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xiangqi036

木虫 (著名写手)

[交流] 【求助帮忙改文献格式】+【有效期至2009年3月15日】

要求如下:修改一篇,格式正确,一个金币,文中标点是英文状态下
标准参考文献格式:
[1]        俞耀庭.生物医用材料.天津:天津大学出版社.2000:1,116
[2]        李世普.生物医用材料导论.武汉:武汉工业大学出版社.2000:1,72,52
[3]        顾汉卿,许国风.生物医学材料学.天津:天津科技翻译出版公司,1993:1-12,1-2,122
[4]        Hench L. L. Biomaterials: a forecast for the future. Biomaterials. 1998, 19:1419-1423
[5]        Hench L.L.; Splinter R.J.; Allen W.C.; Greenlee Jr.T.K. Bonding mechanism at the interface of ceramic prosthetic materials. J. Biomed. Mater. Res. Symp. 1971, 2:117-141
常用参考文献编写项目和顺序规定如下:      
著作图书文献 [序号]  作者. 书名. 版次. 出版者, 出版年: 引用部分起止页   
翻译图书文献 [序号]  作者. 书名. 译者. 版次. 出版者, 出版年: 引用部分起止页     
学术刊物文献 [序号]  作者. 文章名. 学术刊物名. 年, 卷(期): 引用部分起止页     
学术会议文献 [序号]  作者. 文章名. 编者名. 会议名称, 会议地址, 年份. 出版地: 出版者, 出版年: 引用部分起止页     
学位论文类参考文献 [序号]  研究生名. 学位论文题目. 学校及学位论文级别.
参照上面的标准参考文献格式认真检查修改下列参考文献格式!!
1、        是否有重复的?
2、        是否需要补充论文题目?
3、        是否需要修改作者姓名?
4、        尽量查处DOI?  英文的尽量查,放在最后
5、        是否需要清除格式,删除多余的负号?
6、        等等
要修改的内容,即参考文献:
[参 考 文 献]
[1] Galo J. de A. A. Soler-lllia, Clement Sanchez, Benedicte Lebeau, Joel Patarin. Chemical strategies to design textures materials: from microporous and mesoporous oxides to nanonetworks and hierarchical structures. Chem. Rev. 2002, 102: 4093-4138
[2]Alivisatos.P, The use of nanocrystals in biological detection, Nature Biotechnol. 22 (2004)47-52
[3]Zhang Yang-de, Wang Guang-suo et al, Studies of targeting effects of lactosaminated nanoparticle gene carrier on liver , Journal Of Medical Engineering, 10/6(2002)12-16
[4] Zhang Yang-de, Sun Ying, Preparation of polybutylcyanoacrylate nanoparticles gene delivery system and study on its characteristics in vitro, China Journal of Modern Medicine, 14/1(2004)1-6
[5] R.F.Chen, S.J.Chen, Application of Nano-technique in Early Diagnosis and Therapy for Malignant Tumors, Chinese Journal of Cancer, 12(2002)
[6] Nathaniel. L. Rost, David A. Gitjohann  et al, Oligonucleotide-modified gold nanoparticles for intracellular gene regulation,  Science, 312(2006)1027-1030
[7]  Emilie Pouget, Erik Dujardin, Annie Cavalier, Alain Moreac, Céline Valéry, Valérie Marchi-Artzner, Thomas Weiss, Anne Renault, Maité Paternostre, Franck Artzner, Hierarchical architectures by synergy between dynamical template self-assembly and biomineralization, Nature Materials 6, 434 - 439 (01 Jun 2007), doi: 10.1038/nmat1912, Letters
[8] Amit Dubey, Synthesis and catalytic applications of CMK-LDH (layered double
hydroxides) nanocomposite materials, Green Chem., 2007, 9, 424–426, DOI: 10.1039/b616482j;
[9]Vitaly L. Budarin, James H. Clark, Rafael Luque, Duncan J. Macquarrie, Apostolis Koutinas and Colin Webb, Tunable mesoporous materials optimised for aqueous phase esterifications, Green Chem., 2007, 9, 992–995, DOI: 10.1039/b704055e
[10] Alivisatos A P, Biomineralization - Naturally aligned nanocrystals. Science 2000, 289: 736-737
[11] Addadi L and Weiner S, Biomineralization - Crystals, asymmetry and life. Nature 2001, 411: 753-755
[12] Sollner C, et al., Control of crystal size and lattice formation by starmaker in otolith biomineralization. Science 2003, 302: 282-286
[13] Banfield J F, et al., Aggregation-based crystal growth and microstructure development in natural iron oxyhydroxide biomineralization products. Science 2000, 289: 751-754
[14]Helen K, Baca, Carlee Ashley et al, Cell-directed assembly of lipid-silica nanostructures providing extended cell viability, Science, 313(2006)337-340
[15] Kroger N et al,  Self-assembly of highly phosphorylated silaffins and their function in biosilica morphogenesis ,  Science,  298 / 5593 (2002) 584-586
[16]  Pooja Singh, Swaranjit Singh Cameotra, Potential applications of microbial surfactants in biomedical sciences. Trends in Biotechnology. 2004:3;142-146
[17] Dujardin E, Peet C,. et al, Organization of metallic nanoparticles using tobacco mosaic virus templates. Nano Lett ., 3 (2003)413–417.
[18] Dujardin E, Mann S. Bio-inspired materials chemistry. Adv Mater 2002;14:775–88.
[19]Ying J Y, Mehnert C P, Wong M S. Synthesis and applications of supramolecular-templated  mesoporous materials. Angew. Chem. Int. Ed. , 1999, 38: 56-7
[20]Samir Mitragotri, Joerg Lahann, Physical approaches to biomaterial design, Nature Materials 8, 15 - 23 (01 Jan 2009), doi: 10.1038/nmat2344, Review
[21] Markus J. Buehler, Yu Ching Yung, Deformation and failure of protein materials in physiologically extreme conditions and disease, Nature Materials 8, 175 - 188 (01 Mar 2009), doi: 10.1038/nmat2387, Review
[22] Sarah Staniland, Wyn Williams, Neil Telling, Gerrit Van Der Laan, Andrew Harrison, Bruce Ward, Controlled cobalt doping of magnetosomes : in vivo, Nature Nanotechnology 3, 158 - 162 (01 Mar 2008), doi: 10.1038/nnano.2008.35, Letter
[23] Bogdan Dragnea, Bio-inspired materials: Unnatural life, Nature Materials 7, 102 - 104 (01 Feb 2008), doi: 10.1038/nmat2108, News and Views
[24] Eike Brunner, Biomimetic synthesis: Double-walled silica nanotubes, Nature Materials 6, 398 - 399 (01 Jun 2007), doi: 10.1038/nmat1919, News and Views
[25] Andrew R. Parker, Helen E. Townley, Biomimetics of photonic nanostructures, Nature Nanotechnology 2, 347 - 353 (03 Jun 2007), doi: 10.1038/nnano.2007.152, Progress Article
[26] Werner Kunz and Matthias Kellermeier, MATERIALS SCIENCE: Beyond Biomineralization
Science 16 January 2009 323: 344-345 [DOI: 10.1126/science.1168653] (in Perspectives)
[27] Christine Ortiz and Mary C. Boyce, MATERIALS SCIENCE: Bioinspired Structural Materials, Science 22 February 2008 319: 1053-1054 [DOI: 10.1126/science.1154295] (in Perspectives)
[28] Erik D. Spoerke, Shawn G. Anthony, Samuel I. Stupp, Enzyme Directed Templating of Artificial Bone Mineral, Advanced Materials, Volume 21, Issue 4, Date: January 26, 2009, Pages: 425-430
[29]Yanjun Jiang, Dong Yang, Lei Zhang, Qianyun Sun, Xiaohui Sun, Jian Li, Zhongyi Jiang,  Preparation of Protamine-Titania Microcapsules Through Synergy Between Layer-by-Layer Assembly and Biomimetic Mineralization, Advanced Functional Materials, Volume 19, Issue 1, Date: January 9, 2009, Pages: 150-156
[30] Shlomit Segman-Magidovich, Haviv Grisaru, Tamar Gitli, Yael Levi-Kalisman, Hanna Rapaport, Matrices of Acidic  -Sheet Peptides as Templates for Calcium Phosphate Mineralization, Advanced Materials, Volume 20, Issue 11, Date: June 4, 2008, Pages: 2156-2161
[31] Marc D. Roy, Scott K. Stanley, Eric J. Amis, Matthew L. Becker, Identification of a Highly Specific Hydroxyapatite-binding Peptide using Phage Display, Advanced Materials, Volume 20, Issue 10, Date: May 19, 2008, Pages: 1830-1836
[32]Cheng Cheng, Zhengzhong Shao, Fritz Vollrath, Silk Fibroin-Regulated Crystallization of Calcium Carbonate, Advanced Functional Materials, Volume 18, Issue 15, Date: August 11, 2008, Pages: 2172-2179
[33]Anitha Ethirajan, Ulrich Ziener, Andrey Chuvilin, Ute Kaiser, Helmut Cölfen, Katharina Landfester, Biomimetic Hydroxyapatite Crystallization in Gelatin Nanoparticles Synthesized Using a Miniemulsion Process, Advanced Functional Materials, Volume 18, Issue 15, Date: August 11, 2008, Pages:2221-2227
[34] Fan Xia, Lei Jiang, Bio-Inspired, Smart, Multiscale Interfacial Materials, Advanced Materials, Volume 20, Issue 15, Date: August 4, 2008, Pages:2842-2858
[35]Fuke Wang, Dong Li, Chuanbin Mao, Genetically Modifiable Flagella as Templates for Silica Fibers: From Hybrid Nanotubes to 1D Periodic Nanohole Arrays, Advanced Functional Materials
Volume 18, Issue 24, Date: December 22, 2008, Pages:4007-4013
[36]J. Shi, N. M. Alves, J. F. Mano, Thermally Responsive Biomineralization on Biodegradable Substrates, Advanced Functional Materials, Volume 17, Issue 16, Date: November, 2007, Pages:3312-3318
[37]T. Prozorov, S. K. Mallapragada, B. Narasimhan, L. Wang, P. Palo, M. Nilsen-Hamilton, T. J. Williams, D. A. Bazylinski, R. Prozorov, P. C. Canfield, Protein-Mediated Synthesis of Uniform Superparamagnetic Magnetite Nanocrystals, Advanced Functional Materials, Volume 17, Issue 6, Date: April, 2007, Pages: 951-957
[38] M. Umetsu, M. Mizuta, K. Tsumoto, S. Ohara, S. Takami, H. Watanabe, I. Kumagai, T. Adschiri, Bioassisted Room-Temperature Immobilization and Mineralization of Zinc Oxide - The Structural Ordering of ZnO Nanoparticles into a Flower-Type Morphology, Advanced Materials, Volume 17, Issue 21, Date: November, 2005, Pages: 2571-2575
[39] C. R. Rambo, H. Sieber, Novel Synthetic Route to Biomorphic Al2O3 Ceramics, Advanced Materials, Volume 17, Issue 8, Date: April, 2005, Pages: 1088-1091
[40] S. S. Bale, P. Asuri, S. S. Karajanagi, J. S. Dordick, R. S. Kane, Protein-Directed Formation of Silver Nanoparticles on Carbon Nanotubes, Advanced Materials, Volume 19, Issue 20, Date: October, 2007, Pages: 3167-3170
[41]A. Sanyal, S. Mandal, M. Sastry, Synthesis and Assembly of Gold Nanoparticles in Quasi-Linear Lysine-Keggin-Ion Colloidal Particles, Advanced Functional Materials, Volume 15, Issue 2, Date: February, 2005, Pages: 273-280
[42] X. Gao, H. Matsui, Peptide-Based Nanotubes and Their Applications in Bionanotechnology
Advanced Materials, Volume 17, Issue 17, Date: September, 2005, Pages: 2037-2050
[43] X. Gao, R. Djalali, A. Haboosheh, J. Samson, N. Nuraje, H. Matsui, Peptide Nanotubes: Simple Separation Using Size-Exclusion Columns and Use as Templates for Fabricating One-Dimensional Single Chains of Au Nanoparticles, Advanced Materials, Volume 17, Issue 14, Date: July, 2005, Pages: 1753-1757
[44] V. Bansal, A. Sanyal, D. Rautaray, A. Ahmad, M. Sastry, Bioleaching of Sand by the Fungus Fusarium oxysporum as a Means of Producing Extracellular Silica Nanoparticles, Advanced Materials, Volume 17, Issue 7, Date: April, 2005, Pages: 889-892
[45] D. Kisailus, J. H. Choi, J. C. Weaver, W. Yang, D. E. Morse, Enzymatic Synthesis and Nanostructural Control of Gallium Oxide at Low Temperature, Advanced Materials, Volume 17, Issue 3, Date: February, 2005, Pages: 314-318
[46] Stucky C, Soler G, Ribot F et al. Designed hybrid organic-inorganic nanocomposites from functional nanobuilding blocks, Chem Mater. 2001, 13;3061~3083
[47] Hideaki Y,Tae S,Takashi T. Preparation of wormhole-like mesoporous Ti02 with an extremely large surface area and stabilization of its surface by chemical vapor deposition[J].Chem Mater,2002,14(3):1023.
[48] 分子筛与多孔材料化学 徐如人 庞文琴等 科学技术出版社  649-658
[49] Wilson S T, Lok B M, Messina C A, et al. Aluminophosphate molecular sieves: a new class of microporous crystalline inorganic solids [ J ]. J Am Chem Soc, 1982, 104: 1146-1147。
[50] Huo, Q.; Xu, R. J. Chem. Soc. Chem. Commun. 1990, 783–784.

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yuh1984

木虫 (著名写手)

帮你顶上去
2楼2009-03-10 13:39:37
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nosun

金虫 (正式写手)

LZ自己好好看看吧,英文的参考,好多作者姓名都不一致
举例说如45 D. Kisailus, 49Wilson S T,50 Huo, Q这些写法明显不一致,LZ统一按你们要求的格式改吧
3楼2009-03-10 13:45:57
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mayong11

铁杆木虫 (职业作家)


xiangqi036(金币+1,VIP+0):你好,你可以弄好了,一块发过来,我一块给你金币 3-10 15:09
[5] ChenR.F.; ChenS.J. Application of Nano-technique in Early Diagnosis and Therapy for Malignant Tumors. Chin. J. Can. 2002,12:  (需要补充页数)
学海无涯,重在交流
4楼2009-03-10 14:45:47
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mayong11

铁杆木虫 (职业作家)


xiangqi036(金币+1,VIP+0):最好加上DOI 3-10 15:07
[6] Rost N. L.; GitjohannD. A. Oligonucleotide-modified gold nanoparticles for intracellular gene regulation. Science. 2006, 312:1027-1030
学海无涯,重在交流
5楼2009-03-10 14:50:55
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mayong11

铁杆木虫 (职业作家)


xiangqi036(金币+1,VIP+0):最好加上DOI 3-10 15:04
[37] Prozorov T.; Mallapragada S. K.;  Narasimhan B.; Wang L.; Palo P.;  Nilsen-Hamilton M.; Williams T. J.; Bazylinski D. A.; Prozorov R.; Canfield P. C. Protein-Mediated Synthesis of Uniform Superparamagnetic Magnetite Nanocrystals.Adv. Fun. Mat. 2007, 17(6): 951-957
学海无涯,重在交流
6楼2009-03-10 14:54:42
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liunahan

木虫之王 (文学泰斗)

原来毕业的时候常帮师兄师姐弄这些文献,现在时间紧张
生活终究多彩
7楼2009-03-10 14:55:51
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mayong11

铁杆木虫 (职业作家)

★ ★ ★
xiangqi036(金币+3,VIP+0):加上DOI 3-10 15:32
[2]Alivisatos P. The use of nanocrystals in biological detection. Nature Biotechnol. 2004, 22: 47-52
[3]Zhang Y.D.; Wang G. S. Studies of targeting effects of lactosaminated nanoparticle gene carrier on liver. J. Med.Engin. 2002, 10(6): 12-16
[4] Zhang Y.D.; Sun Y. Preparation of polybutylcyanoacrylate nanoparticles gene delivery system and study on its characteristics in vitro. Chin. J. Mod.Med. 2004.14(1): 1-6
学海无涯,重在交流
8楼2009-03-10 15:12:06
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mayong11

铁杆木虫 (职业作家)

★ ★ ★ ★ ★ ★ ★
xiangqi036(金币+7,VIP+0):加上DOI 3-10 15:33
[10] Alivisatos A. P.  Biomineralization - Naturally aligned nanocrystals. Science. 2000, 289: 736-737
[11] Addadi L.; Weiner S. Biomineralization - Crystals, asymmetry and life. Nature. 2001, 411: 753-755
[12] Sollner C. Control of crystal size and lattice formation by starmaker in otolith biomineralization. Science. 2003, 302: 282-286
[13] Banfield J F. Aggregation-based crystal growth and microstructure development in natural iron oxyhydroxide biomineralization products. Science. 2000, 289: 751-754
[14]Helen K, Baca, C.A. Cell-directed assembly of lipid-silica nanostructures providing extended cell viability. Science. 2006, 313: 337-340
[15] Kroger N. Self-assembly of highly phosphorylated silaffins and their function in biosilica morphogenesis. Science.  2002, 298: 584-586
[16]  Pooja S.; Swaranjit S. C. Potential applications of microbial surfactants in biomedical sciences. Trends in Biotechnology. 2004, 3: 142-146
学海无涯,重在交流
9楼2009-03-10 15:17:08
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mayong11

铁杆木虫 (职业作家)

★ ★ ★ ★ ★ ★ ★ ★ ★
xiangqi036(金币+9,VIP+0):加上DOI ,好么 3-10 15:33
[17] Dujardin E.; Peet C. Organization of metallic nanoparticles using tobacco mosaic virus templates. Nano Lett.2003, 3: 413–417
[18] Dujardin E.; Mann S. Bio-inspired materials chemistry. Adv Mater. 2002, 14: 775–88
[19]Ying J. Y.; Mehnert C. P.; Wong M. S. Synthesis and applications of supramolecular-templated  mesoporous materials. Angew. Chem. Int. Ed. 1999, 38: 56-7
[20]Samir M.; Joerg L. Physical approaches to biomaterial design, Nature Mat. 2009, 8: 15 - 23
[21] Markus J.; Buehler.; Yu C.Y. Deformation and failure of protein materials in physiologically extreme conditions and disease. Nature Mat. 2009, 8: 175 - 188
[22] Staniland S.; Williams W.;Telling Neil.; Van Der L. G.; Harrison A.;  Ward B.; Controlled cobalt doping of magnetosomes : in vivo. Nature Nanotech. 2008, 3: 158 - 162
[23] Dragnea B.  Bio-inspired materials: Unnatural life. Nature Mat.2008, 7: 102 - 104
[24] Brunner E. Biomimetic synthesis: Double-walled silica nanotubes. Nature Mat. 2007, 6: 398 - 399
[25] Andrew R. P.; Helen E. T. Biomimetics of photonic nanostructures. Nature Nanotech.2007,  2: 347 - 353
学海无涯,重在交流
10楼2009-03-10 15:24:39
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