欢迎您!
东篱公司
退出
申报数据库
申报指南
立项数据库
成果数据库
期刊论文
会议论文
著 作
专 利
项目获奖数据库
位置:
成果数据库
>
期刊
> 期刊详情页
A facile fabrication of spherical and beanpod-like magnetic-fluorescent particles with targeting fun
ISSN号:0957-4484
期刊名称:Nanotechnology
时间:2012.10.4
页码:425702(8pp)-
相关项目:稀土基富集磷酸化肽的磁性核壳结构材料的合成与质谱检测
作者:
Jilin Zhang|Gong Cheng|Guangyan Hong|Jiazuan Ni|
同期刊论文项目
稀土基富集磷酸化肽的磁性核壳结构材料的合成与质谱检测
期刊论文 21
会议论文 1
获奖 4
同项目期刊论文
Fabrication of Novel Hierarchical Structured Fe3O4@LnPO4 (Ln=Eu, Tb, Er) Multifunctional Microsphere
The GO/rGO-Fe3O4 composites with good water-dispersibility and fast magnetic response for effective
A graphene-based multifunctional affinity probe for selective capture and sequential identification
Monodisperse REPO4 (RE=Yb, Gd, Y) Hollow Microspheres Covered with Nanothorns as Affinity Probes for
Magnetic Affinity Microspheres with Meso-/Macroporous Shells for Selective Enrichment and Fast Separ
基于纳米结构材料的磷酸化蛋白/多肽富集和分析
Novel core-shell Ce(IV)-Immobilized magnetic polymeric microspheres for selective enrichment and rap
Synthesis and characterization of Fe3O4@YPO4:Eu3+ multifunctional microspheres
Development of the Affinity Materials for Phosphorylated Proteins/Peptides Enrichment in Phosphoprot
Facet-DependentEffect of Well-Defined CeO2 Nanocrystals on the Adsorption andDephosphorylation of Ph
Novel core-shell Cerium(IV)-immobilized magnetic polymeric microspheres for selective enrichment and
Magnetic mesoporous silica incorporated with TiO2 for selective and rapid capture of peptides
REPO4 (RE = La, Nd, Eu) affinity nanorods modified on a MALDI plate for rapid capture of target pept
Novel Ti4+-chelated magnetic nanostructured affinity microspheres containing N-methylene phosphonic
Immobilization of trypsin onto multifunctional meso-fmacroporous core-shell microspheres: A new plat
Novel 3D flowerlike hierarchical gamma-Fe2O3@xNH4F?yLuF3 core–shell microspheres tailor-made by a ph
Synthesis and characterization of the Fe3O4@SiO2-[Eu(DBM)3phen]Cl3- luminomagnetic microspheres
Yolk-shell magnetic microspheres with mesoporous yttrium phosphate shells for selective capture and
Lanthanum silicate coated magnetic microspheres as a promising affinity material for phosphopeptide