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Effect of Particle Sizes on the Efficiency of Fluorinated Nanodiamond Neutron Reflectors

Over a decade ago, it was confirmed that detonation nanodiamond (DND) powders reflect very cold neutrons (VCNs) diffusively at any incidence angle and that they reflect cold neutrons quasi-specularly at small incidence angles. In the present publication, we report the results of a study on the effec...

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Autores principales: Aleksenskii, Aleksander, Bleuel, Marcus, Bosak, Alexei, Chumakova, Alexandra, Dideikin, Artur, Dubois, Marc, Korobkina, Ekaterina, Lychagin, Egor, Muzychka, Alexei, Nekhaev, Grigory, Nesvizhevsky, Valery, Nezvanov, Alexander, Schweins, Ralf, Shvidchenko, Alexander, Strelkov, Alexander, Turlybekuly, Kylyshbek, Vul’, Alexander, Zhernenkov, Kirill
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620422/
https://www.ncbi.nlm.nih.gov/pubmed/34835831
http://dx.doi.org/10.3390/nano11113067
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author Aleksenskii, Aleksander
Bleuel, Marcus
Bosak, Alexei
Chumakova, Alexandra
Dideikin, Artur
Dubois, Marc
Korobkina, Ekaterina
Lychagin, Egor
Muzychka, Alexei
Nekhaev, Grigory
Nesvizhevsky, Valery
Nezvanov, Alexander
Schweins, Ralf
Shvidchenko, Alexander
Strelkov, Alexander
Turlybekuly, Kylyshbek
Vul’, Alexander
Zhernenkov, Kirill
author_facet Aleksenskii, Aleksander
Bleuel, Marcus
Bosak, Alexei
Chumakova, Alexandra
Dideikin, Artur
Dubois, Marc
Korobkina, Ekaterina
Lychagin, Egor
Muzychka, Alexei
Nekhaev, Grigory
Nesvizhevsky, Valery
Nezvanov, Alexander
Schweins, Ralf
Shvidchenko, Alexander
Strelkov, Alexander
Turlybekuly, Kylyshbek
Vul’, Alexander
Zhernenkov, Kirill
author_sort Aleksenskii, Aleksander
collection PubMed
description Over a decade ago, it was confirmed that detonation nanodiamond (DND) powders reflect very cold neutrons (VCNs) diffusively at any incidence angle and that they reflect cold neutrons quasi-specularly at small incidence angles. In the present publication, we report the results of a study on the effect of particle sizes on the overall efficiency of neutron reflectors made of DNDs. To perform this study, we separated, by centrifugation, the fraction of finer DND nanoparticles (which are referred to as S-DNDs here) from a broad initial size distribution and experimentally and theoretically compared the performance of such a neutron reflector with that from deagglomerated fluorinated DNDs (DF-DNDs). Typical commercially available DNDs with the size of ~4.3 nm are close to the optimum for VCNs with a typical velocity of ~50 m/s, while smaller and larger DNDs are more efficient for faster and slower VCN velocities, respectively. Simulations show that, for a realistic reflector geometry, the replacement of DF-DNDs (a reflector with the best achieved performance) by S-DNDs (with smaller size DNDs) increases the neutron albedo in the velocity range above ~60 m/s. This increase in the albedo results in an increase in the density of faster VCNs in such a reflector cavity of up to ~25% as well as an increase in the upper boundary of the velocities of efficient VCN reflection.
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spelling pubmed-86204222021-11-27 Effect of Particle Sizes on the Efficiency of Fluorinated Nanodiamond Neutron Reflectors Aleksenskii, Aleksander Bleuel, Marcus Bosak, Alexei Chumakova, Alexandra Dideikin, Artur Dubois, Marc Korobkina, Ekaterina Lychagin, Egor Muzychka, Alexei Nekhaev, Grigory Nesvizhevsky, Valery Nezvanov, Alexander Schweins, Ralf Shvidchenko, Alexander Strelkov, Alexander Turlybekuly, Kylyshbek Vul’, Alexander Zhernenkov, Kirill Nanomaterials (Basel) Article Over a decade ago, it was confirmed that detonation nanodiamond (DND) powders reflect very cold neutrons (VCNs) diffusively at any incidence angle and that they reflect cold neutrons quasi-specularly at small incidence angles. In the present publication, we report the results of a study on the effect of particle sizes on the overall efficiency of neutron reflectors made of DNDs. To perform this study, we separated, by centrifugation, the fraction of finer DND nanoparticles (which are referred to as S-DNDs here) from a broad initial size distribution and experimentally and theoretically compared the performance of such a neutron reflector with that from deagglomerated fluorinated DNDs (DF-DNDs). Typical commercially available DNDs with the size of ~4.3 nm are close to the optimum for VCNs with a typical velocity of ~50 m/s, while smaller and larger DNDs are more efficient for faster and slower VCN velocities, respectively. Simulations show that, for a realistic reflector geometry, the replacement of DF-DNDs (a reflector with the best achieved performance) by S-DNDs (with smaller size DNDs) increases the neutron albedo in the velocity range above ~60 m/s. This increase in the albedo results in an increase in the density of faster VCNs in such a reflector cavity of up to ~25% as well as an increase in the upper boundary of the velocities of efficient VCN reflection. MDPI 2021-11-14 /pmc/articles/PMC8620422/ /pubmed/34835831 http://dx.doi.org/10.3390/nano11113067 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Aleksenskii, Aleksander
Bleuel, Marcus
Bosak, Alexei
Chumakova, Alexandra
Dideikin, Artur
Dubois, Marc
Korobkina, Ekaterina
Lychagin, Egor
Muzychka, Alexei
Nekhaev, Grigory
Nesvizhevsky, Valery
Nezvanov, Alexander
Schweins, Ralf
Shvidchenko, Alexander
Strelkov, Alexander
Turlybekuly, Kylyshbek
Vul’, Alexander
Zhernenkov, Kirill
Effect of Particle Sizes on the Efficiency of Fluorinated Nanodiamond Neutron Reflectors
title Effect of Particle Sizes on the Efficiency of Fluorinated Nanodiamond Neutron Reflectors
title_full Effect of Particle Sizes on the Efficiency of Fluorinated Nanodiamond Neutron Reflectors
title_fullStr Effect of Particle Sizes on the Efficiency of Fluorinated Nanodiamond Neutron Reflectors
title_full_unstemmed Effect of Particle Sizes on the Efficiency of Fluorinated Nanodiamond Neutron Reflectors
title_short Effect of Particle Sizes on the Efficiency of Fluorinated Nanodiamond Neutron Reflectors
title_sort effect of particle sizes on the efficiency of fluorinated nanodiamond neutron reflectors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620422/
https://www.ncbi.nlm.nih.gov/pubmed/34835831
http://dx.doi.org/10.3390/nano11113067
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