1,645
Views
32
CrossRef citations to date
0
Altmetric
Original Articles

Hydrogen-assisted spark discharge generated metal nanoparticles to prevent oxide formation

, , , , &
Pages 347-358 | Received 03 Oct 2017, Accepted 19 Nov 2017, Published online: 20 Dec 2017

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

T. Rosenberger, I. Skenderović, J. Sellmann, P. Wollny, A. Levish, I. Wlokas, A. Kempf, M. Winterer & F. E. Kruis. (2022) Determining the sintering kinetics of Fe and FexOy-Nanoparticles in a well-defined model flow reactor. Aerosol Science and Technology 56:9, pages 833-846.
Read now
Seung Ryul Noh, Wooik Jung, Sukbyung Chae, Bangwoo Han, Jeonghoon Lee & Chang Gyu Woo. (2022) Control of the size of nanoparticles by spark discharge with an atomizer and a bubbler. Aerosol Science and Technology 56:5, pages 405-412.
Read now
Calle Preger, Niels C. Overgaard, Maria E. Messing & Martin H. Magnusson. (2020) Predicting the deposition spot radius and the nanoparticle concentration distribution in an electrostatic precipitator. Aerosol Science and Technology 54:6, pages 718-728.
Read now
Dmitry Mylnikov, Alexey Efimov & Viktor Ivanov. (2019) Measuring and optimization of energy transfer to the interelectrode gaps during the synthesis of nanoparticles in a spark discharge. Aerosol Science and Technology 53:12, pages 1393-1403.
Read now

Articles from other publishers (27)

L. Jönsson, M. Snellman, A.C. Eriksson, M. Kåredal, R. Wallenberg, S. Blomberg, A. Kohut, L. Hartman & M.E. Messing. (2024) The effect of electrode composition on bimetallic AgAu nanoparticles produced by spark ablation. Journal of Aerosol Science 177, pages 106333.
Crossref
Lajos Péter Villy, Attila Kohut & Zsolt Geretovszky. (2024) Szikra ablációval előállított arany-kobalt nanorészecskék keveredésének vizsgálata. Szikra ablációval előállított arany-kobalt nanorészecskék keveredésének vizsgálata.
Markus Snellman, Namsoon Eom, Maria E. Messing & Knut Deppert. (2024) A thermal evaporator for aerosol core-shell nanoparticle synthesis. Journal of Aerosol Science 175, pages 106276.
Crossref
Yaxin Fan, Kaiqi Zhang, Huayun Xiao, Christopher J. Hogan & Chenxi Li. (2023) Sintering of metallic nano-aggregates in an atmospheric pressure non-thermal plasma. Journal of Aerosol Science 171, pages 106167.
Crossref
Hendrik Joost van Ginkel, Lisa Mitterhuber, Marijn Willem van de Putte, Mark Huijben, Sten Vollebregt & Guoqi Zhang. (2023) Nanostructured Thermoelectric Films Synthesised by Spark Ablation and Their Oxidation Behaviour. Nanomaterials 13:11, pages 1778.
Crossref
Pau Ternero, Mehran Sedrpooshan, David Wahlqvist, Bengt O. Meuller, Martin Ek, Julia-Maria Hübner, Rasmus Westerström & Maria E. Messing. (2023) Effect of the carrier gas on the structure and composition of Co–Ni bimetallic nanoparticles generated by spark ablation. Journal of Aerosol Science 170, pages 106146.
Crossref
Petra Pál, Viktória Horváth, Laura Juhász, Zoltán Kóródi, Attila Kohut & Istvan Csarnovics. (2023) Fabrication of Nanoparticle Agglomerate Films by Spark Ablation and Their Application in Surface-Enhanced Raman Spectroscopy. Chemosensors 11:3, pages 180.
Crossref
Claudiu Bulbucan, Pau Ternero, Calle Preger, Aram Kostanyan, Maria E. Messing & Rasmus Westerström. (2023) Cr-substituted Fe O nanoparticles: The role of particle size in the formation of Fe O sub-domains and the emergence of exchange bias . Journal of Magnetism and Magnetic Materials 570, pages 170359.
Crossref
Maik Szafarska, Vinzent Olszok, Ulrich Holländer, René Gustus, Alfred P. Weber & Wolfgang Maus-Friedrichs. (2023) Gas Phase Reaction of Silane with Water at Different Temperatures and Supported by Plasma. ACS Omega.
Crossref
Vinzent Olszok, Malte Bierwirth & Alfred P. Weber. (2023) Creation of Gases with Interplanetary Oxygen Concentration at Atmospheric Pressure by Nanoparticle Aerosol Scavengers: Implications for Metal Processing from nm to mm Range. ACS Applied Nano Materials 6:3, pages 1660-1666.
Crossref
Jonas Elmroth Nordlander, Marie Bermeo, Pau Ternero, David Wahlqvist, Toni Schmeida, Sara Blomberg, Maria E. Messing, Martin Ek & Julia-Maria Hübner. (2023) Mo3Ni2N Nanoparticle Generation by Spark Discharge. Materials 16:3, pages 1113.
Crossref
Attila Kohut. (2023) Hydrogen-assisted spark generation of silver nanoparticles: The effect of hydrogen content on the signal intensity in surface-enhanced Raman spectroscopy. Journal of Aerosol Science 167, pages 106090.
Crossref
Lajos Péter Villy, Attila Kohut, Albert Kéri, Ádám Bélteki, György Radnóczi, Zsolt Fogarassy, György Zoltán Radnóczi, Gábor Galbács & Zsolt Geretovszky. (2022) Continuous spark plasma synthesis of Au/Co binary nanoparticles with tunable properties. Scientific Reports 12:1.
Crossref
Hendrik Joost Van Ginkel, Mattia Orvietani, Joost Romijn, Guo Qi Zhang & Sten Vollebregt. (2022) ZnO Nanoparticle Printing for UV Sensor Fabrication. ZnO Nanoparticle Printing for UV Sensor Fabrication.
Malte Bierwirth, Vinzent Olszok, Annett Wollmann & Alfred P. Weber. (2022) A new coupling setup of DMA, CPC and sp-ICP-MS with increased versatility. Journal of Aerosol Science 163, pages 105983.
Crossref
Alexander Plack, Malte Bierwirth, Alfred P. Weber & Nina Gunkelmann. (2022) Experimental and atomistic study of high speed collisions of gold nanoparticles with a gold substrate: Validation of interatomic potentials. Journal of Aerosol Science 159, pages 105846.
Crossref
Claudiu Bulbucan, Calle Preger, Aram Kostanyan, Kirsten M. Ø. Jensen, Esko Kokkonen, Cinthia Piamonteze, Maria E. Messing & Rasmus Westerström. (2021) Large exchange bias in Cr substituted Fe 3 O 4 nanoparticles with FeO subdomains . Nanoscale 13:37, pages 15844-15852.
Crossref
Hendrik Joost van Ginkel, Joost Romijn, Sten Vollebregt & Guo Qi Zhang. (2021) High Step Coverage Interconnects By Printed Nanoparticles. High Step Coverage Interconnects By Printed Nanoparticles.
Vinzent Olszok, Malte Bierwirth & Alfred P. Weber. (2021) Interaction of Reactive Gases with Platinum Aerosol Particles at Room Temperature: Effects on Morphology and Surface Properties. Nanomaterials 11:9, pages 2266.
Crossref
Mohammad Malekzadeh & Mark T. Swihart. (2021) Vapor-phase production of nanomaterials. Chemical Society Reviews 50:12, pages 7132-7249.
Crossref
Markus Snellman, Namsoon Eom, Martin Ek, Maria E. Messing & Knut Deppert. (2021) Continuous gas-phase synthesis of core–shell nanoparticles via surface segregation . Nanoscale Advances 3:11, pages 3041-3052.
Crossref
Calle Preger, Martin Josefsson, Rasmus Westerström & Maria E Messing. (2021) Bottom-up field-directed self-assembly of magnetic nanoparticles into ordered nano- and macrostructures. Nanotechnology 32:19, pages 195603.
Crossref
Tewasin Kumpika, Stefan Ručman, Siwat Polin, Ekkapong Kantarak, Wattikon Sroila, Wiradej Thongsuwan, Arisara Panthawan, Panupong Sanmuangmoon, Niwat Jhuntama & Pisith Singjai. (2021) Studies on the Characteristics of Nanostructures Produced by Sparking Discharge Process in the Ambient Atmosphere for Air Filtration Application. Crystals 11:2, pages 140.
Crossref
Stefan Ručman, Panich Intra, E. Kantarak, W. Sroila, T. Kumpika, J. Jakmunee, W. Punyodom, Biljana Arsić & Pisith Singjai. (2020) Influence of the magnetic field on bandgap and chemical composition of zinc thin films prepared by sparking discharge process. Scientific Reports 10:1.
Crossref
Sara Blomberg, Niclas Johansson, Esko Kokkonen, Jenny Rissler, Linnéa Kollberg, Calle Preger, Sara M Franzén, Maria E Messing & Christian Hulteberg. (2019) Bimetallic Nanoparticles as a Model System for an Industrial NiMo Catalyst. Materials 12:22, pages 3727.
Crossref
Calle Preger, Claudiu Bulbucan, Bengt O. Meuller, Linus Ludvigsson, Aram Kostanyan, Matthias Muntwiler, Knut Deppert, Rasmus Westerström & Maria E. Messing. (2019) Controlled Oxidation and Self-Passivation of Bimetallic Magnetic FeCr and FeMn Aerosol Nanoparticles. The Journal of Physical Chemistry C 123:26, pages 16083-16090.
Crossref
Claudiu Bulbucan, Pau Ternero, Calle Preger, Aram Kostanyan, Maria E. Messing & Rasmus Westerstom. (2022) Cr-Substituted Fe3o4 Nanoparticles: The Role of Particle Size in the Formation of Fe. SSRN Electronic Journal.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.