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北京石油化工学院2026年研究生招生接收调剂公告
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FePt

木虫 (正式写手)


[资源] 磁性纳米颗粒最新综述文章 (附Dr.Sun资料)

Syntheses, Properties, and Potential Applications of Multicomponent  magnetic Nanoparticles

Adv. Funct. Mater. 2008, 18, 391–400

Dr.Sun应该算是这方向的牛人





Professor Sun's research in nanomaterials involves two related areas: (1) chemical synthesis and self-assembly of nanoparticles; (2) construction and elaboration of functional nanoparticles and their assemblies for applications in biomedicine, catalysis, information storage and composite nanostructures.


Synthesis and Self-Assembly

We utilize the so called "bottom-up" approach for the synthesis of monodisperse nanoparticles. Recent focus has been on the synthesis of magnetic nanoparticles of Co, MFe2O4 and FePt by reduction of metal salts and/or thermal decomposition of organometallic precursors. The size, composition, and shape of these nanoparticles can be tuned by controlling reaction parameters, such as the reactant ratio and concentrations, temperature, and time. We are also exploring other synthetic approaches to prepare multi-component and multi-functional nanoparticles of the alloy-type (e.g. CoFe), core/shell type (e.g. CoFe/Fe3O4), and dumbbell-like (e.g. Au-Fe3O4) materials. Through proper surface modification, these nanoparticles can be dispersed in various media, or they can self-assemble into superlattice structures. The effects of particle size, shape, composition, and interparticle spacing on physical and chemical properties of the nanostructures constitute issues of the critical importance that are addressed by our research.

Magnetic Nanoparticles for Biomedical Applications

Recent advances in the synthetic control of nanoparticle monodispersity suggest that the fabrication of nanoparticle-based bio-probes with ultra-high sensitivity and efficacy should be possible. We are working to make a series of biocompatible multifunctional magnetic nanoparticles, and subsequently establish their bio-recognition and delivery capabilities. Through collaborations with other researchers, we plan to integrate these multifuctional nanoparticles into bio-systems for potential highly efficient diagnostic and therapeutic applications.

Nanoparticles for Catalytic Applications

The rapid progress in the construction of nanoparticles with controllable size, shape, and electronic properties has made it possible to rationally design and synthesize nanoparticle-based catalysts. Our goals are to prepare transition metal based nanoparticles with controlled size, composition, and shape and to study their self-assembled structures for catalytic applications in nanotube/nanowire formation and fuel-cell reactions.

Magnetic Nanoparticle Assembly for Information Storage Applications

As a magnet in nanometer scale, a magnetic nanoparticle can be used to support magnetization transition for information storage applications. The ultimate media goal is that each nanomagnet can support one bit of the digital information. We have been exploring the chemical synthesis and self assembly to fabricate 2-dimensional magnetic nanoparticle arrays, and will use the shape of the particles to control the magnetization direction of the self-assembled nanoparticle array for ultrahigh density information storage applications.

Composite Nanostructures via Nanoparticle Self-Assembly

Nanocomposites refer to engineered materials consisting of at least one nanoscale constituent. By independently tuning the size and composition of each component, followed by engineering the assembly, the nanostructures can be tailored for physical and chemcial properties that do not exist in the single component nanomaterials. The self-assembly approach is being used to prepare multi-component systems to provide both a model for studying fundamental relationships between nanostructure and inter-particle interactions, and to provide a practical route to novel functional nanodevices.
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FePt

木虫 (正式写手)



popsheng(金币+1,VIP+0):我在专题橱窗里面有个专题贴,里面有这方面一点资料,sun是南大的骄傲
有作这方面的虫子么?

交流一下
2楼2008-02-29 15:15:48
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nanochong

银虫 (正式写手)


★★★★★ 五星级,优秀推荐

很好,下来看看
3楼2008-02-29 23:29:16
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FePt

木虫 (正式写手)


大家都做那种磁性nanoparticles?

FePt? CoFe?
引用回帖:
Originally posted by shuibinglao at 2008-3-1 02:00:
交流一下

6楼2008-03-11 03:57:02
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haimlu

木虫 (正式写手)


★★★★★ 五星级,优秀推荐

支持下
我也做些相关的研究,不过以前以理论为主
8楼2008-03-11 13:01:32
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FePt

木虫 (正式写手)


能否简单介绍一下你之前的工作

现在我只是在做实验,如果有理论的话,应该更好

谢谢
引用回帖:
Originally posted by haimlu at 2008-3-11 13:01:
支持下
我也做些相关的研究,不过以前以理论为主

9楼2008-03-12 03:44:46
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lzu-liu

银虫 (正式写手)


★★★ 三星级,支持鼓励

研究一下   呵呵  谢谢
10楼2008-03-12 08:53:00
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oveiyi

金虫 (小有名气)


★★★ 三星级,支持鼓励

下来看看,谢谢
11楼2008-03-12 16:30:21
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chenkailai


想知道你的材料是否有吸波性能么?进而和我们合作么?

提供电磁参数和反射率测试(2~18GHz),可提供数据和曲线,价格根据数量而定( 一般为200元整个频段)。
张先生    zschenkai@163.com    13681011903
12楼2008-03-12 20:05:52
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xucl01

铜虫 (初入文坛)


★★★ 三星级,支持鼓励

有呀,我最经就在做
13楼2008-03-13 15:55:29
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lmbe

木虫 (正式写手)


孙的牛不是真牛,真牛的是韩国Taeghwan Hyeon组,孙是follow Taeghwan Hyeon,看看Taeghwan Hyeon发在Nature Mater上面的磁性粒子制备的文章,两者不是一个档次的
14楼2008-03-14 11:51:03
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FePt

木虫 (正式写手)


非常感谢你的信息,我刚刚查了一下,Taeghwan Hyeon果然是个大牛

我刚刚转到这个方向,不是很熟悉,谢谢你!
引用回帖:
Originally posted by lmbe at 2008-3-14 11:51:
孙的牛不是真牛,真牛的是韩国Taeghwan Hyeon组,孙是follow Taeghwan Hyeon,看看Taeghwan Hyeon发在Nature Mater上面的磁性粒子制备的文章,两者不是一个档次的

15楼2008-03-14 12:31:22
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简单回复
2008-03-01 09:46   回复  
 
YAOYAO1915楼
2008-03-10 16:24   回复  
 谢谢分享
wuyq65027楼
2008-03-11 05:46   回复  
 
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