Control over the Biological Synthesis of Ag Nanoparticles by Selection of the Specific Algal Species
The application of green synthesis in the nano-science and technology is of great importance in the area of the preparation of various materials. In this work, three selected algal species Parachlorella kessleri, Dictyosphaerium chlorelloides and Desmodesmus quadricauda were successfully used for th...
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doaj-c4a40f9c161548b29b73cd4c9b45f3572020-11-25T03:17:16ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092017-09-016231439144210.1515/amm-2017-0222amm-2017-0222Control over the Biological Synthesis of Ag Nanoparticles by Selection of the Specific Algal SpeciesSedlakova-Kadukova J.0Velgosova O.1Vosatka M.2Lukavsky J.3Dodd J.4Willner J.5Fornalczyk A.6INSTITUTE OF BIOLOGY AND ECOLOGY, FACULTY OF SCIENCE, ŠROBÁROVA 2, 04154 KOSICE, SLOVAKIAINSTITUTE OF MATERIALS, FACULTY OF METALLURGY, TECHNICAL UNIVERSITY OF KOSICE, SLOVAKIAINSTITUTE OF BOTANY, CZECH ACADEMY OF SCIENCES, PRAHA, CZECH REPUBLICINSTITUTE OF BOTANY, CZECH ACADEMY OF SCIENCES, PRAHA, CZECH REPUBLICBIOENERGY SERVICES LTD., CANTERBURY, United Kingdom of Great Britain and Northern IrelandINSTITUTE OF METALS TECHNOLOGY, SILESIAN UNIVERSITY OF TECHNOLOGY, KATOWICE, POLANDINSTITUTE OF METALS TECHNOLOGY, SILESIAN UNIVERSITY OF TECHNOLOGY, KATOWICE, POLANDThe application of green synthesis in the nano-science and technology is of great importance in the area of the preparation of various materials. In this work, three selected algal species Parachlorella kessleri, Dictyosphaerium chlorelloides and Desmodesmus quadricauda were successfully used for the preparation of silver nanoparticles (AgNPs). Presence of AgNPs was confirmed by UV-vis spectroscopy and transmission electron microscopy. AgNPs produced by P. kessleri had narrow size distribution and average sizes of 7.6 nm. However, nanoparticle production lasted for long time. Nanoparticle formation by D. chlorelloides was the fastest, although, their average sizes were 23.4 nm with broad size distribution. Nanoparticles produced by D. quadricauda had average sizes 23.9 nm but they were the least stable, aggregated and precipitated from solutions within 3 days. These results confirmed that the size distribution and mean diameter of the nanoparticles, crucial for various applications, can be controlled by the organism selection.http://www.degruyter.com/view/j/amm.2017.62.issue-3/amm-2017-0222/amm-2017-0222.xml?format=INTnanoparticlessilveralgaeParachlorella kessleriDictyosphaerium chlorelloidesDesmodesmus quadricauda |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sedlakova-Kadukova J. Velgosova O. Vosatka M. Lukavsky J. Dodd J. Willner J. Fornalczyk A. |
spellingShingle |
Sedlakova-Kadukova J. Velgosova O. Vosatka M. Lukavsky J. Dodd J. Willner J. Fornalczyk A. Control over the Biological Synthesis of Ag Nanoparticles by Selection of the Specific Algal Species Archives of Metallurgy and Materials nanoparticles silver algae Parachlorella kessleri Dictyosphaerium chlorelloides Desmodesmus quadricauda |
author_facet |
Sedlakova-Kadukova J. Velgosova O. Vosatka M. Lukavsky J. Dodd J. Willner J. Fornalczyk A. |
author_sort |
Sedlakova-Kadukova J. |
title |
Control over the Biological Synthesis of Ag Nanoparticles by Selection of the Specific Algal Species |
title_short |
Control over the Biological Synthesis of Ag Nanoparticles by Selection of the Specific Algal Species |
title_full |
Control over the Biological Synthesis of Ag Nanoparticles by Selection of the Specific Algal Species |
title_fullStr |
Control over the Biological Synthesis of Ag Nanoparticles by Selection of the Specific Algal Species |
title_full_unstemmed |
Control over the Biological Synthesis of Ag Nanoparticles by Selection of the Specific Algal Species |
title_sort |
control over the biological synthesis of ag nanoparticles by selection of the specific algal species |
publisher |
Polish Academy of Sciences |
series |
Archives of Metallurgy and Materials |
issn |
2300-1909 |
publishDate |
2017-09-01 |
description |
The application of green synthesis in the nano-science and technology is of great importance in the area of the preparation of various materials. In this work, three selected algal species Parachlorella kessleri, Dictyosphaerium chlorelloides and Desmodesmus quadricauda were successfully used for the preparation of silver nanoparticles (AgNPs). Presence of AgNPs was confirmed by UV-vis spectroscopy and transmission electron microscopy. AgNPs produced by P. kessleri had narrow size distribution and average sizes of 7.6 nm. However, nanoparticle production lasted for long time. Nanoparticle formation by D. chlorelloides was the fastest, although, their average sizes were 23.4 nm with broad size distribution. Nanoparticles produced by D. quadricauda had average sizes 23.9 nm but they were the least stable, aggregated and precipitated from solutions within 3 days. These results confirmed that the size distribution and mean diameter of the nanoparticles, crucial for various applications, can be controlled by the organism selection. |
topic |
nanoparticles silver algae Parachlorella kessleri Dictyosphaerium chlorelloides Desmodesmus quadricauda |
url |
http://www.degruyter.com/view/j/amm.2017.62.issue-3/amm-2017-0222/amm-2017-0222.xml?format=INT |
work_keys_str_mv |
AT sedlakovakadukovaj controloverthebiologicalsynthesisofagnanoparticlesbyselectionofthespecificalgalspecies AT velgosovao controloverthebiologicalsynthesisofagnanoparticlesbyselectionofthespecificalgalspecies AT vosatkam controloverthebiologicalsynthesisofagnanoparticlesbyselectionofthespecificalgalspecies AT lukavskyj controloverthebiologicalsynthesisofagnanoparticlesbyselectionofthespecificalgalspecies AT doddj controloverthebiologicalsynthesisofagnanoparticlesbyselectionofthespecificalgalspecies AT willnerj controloverthebiologicalsynthesisofagnanoparticlesbyselectionofthespecificalgalspecies AT fornalczyka controloverthebiologicalsynthesisofagnanoparticlesbyselectionofthespecificalgalspecies |
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