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Iron oxide–silver patchy particles prepared by ultrasonic spray burning

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Tarasov A. B. et al. Iron oxide–silver patchy particles prepared by ultrasonic spray burning // Mendeleev Communications. 2021. Vol. 31. No. 3. pp. 309-311.
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Tarasov A. B., Yurmanova E. È., Semenova A. A., Goodilin E. A. Iron oxide–silver patchy particles prepared by ultrasonic spray burning // Mendeleev Communications. 2021. Vol. 31. No. 3. pp. 309-311.
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TY - JOUR
DO - 10.1016/j.mencom.2021.04.010
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2021.04.010
TI - Iron oxide–silver patchy particles prepared by ultrasonic spray burning
T2 - Mendeleev Communications
AU - Tarasov, Alexey Borisovich
AU - Yurmanova, Ekaterina Èduardovna
AU - Semenova, Anna Alexandrovna
AU - Goodilin, Eugene Alekseevich
PY - 2021
DA - 2021/04/28
PB - Mendeleev Communications
SP - 309-311
IS - 3
VL - 31
ER -
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@article{2021_Tarasov,
author = {Alexey Borisovich Tarasov and Ekaterina Èduardovna Yurmanova and Anna Alexandrovna Semenova and Eugene Alekseevich Goodilin},
title = {Iron oxide–silver patchy particles prepared by ultrasonic spray burning},
journal = {Mendeleev Communications},
year = {2021},
volume = {31},
publisher = {Mendeleev Communications},
month = {Apr},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2021.04.010},
number = {3},
pages = {309--311},
doi = {10.1016/j.mencom.2021.04.010}
}
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Tarasov, Alexey Borisovich, et al. “Iron oxide–silver patchy particles prepared by ultrasonic spray burning.” Mendeleev Communications, vol. 31, no. 3, Apr. 2021, pp. 309-311. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2021.04.010.

Keywords

aerosol
combustion
iron oxide
nanoparticles
patchy particles
silver
superparamagnetic
surface enhanced Raman spectroscopy

Abstract

Spray solution combustion synthesis is proposed as a onestep method for preparation of nanostructured iron oxide–silver patchy particles for polyfunctional applications.

References

1.
Synthesis and assembly of patchy particles: Recent progress and future prospects
Ravaine S., Duguet E.
Current Opinion in Colloid and Interface Science, 2017
2.
Colloidal Assembly: The Road from Particles to Colloidal Molecules and Crystals
Li F., Josephson D.P., Stein A.
Angewandte Chemie - International Edition, 2010
3.
Janus Colloidal Particles: Preparation, Properties, and Biomedical Applications
Kaewsaneha C., Tangboriboonrat P., Polpanich D., Eissa M., Elaissari A.
ACS applied materials & interfaces, 2013
5.
From plasmon-enhanced molecular spectroscopy to plasmon-mediated chemical reactions
Zhan C., Chen X., Yi J., Li J., Wu D., Tian Z.
Nature Reviews Chemistry, 2018
6.
Nanotechnology Facets of the Periodic Table of Elements
Goodilin E.A., Weiss P.S., Gogotsi Y.
ACS Nano, 2019
7.
Surface-enhanced Raman spectroscopy in modern chemical analysis: advances and prospects
Eremina O.E., Semenova A.A., Sergeeva E.A., Brazhe N.A., Maksimov G.V., Shekhovtsova T.N., Goodilin E.A., Veselova I.A.
Russian Chemical Reviews, 2018
8.
Semenova A.A., Semenov A.P., Gudilina E.A., Sinyukova G.T., Brazhe N.A., Maksimov G.V., Goodilin E.A.
Mendeleev Communications, 2016
9.
Ultrasonic-silver-rain preparation of SERS substrates
Sarycheva A.S., Semenova A.A., Parshina E.Y., Brazhe N.A., Polyakov A.Y., Kozmenkova A.Y., Grigorieva A.V., Maksimov G.V., Goodilin E.A.
Materials Letters, 2014
10.
Aqueous Diaminsilver Hydroxide as a Precursor of Pure Silver Nanoparticles for SERS Probing of Living Erythrocytes
Semenova A.A., Brazhe N.A., Parshina E.Y., Ivanov V.K., Maksimov G.V., Goodilin E.A.
Plasmonics, 2013
11.
Combined Raman and atomic force microscopy study of hemoglobin distribution inside erythrocytes and nanoparticle localization on the erythrocyte surface
Parshina E.Y., Sarycheva A.S., Yusipovich A.I., Brazhe N.A., Goodilin E.A., Maksimov G.V.
Laser Physics Letters, 2013
12.
Tuning SERS for living erythrocytes: Focus on nanoparticle size and plasmon resonance position
Brazhe N.A., Parshina E.Y., Khabatova V.V., Semenova A.A., Brazhe A.R., Yusipovich A.I., Sarycheva A.S., Churin A.A., Goodilin E.A., Maksimov G.V., Sosnovtseva O.V.
Journal of Raman Spectroscopy, 2013
13.
Spray Solution Combustion Synthesis of Metallic Hollow Microspheres
Trusov G.V., Tarasov A.B., Goodilin E.A., Rogachev A.S., Roslyakov S.I., Rouvimov S., Podbolotov K.B., Mukasyan A.S.
Journal of Physical Chemistry C, 2016
14.
Particle synthesis in flames
Roth P.
Proceedings of the Combustion Institute, 2007
15.
Flame Synthesis of Nanoparticles
Kammler H.K., Mädler L., Pratsinis S.E.
Chemical Engineering and Technology, 2001
16.
Self-propagating high-temperature synthesis of nanomaterials
Sytschev A.E., Merzhanov A.G.
Russian Chemical Reviews, 2004
17.
Combustion synthesis and nanomaterials
Aruna S.T., Mukasyan A.S.
Current Opinion in Solid State and Materials Science, 2008
18.
Combustion synthesis: an update
Patil K.C., Aruna S.T., Mimani T.
Current Opinion in Solid State and Materials Science, 2002
19.
Combustion synthesis in nanostructured reactive systems
Mukasyan A.S., Rogachev A.S., Aruna S.T.
Advanced Powder Technology, 2015
20.
Novel approaches to solution-combustion synthesis of nanomaterials
Mukasyan A.S., Dinka P.
International Journal of Self-Propagating High-Temperature Synthesis, 2007
21.
Design of Nanomaterial Synthesis by Aerosol Processes
Buesser B., Pratsinis S.E.
Annual Review of Chemical and Biomolecular Engineering, 2012
22.
Aerosol flame synthesis of catalysts
Strobel R., Baiker A., Pratsinis S.E.
Advanced Powder Technology, 2006
24.
Modeling a hollow micro-particle production process
Shabde V.S., Emets S.V., Mann U., Hoo K.A., Carlson N.N., Gladysz G.M.
Computers and Chemical Engineering, 2005