|产品介绍||本品为棕色悬浮液，分散溶剂为磷酸缓冲液（PBS）。Fe2O3 磁性微球具有粒径分布均一，透光性好，热稳定性高的特点。 Fe2O3 系列磁性微球具有粒径分布均匀、热稳定性好等特点，是真正意义上的超顺磁性微球。由于具有更好的透光性，特别适合于光谱相关的研究检测。Fe2O3 磁性微球表面通过化学修饰可以结合上一系列不同的化学官能团及具有特异性的抗体、蛋白和核酸，可应用于核酸纯化、细胞筛选、免疫分析、临床诊断等多个领域，是医学、分子生物学研究中不可或缺的分离纯化工具。 特点： 1. 磁性稳定，不易流失，可以长期储存 2. 完全超顺磁性 【使用注意事项】 1. Fe2O3 磁性微球可以耐受丙酮、甲苯、氯仿等有机溶剂。 2. 热稳定性好，可以耐受600℃以下的高温。 3. 用前振摇分散，超声波有助于磁性微球的分散。 【规格】 5 ml 装Fe2O3 的PBS 悬浮液，固含量1 %（w/v） 【溶剂组成】 PBS pH 7.40 叠氮化钠 0.01 % （防腐剂）|
|警示性声明||dust mask type N95 (US), Eyeshields, Gloves|
We report our observation of the training effect on dc electrical properties in a nanochain of BiFeO3 as a result of large scale migration of defects under the combined influence of electric field and...Read More
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Improvement on controllable fabrication of streptavidin-modified three-layer core-shell Fe3O4@SiO2@au magnetic nanocomposites with low fluorescence background.
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Imaging specificity of MR-optical imaging agents following the masking of surface charge by poly(ethylene glycol).
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Photo-Fenton oxidation of azo dye Reactive Black B using an immobilized iron oxide as heterogeneous catalyst.
The heterogeneous oxidation of azo dye Reactive Black B (RBB) by the photo-Fenton system catalyzed with an immobilized iron oxide, B1 (supported with SiO2 grain), was investigated. Reactive Black B ox...Read More
The use of hydrophilic poly(N,N-dimethylacrylamide) for promoting engulfment of magnetic gamma-Fe2O3 nanoparticles by mammalian cells.
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Dynamic investigation of interaction of biocompatible iron oxide nanoparticles with epithelial cells for biomedical applications.
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Core-shell Fe3O4-Au magnetic nanoparticles based nonenzymatic ultrasensitive electrochemiluminescence immunosensor using quantum dots functionalized graphene sheet as labels.
In this paper, a novel, low-cost electrochemiluminescence (ECL) immunosensor using core-shell Fe3O4-Au magnetic nanoparticles (AuMNPs) as the carriers of the primary antibody of carbohydrate antigen 1...Read More
Inhibition of microbial trichloroethylene dechorination by Fe (III) reduction depends on Fe mineralogy: a batch study using the bioaugmentation culture KB-1.
Microbial reductive dechlorination of trichloroethylene (TCE) in groundwater can be stimulated by adding of electron donors. However, side reactions such as Fe (III) reduction competes with this react...Read More