African Journal of
Microbiology Research

  • Abbreviation: Afr. J. Microbiol. Res.
  • Language: English
  • ISSN: 1996-0808
  • DOI: 10.5897/AJMR
  • Start Year: 2007
  • Published Articles: 5233

Full Length Research Paper

Biosynthesis of cadmium selenide quantum dots by Providencia vermicola

Rawan S. Abou-Assy
  • Rawan S. Abou-Assy
  • Department of Biology, Faculty of Science, Taif University, Taif, KSA.
  • Google Scholar
Bahig A. El-Deeb
  • Bahig A. El-Deeb
  • Department of Biology, Faculty of Science, Taif University, Taif, KSA.
  • Google Scholar
Abdullah D. Al-Talhi
  • Abdullah D. Al-Talhi
  • Department of Biology, Faculty of Science, Taif University, Taif, KSA.
  • Google Scholar
Nasser Y. Mostafa
  • Nasser Y. Mostafa
  • Department of Chemistry, Faculty of Science, Taif University, Taif, KSA.
  • Google Scholar


  •  Received: 31 October 2018
  •  Accepted: 02 January 2019
  •  Published: 14 February 2019

References

Ahmad A, Mukherjee P, Mandal D, Senapati S, Khan MI, Kumar R, Sastry M (2002). Enzyme mediated extracellular synthesis of CdS nanoparticles by the fungus, Fusarium oxysporum. Journal of the American Chemical Society 124(41):12108-12109.
Crossref

 

Ahmad A, Mukherjee P, Senapati S, Mandal D, Khan MI, Kumar R, Sastry M (2003). Extracellular biosynthesis of silver nanoparticles using the fungus Fusarium oxysporum. Colloids and Surfaces B: Biointerfaces 28(4):313-318.
Crossref

 
 

Alivisatos AP (1996). Semiconductor clusters, nanocrystals, and quantum dots. Science 271(5251):933-937.
Crossref

 
 

Ayano H, Kuroda M, Soda S, Ike M (2015). Effects of culture conditions of Pseudomonas aeruginosa strain RB on the synthesis of CdSe nanoparticles. Journal of bioscience and bioengineering 119(4):440-445.
Crossref

 
 

Ayano H, Miyake M, Terasawa K, Kuroda M, Soda S, Sakaguchi T, Ike M (2014). Isolation of a selenite-reducing and cadmium-resistant bacterium Pseudomonas sp. strain RB formicrobial synthesis of CdSe nanoparticles. Journal of bioscience and bioengineering 117(5):576-581.
Crossref

 
 

Bajaj M, Schmidt S, Winter J (2012). Formation of Se (0) Nanoparticles by Duganella sp. and Agrobacterium sp. isolated from Se-laden soil of North-East Punjab, India. Microbial cell factories 11(1):1-14.
Crossref

 
 

Bera D, Qian L, Tseng T-K, Holloway PH (2010). Quantum dots and their multimodal applications: a review. Materials 3(4):2260-2345.
Crossref

 
 

Bruchez M, Moronne M, Gin P, Weiss S, Alivisatos AP (1998). Semiconductor nanocrystals as fluorescent biological labels. science 281(5385):2013 2016.

 
 

Chan WC, Maxwell DJ, Gao X, Bailey RE, Han M, Nie S (2002). Luminescent quantum dots for multiplexed biological detection and imaging. Current Opinion in Biotechnology 13(1):40-46.
Crossref

 
 

Crookes-Goodson WJ, Slocik JM, Naik RR (2008). Bio-directed synthesis and assembly of nanomaterials. Chemical Society Reviews 37(11):2403-2412.
Crossref

 
 

Cui R, Liu HH, Xie HY, Zhang ZL, Yang YR, Pang DW, Xie ZX, Chen BB, Hu B, Shen P (2009). Living yeast cells as a controllable biosynthesizer for fluorescent quantum dots. Advanced Functional Materials 19(15):2359-2364.
Crossref

 
 

Dameron CT, Winge DR (1990). Characterization of peptide-coated cadmium-sulfide crystallites. Inorganic Chemistry 29(7):1343-1348.
Crossref

 
 

Danek M, Jensen K, Murray C, Bawendi M (1994). Electrospray organometallic chemical vapor deposition—A novel technique for preparation of II–VI quantum dot composites. Applied physics letters 65(22):2795-2797.
Crossref

 
 

Dhar R, Singh S, Kumar A (2015). Effect of capping agents on optical and antibacterial properties of cadmium selenide quantum dots. Bulletin of Materials Science 38(5):1247-1252.
Crossref

 
 

Dubertret B, Skourides P, Norris DJ, Noireaux V, Brivanlou AH, Libchaber A (2002). In vivo imaging of quantum dots encapsulated in phospholipid micelles. Science 298(5599):1759-1762.
Crossref

 
 

El-Deeb B, Al-Talhi A, Mostafa N, Abou-assy R (2018). Biological Synthesis and Structural Characterization of Selenium Nanoparticles and Assessment of Their Antimicrobial Properties. American Scientific Research Journal for Engineering, Technology, and Sciences 45:135-170.

 
 

Fesharaki PJ, Nazari P, Shakibaie M, Rezaie S, Banoee M, Abdollahi M, Shahverdi AR (2010). Biosynthesis of selenium nanoparticles using Klebsiella pneumoniae and their recovery by a simple sterilization process. Brazilian Journal of Microbiology 41(2):461-466.
Crossref

 
 

Fokina A, Lee Y, Chang JH, Braun L, Bae WK, Char K, Lee C, Zentel R (2016). Side-chain conjugated polymers for use in the active layers of hybrid semiconducting polymer/quantum dot light emitting diodes. Polymer Chemistry 7(1):101-112.
Crossref

 
 

Ghosh A, Mohod AM, Paknikar KM, Jain RK (2008). Isolation and characterization of selenite-and selenate-tolerant microorganisms from selenium-contaminated sites. World Journal of Microbiology and Biotechnology 24(8):1607-1611.
Crossref

 
 

Gupta P, Ramrakhiani M (2009). Influence of the particle size on the optical properties of CdSe nanoparticles. The Open Nanoscience Journal 3(1)15-19.
Crossref

 
 

Han M, Gao X, Su JZ, Nie S (2001). Quantum-dot-tagged microbeads for multiplexed optical coding of biomolecules. Nature Biotechnology 19(7):631-635.
Crossref

 
 

Hines MA, Guyot-Sionnest P (1996). Synthesis and characterization of strongly luminescing ZnS-capped CdSe nanocrystals. The Journal of Physical Chemistry 100(2):468-471.
Crossref

 
 

Huang J, Li Q, Sun D, Lu Y, Su Y, Yang X, Wang H, Wang Y, Shao W, He N (2007). Biosynthesis of silver and gold nanoparticles by novel sundried Cinnamomum camphora leaf. Nanotechnology 18(10):1-11.
Crossref

 
 

Kairdolf BA, Smith AM, Stokes TH, Wang MD, Young AN, Nie S (2013). Semiconductor quantum dots for bioimaging and biodiagnostic applications. Annual Review of Analytical Chemistry (Palo Alto, Calif) 6(1):62-143.
Crossref

 
 

Kumar SA, Ansary AA, Ahmad A, Khan M (2007). Extracellular biosynthesis of CdSe quantum dots by the fungus, Fusarium oxysporum. Journal of Biomedical Nanotechnology 3(2):190-194.
Crossref

 
 

Malarkodi C, Rajeshkumar S, Paulkumar K, Vanaja M, Gnanajobitha G, Annadurai G (2014). Biosynthesis and antimicrobial activity of semiconductor nanoparticles against oral pathogens. Bioinorganic Chemistry and Applications 2014 Article ID 347167.
Crossref

 
 

Medintz IL, Uyeda HT, Goldman ER, Mattoussi H (2005). Quantum dot bioconjugates for imaging, labelling and sensing. Nature Materials 4(6):435-446.
Crossref

 
 

Mukherje M (2014). In vitro antimicrobial activity of polyacrylamide doped magnetic iron oxide nanoparticles. Int J Mater Mech Manuf 2(2):64-66.
Crossref

 
 

Ogermann D, Wilke T, Kleinermanns K (2012). CdS x Se y/TiO 2 Solar Cell Prepared with Sintered Mixture Deposition. Open Journal of Physical Chemistry 2(1):47-57.
Crossref

 
 

Pearce CI, Coker VS, Charnock JM, Pattrick RA, Mosselmans JFW, Law N, Beveridge TJ, Lloyd JR (2008). Microbial manufacture of chalcogenide-based nanoparticles via the reduction of selenite using Veillonella atypica: an in situ EXAFS study. Nanotechnology 19(15):155603-155616.
Crossref

 
 

Peng X, Manna L, Yang W, Wickham J, Scher E, Kadavanich A, Alivisatos AP (2000). Shape control of CdSe nanocrystals. Nature 404(6773):59-61.
Crossref

 
 

Peng ZA, Peng X (2001). Formation of high-quality CdTe, CdSe, and CdS nanocrystals using CdO as precursor. Journal of the American Chemical Society 123(1):183-184.
Crossref

 
 

Piotrowska-Seget Z, Cycoń M, Kozdroj J (2005). Metal-tolerant bacteria occurring in heavily polluted soil and mine spoil. Applied Soil Ecology 28(3):237-246.
Crossref

 
 

Qu L, Peng ZA, Peng X (2001). Alternative routes toward high quality CdSe nanocrystals. Nano Letters 1(6):333-337.
Crossref

 
 

Ramírez HY, Flórez J, Camacho ÁS (2015). Efficient control of coulomb enhanced second harmonic generation from excitonic transitions in quantum dot ensembles. Physical Chemistry Chemical Physics 17(37):23938-23946.
Crossref

 
 

Saa L, Virel A, Sanchez‐Lopez J, Pavlov V (2010). Analytical applications of enzymatic growth of quantum dots. Chemistry–A European Journal 16(21):6187-6192.
Crossref

 
 

Sanghi R, Verma P (2009). A facile green extracellular biosynthesis of CdS nanoparticles by immobilized fungus. Chemical Engineering Journal 155(3):886-891.
Crossref

 
 

Shankar SS, Rai A, Ahmad A, Sastry M (2004). Rapid synthesis of Au, Ag, and bimetallic Au core–Ag shell nanoparticles using Neem (Azadirachta indica) leaf broth. Journal of Colloid and Interface Science 275(2):496-502.
Crossref

 
 

Shirsat S, Kadam A, Jadhav VV, Zate MK, Naushad M, Pawar B, Mane RS, Kim KH (2016). An eco-friendly physicocultural-based rapid synthesis of selenium nanoparticles. RSC Advances 6(54):48420-48426.
Crossref

 
 

Shivashankarappa A, Sanjay K (2015). Study on biological synthesis of cadmium sulfide nanoparticles by Bacillus licheniformis and its antimicrobial properties against food borne pathogens. Nanoscience and Nanotechnology Research 3(1):6-15.

 
 

Smith AM, Nie S (2009). Semiconductor nanocrystals: structure, properties, and band gap engineering. Accounts of Chemical Research 43(2):190-200.
Crossref

 
 

Srivastava N, Mukhopadhyay M (2013). Biosynthesis and structural characterization of selenium nanoparticles mediated by Zooglearamigera. Powder Technology 244:26-29.
Crossref

 
 

Suresh AK (2014). Extracellular bio-production and characterization of small monodispersed CdSe quantum dot nanocrystallites. SpectrochimicaActa Part A: Molecular and Biomolecular Spectroscopy 130:344-349.
Crossref

 
 

Syed A, Ahmad A (2013). Extracellular biosynthesis of CdTe quantum dots by the fungus Fusarium oxysporum and their anti-bacterial activity. SpectrochimicaActa Part A: Molecular and Biomolecular Spectroscopy 106:41-47.
Crossref

 
 

Tam K, Ho CT, Lee J-H, Lai M, Chang CH, Rheem Y, Chen W, Hur H-G, Myung NV (2010). Growth mechanism of amorphous selenium nanoparticles synthesized by Shewanella sp. HN-41. Bioscience, biotechnology, and biochemistry 74(4):696-700.
Crossref

 
 

Tani A, Kato S, Kajii Y, Wilkinson M, Owen S, Hewitt N (2007). A proton transfer reaction mass spectrometry based system for determining plant uptake of volatile organic compounds. Atmospheric Environment 41(8):1736-1746.
Crossref

 
 

Wu S-M, Su Y, Liang R-R, Ai X-X, Qian J, Wang C, Chen J-Q, Yan Z-Y (2015). Crucial factors in biosynthesis of fluorescent CdSe quantum dots in Saccharomyces cerevisiae. RSC Advances 5(96):79184-79191.
Crossref

 
 

Wu X, Liu H, Liu J, Haley KN, Treadway JA, Larson JP, Ge N, Peale F, Bruchez MP (2003). Immunofluorescent labeling of cancer marker Her2 and other cellular targets with semiconductor quantum dots. Nature Biotechnology 21(1):41-46.
Crossref

 
 

Yan Z, Qian J, Gu Y, Su Y, Ai X, Wu S (2014). Green biosynthesis of biocompatible CdSe quantum dots in living Escherichia coli cells. Materials Research Express 1(1):15401-15415.
Crossref

 
 

Zhang L, Jiang Y, Ding Y, Povey M, York D (2007). Investigation into the antibacterial behaviour of suspensions of ZnO nanoparticles (ZnOnanofluids). Journal of Nanoparticle Research 9(3):479-489.
Crossref

 
 

Zhou J, Yang Y, Zhang C (2015). Toward biocompatible semiconductor quantum dots: from biosynthesis and bioconjugation to biomedical application. Chemical reviews 115(21):11669-11717.
Crossref