Biosynthesis of gold nanoparticles using plant extracts

被引:168
作者
Noruzi, Masumeh [1 ]
机构
[1] ABRII, Nanotechnol Dept, Karaj, Iran
关键词
Green synthesis; Metallic nanoparticles; Characterizations; Gold nanoparticles; MEDIATED GREEN SYNTHESIS; SILVER NANOPARTICLES; BIOLOGICAL SYNTHESIS; METAL NANOPARTICLES; OPTICAL-PROPERTIES; AG NANOPARTICLES; RAPID SYNTHESIS; EXTRACELLULAR BIOSYNTHESIS; LEAF EXTRACT; AU;
D O I
10.1007/s00449-014-1251-0
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Because of the widespread use of metallic nanoparticles in biology, pharmaceuticals, and medicine, biosynthesis methods are being considered to prepare these nanoparticles. Among biosynthesis methods mentioned in the literature, the use of plant extracts has gained great importance due to the fact that most of the plants are generally inexpensive, available, and nontoxic. Moreover, plant extracts are rich in different types of reducing and capping agents. Therefore, these methods have a high potential for scale-up and can produce nanoparticles in different morphologies. In this paper, different green methods used to prepare metallic nanoparticles and the types of characterization methods for their identification have been comprehensively explained. Since gold nanoparticles are considered more biocompatible than other metallic nanoparticles, research studies performed on green synthesis of gold nanoparticles using plant extracts and different applications of these nanoparticles have been reviewed and discussed.
引用
收藏
页码:1 / 14
页数:14
相关论文
共 103 条
[1]   Extracellular biosynthesis of silver nanoparticles using the fungus Fusarium oxysporum [J].
Ahmad, A ;
Mukherjee, P ;
Senapati, S ;
Mandal, D ;
Khan, MI ;
Kumar, R ;
Sastry, M .
COLLOIDS AND SURFACES B-BIOINTERFACES, 2003, 28 (04) :313-318
[2]   Green synthesis of well-dispersed gold nanoparticles using Macrotyloma uniflorum [J].
Aroma, S. Aswathy ;
Vidhu, V. K. ;
Philip, Daizy .
SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY, 2012, 85 (01) :99-104
[3]   Banana peel extract mediated novel route for the synthesis of palladium nanoparticles [J].
Bankar, Ashok ;
Joshi, Bhagyashree ;
Kumar, Ameeta Ravi ;
Zinjarde, Smita .
MATERIALS LETTERS, 2010, 64 (18) :1951-1953
[4]   Extracellular biosynthesis of silver nanoparticles using the fungus Aspergillus fumigatus [J].
Bfilainsa, KC ;
D'Souza, SF .
COLLOIDS AND SURFACES B-BIOINTERFACES, 2006, 47 (02) :160-164
[5]   Photo-bio-synthesis of irregular shaped functionalized gold nanoparticles using edible mushroom Pleurotus florida and its anticancer evaluation [J].
Bhat, Ravishankar ;
Sharanabasava, V. G. ;
Deshpande, Raghunandan ;
Shetti, Ullas ;
Sanjeev, Ganesh ;
Venkataraman, A. .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 2013, 125 :63-69
[6]   Gold nanoparticles in nanomedicine: preparations, imaging, diagnostics, therapies and toxicity [J].
Boisselier, Elodie ;
Astruc, Didier .
CHEMICAL SOCIETY REVIEWS, 2009, 38 (06) :1759-1782
[7]   Measurement of nanoparticles by light-scattering techniques [J].
Brar, Satinder K. ;
Verma, M. .
TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2011, 30 (01) :4-17
[8]   Biosynthesis of gold nanowires using sugar beet pulp [J].
Castro, Laura ;
Luisa Blazquez, M. ;
Munoz, Jesus A. ;
Gonzalez, Felisa ;
Garcia-Balboa, Camino ;
Ballester, Antonio .
PROCESS BIOCHEMISTRY, 2011, 46 (05) :1076-1082
[9]   Synthesis of gold nanotriangles and silver nanoparticles using Aloe vera plant extract [J].
Chandran, SP ;
Chaudhary, M ;
Pasricha, R ;
Ahmad, A ;
Sastry, M .
BIOTECHNOLOGY PROGRESS, 2006, 22 (02) :577-583
[10]   Evidence of the production of silver nanoparticles via pretreatment of Phoma sp.3.2883 with silver nitrate [J].
Chen, JC ;
Lin, ZH ;
Ma, XX .
LETTERS IN APPLIED MICROBIOLOGY, 2003, 37 (02) :105-108