Scalable economic extracellular synthesis of CdS nanostructured particles by a non-pathogenic thermophile

Author:

Moon Ji-Won1,Ivanov Ilia N2,Duty Chad E3,Love Lonnie J4,Rondinone Adam J2,Wang Wei5,Li Yi-Liang6,Madden Andrew S7,Mosher Jennifer J8,Hu Michael Z9,Suresh Anil K110,Rawn Claudia J3,Jung Hyunsung1,Lauf Robert J1,Phelps Tommy J1

Affiliation:

1. grid.135519.a 0000000404462659 Biosciences Division Oak Ridge National Laboratory (ORNL) 37831 Oak Ridge TN USA

2. grid.135519.a 0000000404462659 Center for Nanophase Materials Sciences ORNL 37831 Oak Ridge TN USA

3. grid.135519.a 0000000404462659 Materials Science and Technology Division ORNL 37831 Oak Ridge TN USA

4. grid.135519.a 0000000404462659 Measurement Science and Systems Engineering Division ORNL 37831 Oak Ridge TN USA

5. grid.135519.a 0000000404462659 Environmental Sciences Division ORNL 37831 Oak Ridge TN USA

6. grid.194645.b 0000000121742757 Department of Earth Sciences The University of Hong Kong Hong Kong China

7. grid.266900.b 0000000404470018 School of Geology and Geophysics University of Oklahoma 73019 Norman OK USA

8. grid.274177.0 0000000096152850 Stroud Water Research Center 19311 Avondale PA USA

9. grid.135519.a 0000000404462659 Energy and Transportation Science Division ORNL 37831 Oak Ridge TN USA

10. grid.410425.6 0000000404218357 Department of Molecular Medicine City of Hope 1500 East Duarte Road 91010 Duarte CA USA

Abstract

Abstract We report microbially facilitated synthesis of cadmium sulfide (CdS) nanostructured particles (NP) using anaerobic, metal-reducing Thermoanaerobacter sp. The extracellular CdS crystallites were <10 nm in size with yields of ~3 g/L of growth medium/month with demonstrated reproducibility and scalability up to 24 L. During synthesis, Thermoanaerobacter cultures reduced thiosulfate and sulfite salts to H2S, which reacted with Cd2+ cations to produce thermodynamically favored NP in a single step at 65 °C with catalytic nucleation on the cell surfaces. Photoluminescence (PL) analysis of dry CdS NP revealed an exciton-dominated PL peak at 440 nm, having a narrow full width at half maximum of 10 nm. A PL spectrum of CdS NP produced by dissimilatory sulfur reducing bacteria was dominated by features associated with radiative exciton relaxation at the surface. High reproducibility of CdS NP PL features important for scale-up conditions was confirmed from test tubes to 24 L batches at a small fraction of the manufacturing cost associated with conventional inorganic NP production processes.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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