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1.
采用溶剂热法制备了单分散Mn0.6Zn0.4Fe2O4磁性亚微米球, 研究了反应工艺参数对磁性亚微米球结构形貌、 直径和静磁性能的影响规律. 研究发现, 随着反应时间的延长, 体系中的金属离子首先水解沉淀, 形成羟基氧化铁及Mn, Zn氢氧化物, 然后脱水转化为Mn0.6Zn0.4Fe2O4球形纳米粒子, 这些纳米粒子发生团聚, 形成结构疏松、 大小不均匀的亚微米粒子, 最后通过Ostwald熟化过程, 形成致密的单分散亚微米球. 降低反应溶液的pH值、 增加乙二醇或聚乙二醇的用量, 均会使亚微球的直径增大, 并可在150~500 nm范围内调控微球的粒径; 但组成磁性亚微球的纳米粒子的粒径逐渐减小, 产物的饱和磁化强度增大, 矫顽力和剩磁减小.  相似文献   

2.
疏水性磁性微球的制备及对盐藻的吸附研究   总被引:1,自引:0,他引:1  
采用疏水性材料制备微米级磁性微球,并应用于对盐藻的吸附分离研究,考察了pH值,吸附作用时间,NaCl浓度以及磁性微球添加量对盐藻吸附的影响.结果显示磁性微球对盐藻的吸附受溶液的离子强度影响较大;pH值在一定范围内对盐藻的吸附有较大影响;延长吸附作用时间和加大磁性微球的添加量可以增加对盐藻的吸附量.通过调节pH和施加机械搅拌,磁性微球上吸附的盐藻可以很好被洗脱下来,磁性微球可以多次重复使用.  相似文献   

3.
单分散亚微米级磁性微球的合成   总被引:14,自引:1,他引:14  
以磁性氧化铁胶体粒子为种子粒子,采用吸附-溶胀法,进行苯乙烯-丙烯酸-二乙烯基苯的乳液聚合,制备亚微米级磁性高分了微球。研究了分散介质、丙烯酸、种子粒子、苯乙烯和PH调节剂等因素对聚合行为和磁性微球的影响,成功地合成了平均粒径为0.13和0.27μm、单分散性很好的磁性微球。  相似文献   

4.
 采用种子乳液聚合方法制得了微米尺度的高磁性物质含量的磁性复合微球.聚合体系中,以0.7~0.8 μm的Fe3O4磁性聚集体细乳液作为种子,将苯乙烯,二乙烯基苯作为聚合单体加入到磁性聚集体细乳液中,对Fe3O4磁性聚集体进行溶胀后进行聚合.研究了聚合过程中,溶胀时间对复合微球形貌和磁性物质含量的影响,获得系列形貌微球.通过透射电镜(TEM)、热重分析(TGA)、红外分析(FTIR)、振动样品磁强计(VSM)等表征手段对所制备的磁性聚合物微球进行分析表征.结果显示,所得到的磁性聚合物微球粒度为0.7~1 μm,尺寸分布较均一,具有超顺磁性,磁性物质含量为29 wt%~57 wt%.然后又通过丙烯酸和苯乙烯共聚对微球表面羧基功能化后,得到了表面羧基密度为0.92 mmol/g的微球,再将所制备的微球与生物分子偶联后(以hCG作为模式待检分子),在化学发光免疫检测上进行了初步的应用,取得到了较好的应用结果.  相似文献   

5.
分散聚合中溶剂回收利用的可行性   总被引:1,自引:0,他引:1  
微米级单分散聚苯乙烯微球;分散聚合中溶剂回收利用的可行性  相似文献   

6.
亚微米级免疫磁球及其在细菌分离中的应用   总被引:1,自引:0,他引:1  
以亚微米级的单分散磁性微球为基础,制备出了表面包被有沙门氏菌抗体的免疫磁球. 利用表面电位、荧光和ELISA等方法研究了抗体在磁性微球表面的吸附行为. 在沙门氏菌磁分离实验中,通过调节投料抗体的浓度,研究了免疫磁球表面抗体浓度和磁分离效率的相关性,与微米级商品化免疫磁球的对比中,亚微米级的免疫磁球表现出了更高的磁分离效率.  相似文献   

7.
采用种子乳液聚合方法制得了微米尺度的高磁性物质含量的磁性复合微球.聚合体系中,以0.7~0.8 μm的Fe3O4磁性聚集体细乳液作为种子,将苯乙烯,二乙烯基苯作为聚合单体加入到磁性聚集体细乳液中,对Fe3O4磁性聚集体进行溶胀后进行聚合.研究了聚合过程中,溶胀时间对复合微球形貌和磁性物质含量的影响,获得系列形貌微球.通过透射电镜(TEM)、热重分析(TGA)、红外分析(FTIR)、振动样品磁强计(VSM)等表征手段对所制备的磁性聚合物微球进行分析表征.结果显示,所得到的磁性聚合物微球粒度为0.7~1 μm,尺寸分布较均一,具有超顺磁性,磁性物质含量为29 wt%~57 wt%.然后又通过丙烯酸和苯乙烯共聚对微球表面羧基功能化后,得到了表面羧基密度为0.92 mmol/g的微球,再将所制备的微球与生物分子偶联后(以hCG作为模式待检分子),在化学发光免疫检测上进行了初步的应用,取得到了较好的应用结果.  相似文献   

8.
分散聚合法制备液相芯片聚苯乙烯磁性复合微球的研究   总被引:1,自引:0,他引:1  
本文将丙烯酸基磁流体均匀分散到苯乙烯单体中,采用分散聚合法制备出了适于构建液相芯片微球载体的单分散性微米级磁性微球.考察了丙烯酸基磁流体预处理时间、加料顺序和单体量对微球形貌和粒径分布的影响及其条件优化.扫描电镜(SEM)显示磁性微球平均粒径为7.77 μm,具有良好的单分散性(多分散指数PDI为1.03),并且表面光滑致密;用超导量子干涉磁强计测量了Fe3O4纳米粒子的磁化曲线;用红外光谱(FT-IR)和热失重(TG)方法表征了磁性微球的化学结构及Fe3O4含量.  相似文献   

9.
丁玲  李曦  张超灿 《化学研究》2010,21(1):19-22
以纳米级四氧化三铁为磁性载体,以苯乙烯为单体,用微悬浮聚合法制备了聚苯乙烯磁性微球;以牛血清白蛋白(BSA)为模型蛋白,用荧光光谱仪和紫外-可见吸收光谱仪研究了磁性微球与BSA的相互作用.结果表明,磁性微球与BSA结合反应的猝灭机理为静态猝灭.  相似文献   

10.
表面图案化磁性复合微球的原位制备与表征   总被引:2,自引:0,他引:2  
王公正  夏慧芸  张颖  彭世杰 《化学学报》2007,65(18):2051-2056
采用反相悬浮聚合法合成了丙烯酸(AA)含量不同的N-异丙基丙烯酰胺-丙烯酸共聚物P(NIPAM-co-AA)微凝胶, 并以其作为微反应器, 通过原位外源沉积法制备了一系列微米级、表面具有图案化结构的SiO2-Fe3O4-P(NIPAM-co-AA)磁性复合微球. 实验结果表明, 复合微球的表面结构与微凝胶的组成、Fe3O4和SiO2的沉积量有关. 在微球表面进行修饰, 可得到表面带有氨基等官能基团的磁性复合材料. 将这种功能化磁性微球用于识别生物大分子并进一步用于生物医学领域具有重要的意义.  相似文献   

11.
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   

12.
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   

13.
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   

14.
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   

15.
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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16.
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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17.
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   

18.
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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19.
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   

20.
Bimetallic ferrimagnet [Cr(CN)6][Mn(R)-pnH(H2O)]H2O with crystallographical chirality of space group P212121 exhibits a giant third-order harmonic susceptibility at around 38 K. This anomaly appears as precursory magnetic phenomenon of the magnetic ordering. In order to investigate the effect of lattice distortion on this giant nonlinear magnetic response (NLMR) and finally elucidate the correlation between the structural chirality and the giant NLMR, we performed the ac susceptibility measurement for the single crystal in the situation of bringing about lattice distortion along the direction parallel to the a-axis. This giant NLMR was drastically suppressed even by slight strain, whereas the traces could be confirmed in the region up to 3.7 kbar. We conclude that the appearance of the giant NLMR requires crystal chirality well-regulated over the crystal.  相似文献   

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