[1] | Rago G,Bauer B,Svedberg F,et al.Uptake of Gold Nanoparticles in Healthy and Tumor Cells Visualized by Nonlinear Optical Microscopy[J]. J Phys Chem B,2011,115(17):5008-5016. | [2] | Wang J C,Neogi P. Forciniti D. On One-Dimensional Selfassembly of Surfactant Coated Nanoparticles[J]. Chem Phys,2006,125(19):17-23. | [3] | LIN Juqiang,CHEN Rong,CAI Changmei,et al.Biomedical Applications of Imagin Microscopy Based on Protease-Activated Fluorescent Probe[J]. Laser Optoelectron Prog,2008,45(4):50-55(in Chinese). 林居强,陈荣,蔡长美,等. 蛋白酶荧光探针及新型显微成像技术的生物医学应用[J]. 激光与光电子学进展,2008,45(4):50-55. | [4] | Pienpinijtham P,Han X X,Suzuki T,et al.Micrometer-Sized Gold Nanoplates:Starch-Mediated Photochemical Reduction Synthesis and Possibility of Application to Tip-Enhanced Raman Scattering(TERS)[J]. Phys Chem Chem Phys,2012,14(27):9636-9641. | [5] | Alex S,Tian K,Teng S,et al.Simple and Rapid Green Synthesis of Micrometer Scale Single Crystalline Gold Nanoplates Using Chitosan as the Reducing Agent[J]. J Cryst Growth,2014,406:12-17. | [6] | Qi Z,Zhou H,Matsuda N,et al.Characterization of Gold Nanoparticles Synthesized Using Sucrose by Seeding Formation in the Solid Phase and Seeding Growth in Aqueous Solution[J]. J Phys Chem B,2004,108(22):7006-7011. | [7] | Raghunandan D,Basavaraja S,Mahesh B,et al.Biosynthesis of Stable Polyshaped Gold Nanoparticles from Microwave-Exposed Aqueous Extracellular Anti- Malignant Guava Leaf Extract[J]. Nano Biotechnol,2009,5(1/2/3/4):34-41. | [8] | Coman C,Leopold L F,Rugina O D,et al.Green Synthesis of Gold Nanoparticles by Allium Sativum Extract and Their Assessment as SERS Substrate[J]. J Nanopart Res,2014,16(1):2158. | [9] | Basavegowda N,Idhayadhulla A,tLee Y R. Phyto-Synthesis of Gold Nanoparticles Using Fruit Extract of Hovenia Dulcis and Their Biological Activities[J]. Ind Crop Prod,2014,52:745-751. | [10] | Xie J,Lee J Y,Wang D I C,et al. Identification of Active Biomolecules in the High-Yield Synthesis of Single-Crystalline Gold Nanoplates in Algal Solutions[J]. Small,2007,3(4):672-682. | [11] | Lengke M F,Fleet M E,Southam G. Biosynthesis of Silver Nanoparticles by Filamentous Cyanobacteria From a Silver(Ⅰ) Nitrate Complex[J]. Langmuir,2007,23:2694-2699. | [12] | Juibari M M,Abbasalizadeh S,Jouzani G S,et al.Intensified Biosynthesis of Silver Nanoparticles Using a Native Extremophilic Ureibacillus Thermosphaericus Strain[J]. Mater Lett,2011,65:1014-1017. | [13] | Shahverdi A R,Minaeian S,Shahverdi H R,et al.Rapid Synthesis of Silver Nanoparticles Using Culture Supernatants of Enterobacteria:A Novel Biological Approach[J]. Process Biochem,2007,42:919-923. | [14] | Grzelczak M,Pérez-Juste J,Mulvaney P,et al.Shape Control in Gold Nanoparticle Synthesis[J]. Chem Soc Rev,2008,37(9):1783-1791. | [15] | Brown S,Sarikaya M,Johnson E. A Genetic Analysis of Crystal Growth[J]. J Mol Biol,2000,299:725-735. | [16] | Shankar S S,Rai A,Ahmad A,et al.Controlling the Optical Properties of Lemongrass Extract Synthesized Gold Nanotriangles and Potential Application in Infrared-Absorbing Optical Coatings[J]. Chem Mater,2005,17(3):566-572. | [17] | Ankamwar B,Chaudhary M,Sastry M. Gold Nanotriangles Biologically Synthesized Using Tamarind Leaf Extract and Potential Application in Vapor Sensing[J]. Synth React InorgMet-Org Nano-Met Chem,2005,35(1):19-26. | [18] | Chandran S P,Chaudhary M,Pasricha R,et al.Synthesis of Gold Nanotriangles and Silver Nanoparticles Using Aloe vera Plant Extract[J]. Biotechnol Prog,2006,22(2):577-583. | [19] | Liu B,Xie J,Lee J Y,et al.Optimization of High-Yield Biological Synthesis of Single Crystalline Gold Nanoplates[J]. J Phys Chem B,2005,109(32):15256-15263. | [20] | Xie J,Lee J Y,Wang D I C,et al. Silver Nanoplates: From Biological to Biomimetic Synthesis[J]. ACS Nano,2007,1(5):429-439. | [21] | Alex S,Tian K,Teng S,et al.Simple and Rapid Green Synthesis of Micrometer Scale Single Crystalline Gold Nanoplates Using Chitosan as the Reducing Agent[J]. J Cryst Growth,2014,406:12-17. | [22] | Jin R C,Cao Y W,Mirkin C A,et al.Photoinduced Conversion of Silver Nanospheres to Nanoprisms[J]. Science,2001,294(5548):1901-1903. | [23] | Jin R C,Cao Y C,Hao E,et al.Controlling Anisotropic Nanoparticle Growth Through Plasmon Excitation[J]. Nature,2003,425:487-490. | [24] | Yi Z,Li X,Xu X,et al.Green, Effective Chemical Route for the Synthesis of Silver Nanoplates in Tannic Acid Aqueous Solution[J]. Colloids Surf A,2011,392(1):131-136. | [25] | Kaviya S,Santhanalakshmi J,Viswanathan B. Biosynthesis of Silver nano-Flakes by Crossandra Infundibuliformis Leaf Extract[J]. Mater Lett,2012,67(1):64-66. | [26] | Wang Z L,Mohamed M B,Link S,et al.Crystallographic Facets and Shapes of Gold Nanorods of Different Aspect Ratio[J]. Surf Sci,1999,440:809-814. | [27] | Johnson C J,Dujardin E,Davis S A,et al.Growth and Form of Gold Nanorods Prepared by Seed-Mediated, Surfactant Directed Synthesis[J]. J Mater Chem,2002,12:1765-1770. | [28] | Jana N R,Gearheart L,Murphy C J. Wet Chemical Synthesis of High Aspect Ratio Cylindrical Gold Nanorods[J]. J Phys Chem B,2001,105(19):4065-4067. | [29] | Jana N R,Gearheart L,Murphy C J. Seeding Growth for Size Control of 5~40 nm Diameter Gold Nanoparticles[J]. Langmuir,2001,17(22):6782-6786. | [30] | Nikoobakht B,El-Sayed M A. Preparation and Growth Mechanism of Gold Nanorods(NRs) Using Seed-Mediated Growth Method[J]. Chem Mater,2003,15(10):1957-1962. | [31] | Parial D,Patra H K,Roychoudhury P,et al.Gold Nanorod Production by Cyanobacteria-A Green Chemistry Approach[J]. J Appl Phycol,2012,24(1):55-60. | [32] | Jayaseelan C,Rahuman A A,Rajakumar G,et al.Efficacy of Plant-Mediated Synthesized Silver Nanoparticles Against Hematophagous Parasites[J]. Parasitol Res,2012,111(2):921-933. | [33] | Velayutham K,Rahuman A A,Rajakumar G,et al.Larvicidal Activity of Green Synthesized Silver Nanoparticles Using Bark Aqueous Extract of Ficus Racemosa Against Culex Quinquefasciatus and Culex Gelidus[J]. Asian Pac J Trop Med,2013,6:95-101. | [34] | Kasthuri J,Kathiravan K,Rajendiran N. Phyllanthin-Assisted Biosynthesis of Silver and Gold Nanoparticles:A Novel Biological Approach[J]. J Nanopart Res,2009,11(5):1075-1085. | [35] | He S,Zhang Y,Guo Z,et al.Biological Synthesis of Gold Nanowires Using Extract of Rhodopseudomonas capsulata[J]. Biotechnol Prog,2008,24(2):476-480. | [36] | Castro L,Blázquez M L,Muñoz J A,et al.Biosynthesis of Gold Nanowires Using Sugar Beet Pulp[J]. Process Biochem,2011,46(5):1076-1082. | [37] | Byranvand M M,Kharat A N. One Pot Green Synthesis of Gold Nanowires Using Pomegranate Juice[J]. Mater Lett,2014,134:64-66. | [38] | Sun Y,Gates B,Mayers B,et al.Crystalline Silver Nanowires by Soft Solution Processing[J]. Nano Lett,2002,2(2):165-168. | [39] | Tian X L,Li J,Pan S L. Facile Synthesis of Single-Crystal Silver Nano Wires Through a Tannin-Reduction Process[J]. J Nanopart Res,2009,11:1839-1844. | [40] | Huang X,Wu H,Pu S,et al.One-Step Room-Temperature Synthesis of Au@Pd Core Shell Nanoparticles With Tunable Structure Using Plant Tannin as Reductant and Stabilizer[J]. Green Chem,2011,13(4):950-957. | [41] | Turkevich J,Stevenson P C,Hillier J. A Study of the Nucleation and Growth Processes in the Synthesis of Colloidal Gold. Discuss[J]. Faraday Soc,1951,11:55-75. | [42] | Qi Z,Zhou H,Matsuda N,et al.Controlled Nucleation for the Regulation of the Particle Size in Monodisperse Gold Suspensions[J]. Nature(Phys Sci),1973,241:20-22. | [43] | Pong B-K,Elim H I,Chong J-X,et al.New Insights on the Nanoparticle Growth Mechanism in the Citrate Reduction of Gold(Ⅲ) Salt:Formation of the Au Nanowire Intermediate and Its Nonlinear Optical Properties[J]. J Phys Chem C,2007,111:6281-6287. | [44] | GAO Minjie,SUN Lei,WANG Zhihua,et al.Progress on the Preparation and Growth Mechanism of Anisotropic Silver Nanoparticles[J]. Mater Rev,2012,(11):45-50(in Chinese). 高敏杰,孙磊,王治华,等. 各向异性银纳米材料的制备及生长机制研究进展[J]. 材料导报,2012,(11):45-50. | [45] | Lukman A I,Gong B,Marjo C E,et al.Facile Synthesis Stabiliza Tion and Antibacterial Performance of Discrete Ag Nanoparticles Using Medicago Sativa Seed Exudates[J]. J Colloid Interface Sci,2011,353(2):433-444. | [46] | Gan P P,Li S F Y. Potential of Plant as a Biological Factory to Synthesize Gold and Silver Nanoparticles and Their Applications[J]. Rev Environ Sci Bio,2012,11(2):169-206. | [47] | Gardea-Torresdey J L,Tiemann K J,Parsons J G,et al. XAS Investigations into the Mechanism(s) of Au(Ⅲ) Binding and Reduction by Alfalfa Biomas[J]. Microchem J,2002,71(2/3):193-204. |
|