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“Outsourcing” Diatoms in Fabrication of Metal-Doped 3D Biosilica

Diatoms have an ability that is unique among the unicellular photoautotrophic organisms to synthesize an intricately ornamented siliceous (biosilica) exoskeleton with an ordered, hierarchical, three-dimensional structure on a micro- to nanoscale. The unique morphological, structural, mechanical, tra...

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Autores principales: Brzozowska, Weronika, Sprynskyy, Myroslav, Wojtczak, Izabela, Dąbek, Przemysław, Witkowski, Andrzej, Buszewski, Bogusław
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321626/
https://www.ncbi.nlm.nih.gov/pubmed/32516920
http://dx.doi.org/10.3390/ma13112576
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author Brzozowska, Weronika
Sprynskyy, Myroslav
Wojtczak, Izabela
Dąbek, Przemysław
Witkowski, Andrzej
Buszewski, Bogusław
author_facet Brzozowska, Weronika
Sprynskyy, Myroslav
Wojtczak, Izabela
Dąbek, Przemysław
Witkowski, Andrzej
Buszewski, Bogusław
author_sort Brzozowska, Weronika
collection PubMed
description Diatoms have an ability that is unique among the unicellular photoautotrophic organisms to synthesize an intricately ornamented siliceous (biosilica) exoskeleton with an ordered, hierarchical, three-dimensional structure on a micro- to nanoscale. The unique morphological, structural, mechanical, transport, photonic, and optoelectronic properties of diatomaceous biosilica make it a desirable material for modern technologies. This review presents a summary and discussion of published research on the metabolic insertion of chemical elements with specific functional activity into diatomaceous biosilica. Included in the review is research on innovation in methods of synthesis of a new generation of functional siliceous materials, where the synthesis process is “outsourced” to intelligent microorganisms, referred to here as microtechnologists, by providing them with appropriate conditions and reagents.
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spelling pubmed-73216262020-07-20 “Outsourcing” Diatoms in Fabrication of Metal-Doped 3D Biosilica Brzozowska, Weronika Sprynskyy, Myroslav Wojtczak, Izabela Dąbek, Przemysław Witkowski, Andrzej Buszewski, Bogusław Materials (Basel) Review Diatoms have an ability that is unique among the unicellular photoautotrophic organisms to synthesize an intricately ornamented siliceous (biosilica) exoskeleton with an ordered, hierarchical, three-dimensional structure on a micro- to nanoscale. The unique morphological, structural, mechanical, transport, photonic, and optoelectronic properties of diatomaceous biosilica make it a desirable material for modern technologies. This review presents a summary and discussion of published research on the metabolic insertion of chemical elements with specific functional activity into diatomaceous biosilica. Included in the review is research on innovation in methods of synthesis of a new generation of functional siliceous materials, where the synthesis process is “outsourced” to intelligent microorganisms, referred to here as microtechnologists, by providing them with appropriate conditions and reagents. MDPI 2020-06-05 /pmc/articles/PMC7321626/ /pubmed/32516920 http://dx.doi.org/10.3390/ma13112576 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Brzozowska, Weronika
Sprynskyy, Myroslav
Wojtczak, Izabela
Dąbek, Przemysław
Witkowski, Andrzej
Buszewski, Bogusław
“Outsourcing” Diatoms in Fabrication of Metal-Doped 3D Biosilica
title “Outsourcing” Diatoms in Fabrication of Metal-Doped 3D Biosilica
title_full “Outsourcing” Diatoms in Fabrication of Metal-Doped 3D Biosilica
title_fullStr “Outsourcing” Diatoms in Fabrication of Metal-Doped 3D Biosilica
title_full_unstemmed “Outsourcing” Diatoms in Fabrication of Metal-Doped 3D Biosilica
title_short “Outsourcing” Diatoms in Fabrication of Metal-Doped 3D Biosilica
title_sort “outsourcing” diatoms in fabrication of metal-doped 3d biosilica
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321626/
https://www.ncbi.nlm.nih.gov/pubmed/32516920
http://dx.doi.org/10.3390/ma13112576
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