全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

fe_3o_4纳米粒子的磷酸胆碱仿细胞膜修饰

Keywords: 无机非金属材料,fe3o4纳米粒子,磷酸胆碱

Full-Text   Cite this paper   Add to My Lib

Abstract:

?用水相共沉淀法制备了超顺磁的fe_3o_4纳米粒子,并通过michael加成将2-(甲基丙烯酰氧基)乙基-2-(三甲基氨基)乙基磷酸酯(mpc)共价键合到氨基化的fe_3o_4纳米粒子表面.与未修饰mpc的fe_3o_4纳米粒子相比,修饰了mpc的纳米粒子能大大减少蛋白质的非特异性吸附,延长了复钙化凝血时间,并具有良好的生物相容性.

References

[1]  3chiyue,guoshiju,mengfei,yangxia,zhangheng,lianyudong,highvelocitycompactioninpowdermetallurgy,powdermetallurgyindustry,15(6),41(2005)(迟悦,果世驹,孟飞,杨霞,张恒,连玉栋,粉末冶金高速压制成形技术,粉末冶金工业,15(6),41(2005))
[2]  10f.dore,l.lazzarotto,s.bourdin,highvelocitycom-paction:overviewofmaterials,applicationsandpotential,materialsscienceforum,534-536,293(2007)
[3]  11e.torsten,l.ppetri,residualstressesingreenbodiesofsteelpowderafterconventionalandhighspeedcom-paction,materialsscienceforum,407(404),77(2002)
[4]  12b.barendvanden,f.christer,l.tomus,industrialimple-mentationofhighvelocitycompactionforimprovedprop-erties,powdermetallurgy,49(2),107(2006)
[5]  13p.jonsén,h-a.h(?)ggblad,l.troive,j.furuberg,s.allroth,p.skoglund,greenbodybehaviorofhighvelocitypressedmetalpowder,materialsscienceforum,534-536,289(2007)
[6]  15a.bruska,s.bengt,k.leif,developmentofahigh-velocitycompactionprocessforpolymerpowders,polymertest-ing,24(4),909(2005)
[7]  16d.jauffrès,o.lame,g.vigier,f.doré,microstructuraloriginofphysicalandmechanicalpropertiesofultrahighmolecularweightpolyethyleneprocessedbyhighvelocitycompaction,polymer,48(21),6374(2007)
[8]  17huangpeiyun,principlesofpowdermetallurgy(bei-jing,thepressofmetallurgicalindustry,1997)p.170(黄培云,粉末冶金原理,(北京,冶金工业出版社,1997)p.170)
[9]  18wuchengyi,zhangliying,mechanicalprinciplesofpowderforming(beijing,thepressofmetallurgicalin-dustry,2003)p.6(吴成义,张丽英,粉末成形力学原理,(北京,冶金工业出版社,2003)p.6)
[10]  1f.richard,hvcpunchespmtonewmassproductionlim-its,metalpowderreport,57(9),26(2002)
[11]  2r.l.orban,newresearchdirectionsinpowdermetallurgy,remanianreportsinphysics,56(3),505(2004)
[12]  4shenyuanxun,xiaozhiyu,wenliping,panguoru,liyuanyuan,principle,characteristicsandstatusofhighvelocitycompactioninpowdermetallurgy,powdermetal-lurgyindustry,16(3),19(2006)(沈元勋,肖志瑜,温利平,藩国如,李元元,粉末冶金高速压制技术的原理、特点及其研究进展,粉末冶金工业,16(3),19(2006))
[13]  5zhoushengyu,yinhaiqing,quxuanhui,researchsta-tusofhighvelocitycompactiontechnologyinpowdermet-allurgy,materialsreview,21(7),79(2007)(周晟宇,尹海清,曲选辉,粉末冶金高速压制技术的研究进展,材料导报,21(7),79(2007))
[14]  6p.skoglund,in2001internationalconferenceonpowertransmissioncomponents,highdensitypmcomponentsbyhighvelocitycompaction,editedbya.volker,chuchi-ulung,f.william,j.jandeska,(ypsilanti,metalpowderindustriesfederation,2001)p.16
[15]  7p.skoghind,highdensitypmpartsbyhighvelocitycom-paction,powdermetallurgy,44(3),199(2001)
[16]  8p.skoglund,inadvanceinpowdermetallurgy&partic-ulatematerials-2002,high-densitypmcomponentsbyhighvelocitycompaction,editedbya.volker,chuchi-ulung,f.william,j.jandeska,(newjersey,metalpowderindustriesfederation,2002)p.1
[17]  9e.caroline,h(?)gan(?)spromotespotentialofhighvelocitycompaction,metalpowderreport,56(9),6(2001)
[18]  14c.aslund,ineuropm2004conferenceproceedings,highvelocitycompaction(hvc)ofstainlesssteelgasatomizedpowder,editedbyd.herbert,r.raimund,(shrewsburyuk,epma,2004)p.533

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133