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...
化学进展  2011 

单分散介孔氧化硅纳米颗粒的制备及其在生物材料方面的应用

, PP. 1973-1984

Keywords: 单分散,介孔氧化硅,纳米颗粒,制备,生物材料

Full-Text   Cite this paper   Add to My Lib

Abstract:

单分散介孔氧化硅纳米颗粒由于其自身的优点,在当前许多领域有着广泛的应用前景。本文综述了近十几年来单分散介孔氧化硅纳米颗粒的制备方法以及在生物材料方面的应用。在制备方法方面,根据其制备机理分为稀溶液法、微乳法、模板剂法以及向反应体系中加入不同的添加剂等方法,制备出分散性好、不同形态、孔径尺寸可调的介孔氧化硅纳米颗粒。在生物材料的应用方面,主要介绍了其在药物与生物活性分子的负载与控制释放、生物大分子的固载与分离、生物标记与临床诊断等方面的应用。

References

[1]  Kresge C T, L eonowicz M E, Roth W J, Vartuli J C, Beck J S.Nature, 1992, 359: 710-712
[2]  Beck J S, VartUli J C, Roth W J, Leonowicz M E, Kresge C T, Schmitt K D, Chu C T W, Olson D H, Sheppard E W, McCullen S B, Higgins J B, Schlenkert J L.J.Am.Chem.Soc., 1992, 114: 10834-10843
[3]  韩涤非(Han D F), 王安杰(Wang A J), 孔祥国(Kong X G).化学进展(Progress in Chemistry), 2002, 14(2): 98-106
[4]  Torney F, Trewyn B G, Lin V S Y, Wang K.Nat.Nanotechnol., 2007, 2: 295-300
[5]  Tan W, Wang K, He X, Zhao X J, Drake T, Wang L, Bagwe R.Med.Res.Rev., 2004, 24: 621-638
[6]  Barbe C, Bartlett J, Kong L, Finnie K, Lin H Q, Larkin M, Calleja S, Bush A, Calleja G.Adv.Mater., 2004, 16: 1959-1966
[7]  Cai Q, Luo Z S, Pang W Q, Fan Y W, Chen X H, Cui F Z.Chem.Mater., 2001, 13: 258-263
[8]  Fowler C E, Khushalani D, Lebeau B, Mann S.Adv.Mater., 2001, 13(9): 649-652
[9]  Nooney R I, Thirunavukkarasu D, Chen Y, Josephs R, Ostafin A E.Chem.Mater., 2002, 14: 4721-4728
[10]  Rathousky J, Zukalova M, Kooyman P J, Zukal A.Colloids Surf.A, 2004, 241: 81-86
[11]  Yamada Y, Yano K.Micropor.Mesopor.Mater., 2006, 93: 190-198
[12]  Shimura N, Ogawa M.J.Mater.Sci., 2007, 42: 5299-5306
[13]  St?ber W, Fink A, Bohn E.J.Colloid.Interf.Sci., 1968, 26: 62-69
[14]  He Q, Cui X., Cui F, Guo L, Shi J.Micropor.Mesopor.Mater., 2009, 117: 609-616
[15]  Shi Y T, Cheng H Y, Geng Y, Nan H M, Chen W, Cai Q, Chen B H, Sun X D, Yao Y W, Li H D.Mater.Chem.Phys., 2010, 120: 193-198
[16]  Huang X, Teng X, Chen D, Tang F, He J.Biomaterials, 2010, 31: 438-448
[17]  Miao J, Qian J, Wang X, Zhang Y, Yang H, He P.Mater.Lett., 2009, 63: 989-990
[18]  M?ller K, Kobler J, Bein T.Adv.Funct.Mater., 2007, 17: 605-612
[19]  Venkatathri N.Solid State Commun., 2007, 143: 493-497
[20]  Tsai C P, Chen C Y, Hung Y, Chang F H, Mou C Y.J.Mater.Chem., 2009, 19: 5737-5743
[21]  Vallet-Regi M, Rmila A, Real R P, Pe'rez-Pariente J.Chem.Mater., 2001, 13: 308-311
[22]  Slowing I I, Vivero-Escoto J L, Wu C W, Lin V S Y.Adv.Drug Delivery Rev., 2008, 60: 1278-1288
[23]  Torney F, Trewyn B G, Lin V S Y, Wang K.Nat.Nanotechnol., 2007, 2: 295-300
[24]  Gao F, Botella P, Corma A, Blesa J, Gong L.J.Phys.Chem.B, 2009, 113: 1796-1804
[25]  Chen C, Pu F, Huang Z, Liu Z, Ren J, Qu X.Nucleic Acids Res., 2011, 39(4): 1638-1644
[26]  Katiyar A, Pinto N G.Small, 2006, 2(5): 644-648
[27]  Fan J, Lei J, Wang L, Yu C, Zhao D.Chem.Commun., 2003: 2140-2141
[28]  Chen L, Zhu G, Zhang D, Zhang D, Zhao H, Guo M, Shi W, Qiu S.J.Mater.Chem., 2009, 19: 2013-2017
[29]  Slowing I, Trewyn B G, Lin V S Y.J.Am.Chem.Soc., 2006, 128: 14792-14793
[30]  Qian H S, Guo H C, Ho P C L, Mahendran R, Zhang Y.Small, 2009, 5(20): 2285-2290
[31]  Taylor K M L, Kim J S, Rieter W J, An H, Lin W, Lin W.J.Am.Chem.Soc., 2008, 130: 2154-2155
[32]  Lee J E, Lee N, Kim H, Kim J, Choi S H, Kim J H, Kim T, Song I C, Park S P, Moon W K, Hyeon T.J.Am.Chem.Soc., 2010, 132: 552-557
[33]  古芳娜(Gu F N), 杨佳园(Yang J Y), 魏峰(Wei F), 朱建华(Zhu J H).催化学报(Chinese Journal of Catalysis), 2010, 31: 267-272
[34]  刘峰(Liu F), 金海涛(Jin H T), 任红波(Ren H B), 陈国友(Chen G Y), 孟利(Meng L).农产品加工 ·学刊(Academic Periodical of Farm Products Processing), 2008, 7: 212-218
[35]  Rurack K, Martínez-Mà?ez R.The Supramolecular chemistry of Organic-Inorganic Hybrid Materials.John Wiley & Sons Inc., 2010
[36]  Cademartiri L, Ozin G A.Concepts of Nanochemistry.Wiley-VCH, 2009
[37]  Angelos S, Liong M, Choi E, Zink J I.Chem.Eng.J., 2008, 137: 4-13
[38]  Nalwa H S.Encyclopedia of Nanoscience and Nanotechnology American Scientific Publishers, 2004
[39]  Wan Y, Zhao D Y.Chem.Rev., 2007, 107: 2821-2860
[40]  Lu F, Wu S H, Hung Y, Mou C Y.Small, 2009, 5(12): 1408-1413
[41]  Lee Y G, Oh C, Yoo S Y, Koo S M, Oh S G.Micropor.Mesopor.Mater., 2005, 86: 134-144
[42]  Nandiyanto A B D, Kim S G, Iskandar F, Okuyama K.Micropor.Mesopor.Mater., 2009, 120: 447-453
[43]  Zhang Y, Zhi Z, Jiang T, Zhang J, Wang Z, Wang S.J.Control.Release, 2010: 1-7
[44]  Lebedev O I, Tendeloo G V, Collart O, Cool P, Vansant E F.Solid State Sci., 2004, 6: 489-498
[45]  Suzuki K, Ikari K, Imai H.J.Am.Chem.Soc., 2004, 126: 462-463
[46]  Trewyn B G, Whitman C M, Lin V S Y.Nano Lett., 2004, 4(11): 2139-2143
[47]  Chen H, He J.Chem.Commun., 2008, 4422-4424
[48]  Wang J G, Xiao Q, Zhou H J, Sun P C, Ding D T, Chen T H.J.Colloid Interf.Sci., 2008, 323: 332-337
[49]  Mukherjee I, Mylonakis A, Guo Y, Samuel S P, Li S, Wei R Y, Kojtari A, Wei Y.Micropor.Mesopor.Mater., 2009, 122: 168-174
[50]  Zhang J, Liu M, Zhang A, Lin K, Song C, Guo X.Solid State Sci., 2010, 12: 267-273
[51]  Skylesh S, Schünemann V, Thiel W R.Angew.Chem.Int.Ed., 2010, 49: 3428-3459
[52]  Trewyn B G, Giri S, Slowing I I, Lin V S Y.Chem.Commun., 2007, 3236-3245
[53]  Munoz B, Rmila A, Pérez-Pariente J, D D' az I, Vallet-Reg M.Chem.Mater., 2003, 15: 500-503
[54]  Lu J, Liong M, Zink J I, Tamano F.Small, 2007, 3(8): 1341-1346
[55]  Zhao Y, Trewyn B G, Slowing I I, Lin V S Y.J.Am.Chem.Soc., 2009, 13: 8398-8400
[56]  Climent E, Martinez-Manezez R, Sancenon F, Marcos M D, Soto J, Maquieira A, Amoros P.Angew.Chem., 2010, 122: 7439-7441
[57]  Zhang M, Wu Y, Feng X, He X, Chen L, Zhang Y.J.Mater.Chem., 2010, 2: 5835-5842
[58]  Radu D R, Lai C Y, Wiench J W, Pruski M.J.Am.Chem.Soc., 2004, 126: 1640-1641

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133