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1.
海洪  杨峰  李建平 《分析化学》2012,40(6):841-846
合成了Fe3O4@Au磁性纳米粒子,并根据单链寡聚核苷酸(ss-DNA)杂交原理,利用量子点电化学发光,构建了DNA电化学传感器.在磁控玻碳电极(MCGCE)表面,将5′-SH-ssDNA捕获探针自组装在Fe3O4@Au磁性纳米粒子上,然后与目标DNA互补的一端杂交形成dsDNA,再与双标记了量子点的5′-NH2-ssDNA-NH2-3′信号探针杂交形成三明治杂交的DNA.应用循环伏安法对DNA的固定与杂交进行了表征.目标DNA浓度在1.0×10-13~1.0×10-11 mol/L范围与其响应的ECL信号呈线性关系,检出限为1.8×10-14mol/L.由于采用量子点双标记法,检测的灵敏度显著提高.  相似文献   

2.
磁性纳米粒子固定辣根过氧化物酶的生物传感器   总被引:1,自引:0,他引:1  
袁永海  李建平 《分析化学》2007,35(7):1078-1082
利用FeSO4与FeCl3合成了磁性Fe3O4纳米粒子,并进一步利用3-氨丙基-3-乙氧基硅烷(APS)和戊二醛溶液将辣根过氧化物酶共价固定于该磁性纳米粒子表面,研究了该磁性颗粒的磁学性能,通过磁力将其修饰于固体石蜡碳糊电极表面制成了酶修饰电极。考察了该传感器对H2O2的电化学响应。该生物传感器可对H2O2进行测定,线性范围为1.2×10-7~8.3×10-5mol/L;检出限为4.5×10-8mol/L。利用磁性纳米粒子所制得的酶修饰电极具有催化性能高、稳定性好、造价低和修饰层易更新等优点,有望得到更多的实际应用。  相似文献   

3.
本文基于磁性粒子(MB)良好的分离、富集能力,研究了硫化铜纳米粒子标记的流动注射-化学发光(FI-CL)DNA检测体系.通过硫化铜标记的探针1与目标DNA及连有磁球的探针2形成三明治结构,实现对目标DNA的捕获、分离与标记;通过其溶解释放出CuS标记颗粒的铜离子,引起化学发光信号增强,实现了目标DNA序列的定性定量检测.该方法对完全互补单链DNA(ssDNA)检测的线性范围为1.0×10-11~1.6×10-9 mol/L,检出限为3.0×10-12 mol/L,对1.0×10-9 mol/L目标DNA测定的相对标准偏差为3.2%(n=11),对目标碱基序列具有良好的识别能力.  相似文献   

4.
以辛可宁为模板分子、十二烷基硫醇为功能单体,在Fe3 O4@Au纳米粒子表面自组装辛可宁分子印迹膜,构建了新型磁性粒子-分子印迹电化学发光传感器。通过透射电子显微镜对磁性纳米粒子的粒径分布及形貌进行了表征,使用红外光谱对比分析了辛可宁、分子印迹膜洗脱前和洗脱后的结构及成分。结果表明,在最优的实验条件下(0.012 mol/L 硼砂缓冲溶液(pH 9.5),0.8 mmol/L Ru(bpy)2+3),辛可宁浓度的对数在1×10-10~9×10-8 mol/L范围内,与电化学发光强度变化值有良好的线性关系,检出限为3.5×10-11 mol/L。此传感器灵敏度高、选择性好、易于更新,将其用于血清样品的检测,方法回收率为98.8%~104.7%。  相似文献   

5.
朱化雨  张利  陈怀成  闫圣娟 《分析化学》2012,40(10):1549-1554
利用巯基乙胺将合成的金纳米粒子氨基化;基于纳米粒子负载羧基化的联吡啶钌和巯基DNA制得电化学发光信号探针;采用酶循环信号放大技术,获得大量含新增DNA的溶液来捕获信号探针;以金电极为载体,将巯基DNA自组装到电极表面,依次杂交互补DNA和信号探针,构建电化学发光生物传感器.在优化的条件下,此传感器对凝血酶具有良好的响应,在3.0× 10-13~6.0×10-11 mol/L范围内,凝血酶的浓度与发光强度呈良好的线性关系,检出限为1.8× 10-13 mol/L(3a).采用酶切循环放大技术制备的生物传感器具有灵敏度高,选择性和重现性良好等特点.  相似文献   

6.
采用化学共沉淀技术制备磁性Fe3O4-Au纳米粒子复合物(Fe3O4-AuNPs),并以此磁性纳米复合物和碳纳米管(CNTs)构建用于快速检测对氧磷的乙酰胆碱酯酶(AChE)生物传感器。通过磁力作用将Fe3O4-AuNPs纳米粒子固定在自制的磁铁/玻碳电极(MGCE)上,并以此作为AChE的载体。分别通过X射线衍射、振动样品磁强和透射电镜表征了磁性纳米粒子复合物Fe3O4-AuNPs的成分、磁性及其形貌特征。利用电化学交流阻抗(EIS)、循环伏安法和微分脉冲伏安法(DPV)表征了自制的MGCE修饰电极以及生物传感器(AChE/Fe3O4-AuNPs/CNTs/MGCE)的电化学特征,建立了用该生物传感器微分脉冲伏安法检测对氧磷的方法。在最佳实验条件下,酶抑制率与对氧磷浓度的对数在3.6×10-6~2.9×10-2mol/L范围内呈线性关系,检出限为1.6×10-7mol/L。用提出的方法对实际水样中的对氧磷进行加标回收实验,回收率为98.0%~107%。  相似文献   

7.
以水热法合成十六烷基三甲基溴化铵(CTAB)修饰的PbSe纳米粒子。在碳糊电极表面制备的PbSe纳米粒子壳聚糖(CHIT)复合膜上,实现了DNA的固定和杂交,并用循环伏安法和电化学交流阻抗法进行了表征。应用电活性分子亚甲紫(MV)作为杂交指示剂,以微分脉冲伏安法对转基因植物CaMV35S启动子基因片段进行测定,检测范围为5.0×10-11~5.0×10-6mol/L;检出限为1.6×10-11mol/L(3σ)。该传感器能很好地识别DNA互补序列、非互补序列和2碱基错配序列。  相似文献   

8.
在碳糊电极表面制备的纳米金/TiO2中空微球复合膜可以极大地提高DNA检测的灵敏度.应用循环伏安法和电化学交流阻抗谱法研究了纳米金和TiO2中空微球在碳糊电极上的固载,并用[Fe(CN)6]3-/4-作为指示剂以电化学交流阻抗谱法表征了DNA的杂交.此DNA电化学生物传感器成功检测了来自于花椰菜花叶病毒的35S启动子基因的DNA特定序列,其动力学检测范围为1.0×10-12~1.0×10-8mol/L,检测限为2.3×10-13mol/L;同时对从一种转基因大豆中提取的外源基因胭脂碱合成酶基因终止子的聚合酶链式反应(PCR)扩增产物进行了检测,得到了满意的结果.  相似文献   

9.
本文构建了一种基于纳米粒子、茎环DNA和丝网印刷电极(SPCE)的电化学生物传感技术用于乳腺癌基因的快速、灵敏检测。该传感技术中,探针DNA的两端分别标记了巯基和生物素,巯基用于与金纳米粒子(AuNPs)作用,生物素用于与磁性纳米颗粒(MNPs)表面修饰的链酶亲和素作用以达到富集的目的,之后利用SPCE进行电化学检测。无目标DNA存在时,双标记DNA保持茎环结构,使得生物素分子很难和MNPs上的亲和素接触。一旦加入目标DNA,茎环结构打开,生物素得以与MNPs上的链霉亲和素发生特异性结合,形成的复合物(MNPs-DNA-AuNPs)通过磁性富集到SPCE表面,从而获得AuNPs的电化学信号。该DNA电化学生物传感对单碱基错配有良好的分辨能力,完全互补DNA的检出限为8.0×10-13 mol/L。  相似文献   

10.
通过层层自组装的方法,在中性条件下利用静电作用将Fe3O4纳米粒子组装到修饰了高分子聚电解质的CaCO3多孔微米球上。该复合材料具有好的生物相容性、导电性、磁性和稳定性。将血红蛋白酶固定到该复合材料上,进而制备得到血红蛋白(Hb)-Fe3O4-CaO3复合物修饰玻碳电极,并在该修饰电极上实现了Hb与电极之间的直接电化学。该生物传感器对H2O2的还原具有较好的响应,线性范围为3.0×10-6~5.3×10-5 mol/L,检测限为8.9×10-7 mol/L。  相似文献   

11.
A number of materials are studied in the field of magnetic hyperthermia. In general, the most promising ones appear to be iron oxide particle nanosystems. This is also indicated in some clinical trial studies where iron-based oxides were used. On the other hand, the type of material itself provides a number of variations on how to tune hyperthermia indicators. In this paper, magnetite nanoparticles in various forms were analyzed. The nanoparticles differed in the core size as well as in the form of their arrangement. The arrangement was determined by the nature of the surfactant. The individual particles were covered chemically by dextran; in the case of chain-like particles, they were encapsulated naturally in a lipid bilayer. It was shown that in the case of chain-like nanoparticles, except for relaxation, a contribution from magnetic hysteresis to the heating process also appears. The influence of the chosen methodology of magnetic field generation was also analyzed. In addition, the influence of the chosen methodology of magnetic field generation was analyzed. The application of a rotating magnetic field was shown to be more efficient in generating heat than the application of an alternating magnetic field. However, the degree of efficiency depended on the arrangement of the magnetite nanoparticles. The difference in the efficiency of the rotating magnetic field versus the alternating magnetic field was much more pronounced for individual nanoparticles (in the form of a magnetic fluid) than for systems containing chain nanoparticles (magnetosomes and a mix of magnetic fluid with magnetosomes in a ratio 1:1).  相似文献   

12.
有机磁合成化学研究进展   总被引:11,自引:0,他引:11  
陆模文  胡文祥 《有机化学》1997,17(4):289-294
通过磁场对聚合反应、酯化反应、光还原反应和不对称合成等的影响,论述了有机磁化学的理论研究和应用进展。磁场在一定程度上影响有机反应的反应速率、产率、反应途径和产物构成。同时初步探讨了磁场影响化学反应速率的机理,并展望了磁化学的发展前景。  相似文献   

13.
Magnetic nano- and microparticles in biotechnology   总被引:1,自引:0,他引:1  
Both synthetic and biologically produced magnetic nano- and microparticles exhibit several types of responses to external magnetic field which have been already employed in various areas of biosciences, biotechnology, medicine, environmental technology, etc. This short review shows selected important biotechnological applications of magnetic particles, and the biological processes leading to biogenic magnetic particles formation. Presented at the 1st Nanomaterials and Nanotechnology Meeting, Nano Ostrava, Ostrava, Czech Republic, 1–4 September 2008.  相似文献   

14.
Cu(hfac)2 chain polymer heterospin complexes with pyrazole-substituted nitronylnitroxides (LR, where R = Me, Et) with a composition Cu(hfac)2LR, exhibiting structural rearrangements with magnetic effects in the solid state at reduced temperatures, were studied by magnetic resonance. The magnetic resonance spectrum changes substantially for substituents of different types. The results of this study are discussed in the context of the cluster approach in view of the specific crystal structure of the compounds.  相似文献   

15.
In the diamond industry, ferrofluids are used in ferrohydrostatic separators for the density separation of diamonds from gangue material. The size of the magnetic core of the coated particles forming the ferrofluid suspension is vital in ensuring the stability of the fluid. The particle size must be small enough such that sedimentation does not occur in a magnetic field gradient and under the influence of a gravitational field and such that magnetic agglomeration can be overcome. This paper discusses the particle size requirements for fluid stability under the influence of these effects.  相似文献   

16.
Anisotropy counts: A brief review of the main physical properties of elongated magnetic particles (EMPs) is presented. The most important characteristic of an EMP is the additional contribution of shape anisotropy to the total anisotropy energy of the particle, when compared to spherical magnetic particles. The electron micrograph shows Ni‐ferrite microrods fabricated by the authors.

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17.
Magnetic nanoadsorbents using Fe3O4 nanoparticles as cores and poly(methyl acrylic acid) (PMAA) as ionic exchange groups were prepared through our novel approach. Two steps were involved in this approach: the first was to functionalize the magnetic nanoparticles (MNPs) with methacrylate double bonds via the combination of ligand exchange and condensation of methacryloxypropyltrimethoxysilane(MPS); the second was to graft PMAA chains onto the surface of MNPs through radical polymerization. The success of the various surface functionalization steps was ascertained using FTIR and XPS. The as‐synthesized PMAA‐coated MNPs were effective in binding bovine serum albumin (BSA) with a high capacity of 1 300 mg · g−1.

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18.
双层表面活性剂分散制备水基磁流体   总被引:20,自引:0,他引:20  
Fe3O4 magnetic particles were synthesize by chemical co-precipitation. Sodium oleate and poly(ethylene glycol)-4000 were used as bilayer surfactants to envelope the ultra-fine Fe3O4 particles. Then stabilized water base magnetic fluid was obtained. Experiments indicated that surfactants and pH value of the solution had great effect on the stability and size of the magnetic fluid when Fe3O4 particles were synthesized and enveloped. It was the first time to employ this method to prepare magnetic fluid. Using laser diffraction particle size analyzer we found that the average diameter of magnetic fluid was lessen than 84 nanometer. Its magnetization was measured on magnetic balance and the result amounted to 3.84×103A·m-1. Further more, XRD and IR analysis measurements were employed to substantiate the existence of Fe3O4 and surfactant structure. The magnetic fluid can be used as tar-geted-part of nanometer targeted drug delivery system.  相似文献   

19.
This study aims to develop an effective method to control motile microorganisms and enable their manipulation as functional ‘live micro/nano robots'. A novel strategy based on Fe3O4 nanoparticle‐doped alginate hydrogel is developed to fashion an artificial extracellular matrix (ECM) for microbial cells (e.g., Saccharomyces cerevisiae and Flavobacterium heparinum). During this strategy, a single layer of alginate hydrogel is coated around the microbial cells doped with Fe3O4 nanoparticles to form the alg‐mag‐cells. Transmission electron microscopy shows that Fe3O4 nanoparticles are uniformly distributed in the hydrogel shell. Together with maintaining the cell activity and metabolism, the hydrogel coated microbial cells demonstrate high magnetic responsiveness in an external magnetic field and are able to form micro‐scaled patterns using the magnetic template designed in this study. This strategy provides a building block to fabricate advanced biological models, medical therapeutic products, and non‐medical biological systems using different microorganisms.

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20.
Polarized neutron diffraction (PND) experiments were carried out at low temperature to characterize with high precision the local magnetic anisotropy in two paramagnetic high‐spin cobalt(II) complexes, namely [CoII(dmf)6](BPh4)2 ( 1 ) and [CoII2(sym‐hmp)2](BPh4)2 ( 2 ), in which dmf=N,N‐dimethylformamide; sym‐hmp=2,6‐bis[(2‐hydroxyethyl)methylaminomethyl]‐4‐methylphenolate, and BPh4?=tetraphenylborate. This allowed a unique and direct determination of the local magnetic susceptibility tensor on each individual CoII site. In compound 1 , this approach reveals the correlation between the single‐ion easy magnetization direction and a trigonal elongation axis of the CoII coordination octahedron. In exchange‐coupled dimer 2 , the determination of the individual CoII magnetic susceptibility tensors provides a clear outlook of how the local magnetic properties on both CoII sites deviate from the single‐ion behavior because of antiferromagnetic exchange coupling.  相似文献   

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