Artigo Acesso aberto Revisado por pares

Biogenic formation of photoactive arsenic-sulfide nanotubes by Shewanella sp. strain HN-41

2007; National Academy of Sciences; Volume: 104; Issue: 51 Linguagem: Inglês

10.1073/pnas.0707595104

ISSN

1091-6490

Autores

Ji-Hoon Lee, Min Gyu Kim, Bongyoung Yoo, Nosang V. Myung, Jongsun Maeng, Takhee Lee, Alice Dohnálková, James K. Fredrickson, Michael J. Sadowsky, Hor-Gil Hur,

Tópico(s)

Silicon Nanostructures and Photoluminescence

Resumo

Microorganisms facilitate the formation of a wide range of minerals that have unique physical and chemical properties as well as morphologies that are not produced by abiotic processes. Here, we report the production of an extensive extracellular network of filamentous, arsenic-sulfide (As-S) nanotubes (20-100 nm in diameter by approximately 30 mum in length) by the dissimilatory metal-reducing bacterium Shewanella sp. HN-41. The As-S nanotubes, formed via the reduction of As(V) and S(2)O(3)(2-), were initially amorphous As(2)S(3) but evolved with increasing incubation time toward polycrystalline phases of the chalcogenide minerals realgar (AsS) and duranusite (As(4)S). Upon maturation, the As-S nanotubes behaved as metals and semiconductors in terms of their electrical and photoconductive properties, respectively. The As-S nanotubes produced by Shewanella may provide useful materials for novel nano- and opto-electronic devices.

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