮用水中的四溴双酚A.  相似文献   

20.
The feasibility of using two important and common clay minerals, kaolinite and montmorillonite, as adsorbents for removal of toxic heavy metals has been reviewed. A good number of works have been reported where the modifications of these natural clays were done to carry the adsorption of metals from aqueous solutions. The modification was predominantly done by pillaring with various polyoxy cations of Zr4+, Al3+, Si4+, Ti4+, Fe3+, Cr3+or Ga3+, etc. Preparation of pillared clays with quaternary ammonium cations, namely, tetramethylammonium-, tetramethylphosphonium- and trimethyl-phenylammonium-, N'-didodecyl-N, N'-tetramethylethanediammonium, etc, are also common. Moreover, the acid treatment of clays often boosted their adsorption capacities. The adsorption of toxic metals, viz., As, Cd, Cr, Co, Cu, Fe, Pb, Mn, Ni, Zn, etc., have been studied predominantly. Montmorillonite and its modified forms have much higher metal adsorption capacity compared to that of kaolinite as well as modified-kaolinite.  相似文献   

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