434
Views
183
CrossRef citations to date
0
Altmetric
Research Article

CRC 675—Current Trends in Phytosynthesis of Metal Nanoparticles

, &
Pages 277-284 | Published online: 16 Dec 2008

REFERENCES

  • B. Ankamwar, M. Chaudhary, and M. Sastry. (2005). Gold nanotriangles biologically synthesized using tamarind leaf extract and potential applications in vapour sensing.. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry 35 (1):19–26.
  • M.A. Albrecht, C. W. Evan, and C. L. Raston. (2006). Green chemistry and the health implications of nanoparticles. Green Chemistry 8 417–432.
  • V. Armendariz, J. L. Gardea-Torresdey, I. Herrera, A. D. Moller, M. Jose-Yacaman, J. R. Peralta-Videa, and H. Troiani. (2004a). HRTEM characterization of gold nanoparticles produced by wheat biomass. Revista Mexicana de Fisica 50:7–11.
  • V. Armendariz, J. L. Gardea-Torresedey, J. Gonzalez, I. Herrera, M. Jose-Yacaman, and J. G. Parsons. (2002). Gold nanoparticle formation by oat and wheat biomassses. 2002. Proceedings- Waste Research Technology 224–232.
  • V. Armendariz, J. L. Gardea-Torresdey, I. Herrera, M. Jose-Yacaman, J. R. Peralta-Videa, and P. Santigo. (2004b). Size controlled gold nanoparticle formation by Avena sativa biomass: use of plants in nanobiotechnology. Journal of Nanoparticle Research 6 (4):377–382.
  • I. Arnaud, J. P. Abid, H. H. Girault, and C. Roussel. (2004). Size selective separation of gold nanoparticles using isoelectric focusing electrophoresis (IEF). Chemical Communications 787–788.
  • V. Bansal, A. Ahmad, M. Sastry, and D. Rautray. (2004). Biosynthesis of zirconia nanoparticles using the fungus Fusarium oxysporum. Journal of Material Chemistry 14 3303–3305.
  • A. Barrrero, and I. G. Loscertales. (2007). Micro and Nanoparticles via Capillary Flow. Annual Review of Fluid Mechanics 39:89–106.
  • D. Bhattacharya, and R. K. Gupta. (2005). Nanotechnology and Potential of Microorganisms. Critical Reviews in Biotechnology 24 (4):199–204.
  • S. P. Chandran, A. Ahmad, M. Chaudhary, R. Pasricha, and M. Sastry. (2006). Synthesis of gold nanotriangles and silver nanoparticles using Aloe vera plant extract. Biotechnology Program 22 (2):577–583.
  • W. N. Christopher, J. L. Gardea-Torresdey, F. N. Moreno, B. Robert, and C. T. Wreesman. (2003). Gold Phytomining: Novel developments in plant-based mining system. In Proceedings of the Gold 2003 Conference 35–45.
  • C. T. Dameron, L. E. Brus, P. J. Caroll, A. R. Korton, R. K. Mehra, R. N. Reese, M. L. Steigerwald, and D. R. Winge. (1989). Biosynthesis of cadmium sulfide quantum semiconductor cryastallits. Nature 338 596–597.
  • N. Duran, O. L. Alves, G. I. H. De Souza, E. Esposito, and P. D. Marcato. (2007). Antibacterial effect of silver nanoparticles by fungal process on textile fabrics and their effluent treatment. Journal of Biomedical Nanotechnology 3 203–208.
  • R. Elghanian, R. L. Letsinger, C. A. Mirkin, C. Mucic, and J. J. Storhoff. (1997). Selective colorimetric detection of polynucleotides based on the distance-dependent optical properties of gold nanoparticles. Science 277 1078–1081.
  • G. Gamez, K. Dokken, L. R. Furenlid, J. L. Gardea-Torresdey, I. Herrera, M. W. Renner, K. J. Tiemann, and M. J. Yacaman. (1999). Spectroscopic studies of Gold (III) binding to alfalfa biomass. Proceedings of the 1999 Conference on Hazardous Waste Research. 78–90.
  • J. L. Gardea-Torresedey. (2002). Plants with the Midas Touch: Formation of gold nanoparticles by Alfalfa plants. Stanford Synchrotton Radiation Laboratory Headlines 3/1 (31st July, 2002)
  • J. L. Gardea-Torresedey, V. Armendariz, I. Herreira, J. G. Parsons, J. R. Peralta- Videa, K. J. Teimann, and K. J. Torresday. (2003). Binding of silver (I) ions by alfalfa biomass (Medicago sativa): batch pH, time, temperature, and ionic strength studies. Journal of Hazardous Substance Research 4 1–15.
  • J. L. Gardea-Torresedey, K. Dokken, G. Gambez, K. J. Torresday, and M. J. Yacman. (1998). Innovative technology to recover Gold (III) from aqueous solutions by using Medicago sativa (Alfalfa). Proceedings of the 1998 Conference on Hazardous Waste Research 122–133.
  • J. L. Gardea-Torresdey, K. Dokken, G. Gamez, M. Jose-Yacaman, S. Tehuacanero, and K. J. Tiemann. (1999). Gold nanoparticles obtained by bio-precipitation from gold (III) solutions. Journal of Nanoparticle Research. 1 397–404.
  • J. L. Gardea-Torresedey, E. Gomez, M. Jose- Yacaman, J. G. Parsons, J. R. Peralta- Videa, and H. Tioani. (2003b). Alfalfa sprouts: A natural Source for the synthesis of silver nanoparticles. Langmuir 19 1357–1361.
  • J. L. Gardea, E. Gombez, J. G. Parsons, J. Peralta-Videa, P. Santiago, K. J. Torresday, H. E. Troiani, and J. S. Yacaman. (2002). Formation and growth of Au nanoparticles inside live alfalfa plants. Nano Letters 2 (4):397–401.
  • R. Groning, S. Adesina, and R. S. Muller. (2004). Formation of particles in aqueous infusions of the medicinal plant Harungana madagascariensis. Pharmazie 59 (4):279–281.
  • M. Hanauer, A. Lotz, S. Pierrat, C. Sonnichsen, and I. Zins. (2007). Separation of nanoparticles by gel electrophoresis according to size and shape. Nano Letters 7 (9):2881–2885.
  • A.T. Harris, and R. Bali. (2007). On the formation and extent of uptake of silver nanoparticles by live plants. Journal of Nanoparticle Research 11051 9288–9293.
  • R. G. Haverkamp, D. V. Agterveld, and A. T. Marshall. (2007). Pick your carats: Nanoparticles of gold-Silver copper alloy produced in vivo. Journal of Nanoparticle Research 9 (4):697–700.
  • J. Huang, C. Chen, N. He, J. Hong, Y. Lu, L. Qingbiao, W. Shao, D. Sun, X. H. Wang, Y. Wang, and X. Yiang. (2007). Biosynthesis of silver and gold nanoparticles by novel sundried Cinnamomum camphora leaf. Nanotechnology 18 105–106.
  • N. R. Jana, T. Pal, T. K. Sau, and Z. L. Wang. (2000). Seed- mediated growth method to prepare cubic copper nanoparticles. Current Science 79 (9):1367–1370.
  • R. Jin, Y. Cao, K. L. Kelly, C. A. Mirkin, G. C. Schatz, and J. G. Zheng. (2001). Photoinduced conversion of silver nanospheres to nanoprisms. Science 294:1901–1903.
  • T. Klaus, C. G. Granqvist, R. Joerger, and E. Olsson. (1999). Silver-based crystalline nanoparticles, microbially fabricated. Proceedings of the National Academy of Sciences 96 (24):13611–13614.
  • J. M. Kohler, U. Hubner, H. Romanus, and J. Wagner. (2007). Formation of star-like and core-shell AuAg nanoparticles during two and three step preparation in batch and microfluidic systems. Journal of Nanomaterials. 1155 98134–98141.
  • M. Kowshik, N. Deshmukh, S. K. Kulkarni, K. M. Paknikar, W. Vogel, and J. Urban. (2002). Microbial synthesis of Semiconductor CdS nanoparticles, their characterization, and their use in fabrication of an ideal diode. Biotechnology and Bioengineering 78 (5):583–588.
  • M. Kowshik, S. Ashataputre, S. Kharrazi, S. K. Kulkarni, K. M. Paknikari, W. Vogel, and J. Urban. (2003). Extracellular synthesis of silver nanoparticles by a silver-tolerant yeast strain MKY3. Nanotechnology 14 95–100.
  • A. E. Lamb, W. N. Anderson, and R. G. Haverkamp. (2001a). a. The extraction of gold from plants and its application to phytomining. Chemistry in New Zealand 9 31–33.
  • A. E. Lamb, W. N. Anderson, and R. G. Haverkamp. (2001b). The induced accumulation of gold in the plants Brassica juncea, Berkheya coddii and chicory. Chemistry in New Zealand 9:34–36.
  • S. Li, L. Qui, Y. Shen, A. Xie, X. Yu, L. Zhang, and Q. Zhang. (2007). Green synthesis of silver nanoparticles using Capsicum annum L. extract. Green Chemistry 9 852–858.
  • M. L. Lopez, V. Armnendariz, J. L. Gardea-Torresdey, J. Henning, I. Herrera, J. R. Peralta-Videa, G. Rosa, and H. Troiani. (2005). Gold binding by native and chemically modified hops biomass. Bioinorganic Chemistry and Applications 3 (1–2):29–41.
  • D. Mandal, M. E. Bolander, P. Mukherjee, D. Mukhopadhyay, and G. Sarkar. (2006). The use of microorganisms for the formation of metal nanoparticles and their application. Applied Microbiology Biotechnology 69 485–492.
  • I. Margaret, A. Burd, I. Lung, S. L. Lui, and V. K. M. Poon. (2006). Antimicrobial activities of silver dressings: an in vitro comparison. Journal of Medical Microbiology 55:59–63.
  • A. T. Marshall, D. Agvterveld, C. E. Davis, J. L. Gardea-Torresdey, R. G. Haverkamp, and J. G. Parsons. (2007). Accumulation of gold Nanoparticles in Brassica juncea. International Journal of Phytoremediation 9 (3):197–206.
  • P. Mohanpuria, N. K. Rana, and S. K. Yadav. (2007). Biosynthesis of nanoparticles: technological concepts and future applications. Journal of Nanoparticle Research 007 9275–9280.
  • B. Nair, and T. Pradeep. (2002). Coalescence of nanoclusters and formation of submicron crytallites assisted by Lactobacillus strains. Crystal Growth and Design. 2 293–298.
  • I. Pastoriza-Santos, and L. M. Liz-Marzan. (2000). Reduction of silver nanoparticles in DMF Formation of monolayers and stable colloids. Pure Applied Chemistry 72 (1–2):83–90.
  • V. F. Puntes, A. P. Alivisatos, and K. M. Krishnan. (2001). Colloidal nanocrystal shape and size control: The case of cobalt. Science 291 2115–2117.
  • V. R. Reddy. (2006). Gold Nanoparticles: Synthesis and Applications. SYNLETT 11 1791–1792.
  • C. N. Rao, and A. K. Cheetham. (2001). Science and technology of nanomaterials: current status and future prospects. Journal of Materials Chemistry 11 2887–2894.
  • A. Richardson, B. C. Chan, R. D. Crouch, A. Janiec, B. C. Chan, and R. D. Crouch. (2006). Synthesis of silver nanoparticles: An undergraduate laboratory using green approach. Chemical educator 11 331–333.
  • E. Rodriguez, G. Cruz- Jimenez, J. G. Parsons, J. R. Peralta-Videa, and J. Romero-Gonzalez. (2007). Potential of Chilopsis linearsis for gold phytomining: using XAS to determine gold reduction and nanoparticle formation within plant tissues. International Journal of Phytoremediation 9 (2):133–147.
  • A. P. Rodrıguez, M. Flores-Acosta, R. Peirez-Salas, and R. Rodrıguez-Mijangos. (2006). Cu halide nanoparticle formation by diffusion of copper in alkali halide crystals. Revista Mexicana de Fisica 52 (2):151–154.
  • Y. Roh, J. Bai, R. J. Lauf, A. D. Mcmillan, T. J. Phelps, C. J. Rawn, and C. Zhang. (2001). Microbial synthesis of metal- substituted magnetites. Solid State Communication. 118 529–534.
  • O. V. Salata. (2004). Applications of nanoparticles in biology and medicine. Journal of Nanobiotechnology 2 1–6.
  • M. Sastry, A. Ahmad, M. I. Khan, and R. Kumar. (2003). Biosynthesis of metal nanoparticles using fungi and actinomycete. Current Science 85 (2):162–170.
  • S.K. Shahi, and M. Patra. (2003). Microbially synthesized bioactive nanoparticles and their formulation active against Human Pathogenic fungi. Reviews on Advanced Material Science 5:501–509.
  • S. Senapati, A. Ahmed, M. I. Khan, R. Kumar, and M. Sastry. (2005). Extracellular biosynthesis of bimetallic au-ag alloy nanoparticles. Small 1 517–520.
  • S. S. Shankar, A. Ahmad, R. Pasricha, and M. Sastry. (2003). Bioreduction of chloroaurate ions by Geranium leaves and its endophytic fungus yields gold nanoparticles of different shapes. Journal of Material chemistry 13 1822–1826.
  • S. S. Shankar, A. Ahmed, B. Akkamwar, M. Sastry, A. Rai, and A. Singh. (2004a). Biological synthesis of triangular gold nanoprisms. Nature 3 482–488.
  • S. S. Shankar, A. Ahmad, A. Rai, and M. Sastry. (2004b). Rapid synthesis of Au, Ag and bimetallic Au core-Ag shell nanoparticles by using neem (Azadirachta indica) leaf broth. Journal of Colloid and Interface Science 275 (5):496–502.
  • N. C. Sharma, J. L. Gardea-Torresdey, S. Nath, T. Pal, J. G. Parsons, and S. V. Sahi. (2007). Synthesis of plant mediated gold nanoparticle and catalytic role of biomatrix embedded nanomaterials Environmental Science Technology. ASAP Article 936 2929–2933.
  • Y. Sun, and Y. Xia. (2002). Shape-Controlled Synthesis of Gold and Silver Nanoparticles. Science 298 (5601):2176–2179.
  • N. Taniguchi. (1974). On the Basic Concept of Nano-Technology. Proceedings of the International Conference on Production Engineering Tokyo, Part II. Japan Society of Precision Engineering.
  • A. Tavakoli, A. Kargari, and M. Sohrabi. (2007). A review of methods for synthesis of nanostructured metals. Chemical Papers 61 (3):151–170.
  • A. J. Venkataraman, A. John, R. V. Omkumar, T. Pradeep, S. Priya, R. Rajeev Kumar, T. R. Santhosh Kumar, and C. Subramaniam. (2005). Growth of gold nanoparticles in human cells. Langmuir 21 11562–11567.
  • H. Wei, J. Li, E. Wang, and Y. Wang. (2007). Silver nanoparticles coated with adenine: preparation, self-assembly and application in surface-enhanced Raman scattering. Nanotechnology 18:175610–175615.
  • N. Yang, and K. Aoki. (2005). Voltammetry of the silver alkylcarboxylate nanoparticles in suspension. Electrochimica Acta 50 4868–4872.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.