520
Views
59
CrossRef citations to date
0
Altmetric
Original Articles

Controlled Synthesis of Nanosized Particles by Aerosol Processes

, , , &
Pages 527-548 | Received 17 May 1993, Accepted 09 Jul 1993, Published online: 12 Jun 2007

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

Read on this site (2)

Chang-Yu Wu & Pratim Biswas. (1998) Study of Numerical Diffusion in a Discrete-Sectional Model and Its Application to Aerosol Dynamics Simulation. Aerosol Science and Technology 29:5, pages 359-378.
Read now
StevenN. Rogak. (1997) Modeling Small Cluster Deposition on the Primary Particles of Aerosol Agglomerates. Aerosol Science and Technology 26:2, pages 127-140.
Read now

Articles from other publishers (57)

Irina V. Antonova, Marina B. Shavelkina, Artem I. Ivanov, Nadezhda A. Nebogatikova, Regina A. Soots & Vladimir A. Volodin. (2022) Engineering of graphene flakes in the process of synthesis in DC plasma jets. Physical Chemistry Chemical Physics 24:46, pages 28232-28241.
Crossref
Peter Majerič & Rebeka Rudolf. (2020) Advances in Ultrasonic Spray Pyrolysis Processing of Noble Metal Nanoparticles—Review. Materials 13:16, pages 3485.
Crossref
Yong Yang, Yonggang Yao, Dylan J. Kline, Tangyuan Li, Pankaj Ghildiyal, Haiyang Wang, Liangbing Hu & Michael R. Zachariah. (2020) Rapid Laser Pulse Synthesis of Supported Metal Nanoclusters with Kinetically Tunable Size and Surface Density for Electrocatalytic Hydrogen Evolution. ACS Applied Nano Materials 3:3, pages 2959-2968.
Crossref
Byeongjun Jeon, Junghun Shin & Donghoon Shin. 2020. Proceedings of International Conference of Aerospace and Mechanical Engineering 2019. Proceedings of International Conference of Aerospace and Mechanical Engineering 2019 219 231 .
Weiren Xia, Yao Lu & Xinhua Zhu. 2020. Revolution of Perovskite. Revolution of Perovskite 61 93 .
Dig Vijay Singh, Rouf Ahmad Bhat, Moonisa Aslam Dervash, Humaira Qadri, Mohammad Aneesul Mehmood, Gowhar Hamid Dar, Mehvish Hameed & Nowsheeba Rashid. 2020. Fresh Water Pollution Dynamics and Remediation. Fresh Water Pollution Dynamics and Remediation 319 339 .
Yong Yang, Pankaj Ghildiyal & Michael R. Zachariah. (2019) Thermal Shock Synthesis of Metal Nanoclusters within On-the-Fly Graphene Particles. Langmuir 35:9, pages 3413-3420.
Crossref
Frederik Kunze, Stefan Kuns, Mathias Spree, Tim Hülser, Christof Schulz, Hartmut Wiggers & Sophie M. Schnurre. (2019) Synthesis of silicon nanoparticles in a pilot-plant-scale microwave plasma reactor: Impact of flow rates and precursor concentration on the nanoparticle size and aggregation. Powder Technology 342, pages 880-886.
Crossref
Ankita Dhillon & Dinesh Kumar. 2018. Nanotechnology for Sustainable Water Resources. Nanotechnology for Sustainable Water Resources 41 71 .
Yong Yang, Michelangelo Romano, Guangjie Feng, Xizheng Wang, Tao Wu, Scott Holdren & Michael R. Zachariah. (2018) Growth of Sub-5 nm Metal Nanoclusters in Polymer Melt Aerosol Droplets. Langmuir 34:2, pages 585-594.
Crossref
Yiyang ZhangYiyang Zhang. 2017. Dynamics of Nanoparticles in Stagnation Flames. Dynamics of Nanoparticles in Stagnation Flames 77 144 .
Yiyang ZhangYiyang Zhang. 2017. Dynamics of Nanoparticles in Stagnation Flames. Dynamics of Nanoparticles in Stagnation Flames 1 19 .
Dibyendu Mukherjee & Seyyed Ali Davari. 2017. Energetic Materials. Energetic Materials 271 341 .
Anatoli Bogdan & M. Kulmala. 2015. Encyclopedia of Surface and Colloid Science, Third Edition. Encyclopedia of Surface and Colloid Science, Third Edition 6325 6339 .
Hoey Kyung Park & Kyun Young Park. (2015) Control of Particle Morphology and Size in Vapor-Phase Synthesis of Titania, Silica and Alumina Nanoparticles. KONA Powder and Particle Journal 32:0, pages 85-101.
Crossref
Dibyendu Mukherjee, Matthew Wang & Bamin Khomami. (2012) Impact of particle morphology on surface oxidation of nanoparticles: A kinetic Monte Carlo based study. AIChE Journal 58:11, pages 3341-3353.
Crossref
Chia-Ying Chiang, Kosi Aroh & Sheryl H. Ehrman. (2012) Copper oxide nanoparticle made by flame spray pyrolysis for photoelectrochemical water splitting – Part I. CuO nanoparticle preparation. International Journal of Hydrogen Energy 37:6, pages 4871-4879.
Crossref
Arkadi Maisels. 2010. Aerosols ‐ Science and Technology. Aerosols ‐ Science and Technology 43 64 .
K. Buyukhatipoglu & A. Morss Clyne. (2009) Controlled flame synthesis of αFe2O3 and Fe3O4 nanoparticles: effect of flame configuration, flame temperature, and additive loading. Journal of Nanoparticle Research 12:4, pages 1495-1508.
Crossref
Liangming Xiong, Edson H Sekiya & Kazuya Saito. (2009) Mass fabrication of homogeneously Yb-doped silica nanoparticles and their spectroscopic properties. Nanotechnology 20:1, pages 015605.
Crossref
Ryan Richards. 2008. Dekker Encyclopedia of Nanoscience and Nanotechnology, Second Edition - Six Volume Set (Print Version). Dekker Encyclopedia of Nanoscience and Nanotechnology, Second Edition - Six Volume Set (Print Version) 2126 2139 .
Kuk Cho, Hankwon Chang, Jin Ho Park, Byoung Gon Kim & Hee Dong Jang. (2008) Effect of molar ratio of TiO2/SiO2 on the properties of particles synthesized by flame spray pyrolysis. Journal of Industrial and Engineering Chemistry 14:6, pages 860-863.
Crossref
Juncheng Hu, Lifang Chen & Ryan Richards. 2008. Metal Oxide Catalysis. Metal Oxide Catalysis 613 663 .
K Wegner, P Piseri, H Vahedi Tafreshi & P Milani. (2006) Cluster beam deposition: a tool for nanoscale science and technology. Journal of Physics D: Applied Physics 39:22, pages R439-R459.
Crossref
Tai Gyu Lee & Jung Eun Hyun. (2006) Structural effect of the in situ generated titania on its ability to oxidize and capture the gas-phase elemental mercury. Chemosphere 62:1, pages 26-33.
Crossref
Dean M. Holunga, Richard C. Flagan & Harry A. Atwater. (2005) A Scalable Turbulent Mixing Aerosol Reactor for Oxide-Coated Silicon Nanoparticles. Industrial & Engineering Chemistry Research 44:16, pages 6332-6341.
Crossref
B. Giesen, H.R. Orthner, A. Kowalik & P. Roth. (2004) On the interaction of coagulation and coalescence during gas-phase synthesis of Fe-nanoparticle agglomerates. Chemical Engineering Science 59:11, pages 2201-2211.
Crossref
Kyun Young Park, Jong Kwan Park & Sang Hwa Lim. (2011) In situ deposition of iron nanoparticles on transmission electron microscopy grid in furnace aerosol reactor . Journal of Materials Research 18:10, pages 2285-2287.
Crossref
D. Mukherjee, C. G. Sonwane & M. R. Zachariah. (2003) Kinetic Monte Carlo simulation of the effect of coalescence energy release on the size and shape evolution of nanoparticles grown as an aerosol. The Journal of Chemical Physics 119:6, pages 3391-3404.
Crossref
Karsten Wegner & Sotiris E. Pratsinis. (2004) Nozzle‐quenching process for controlled flame synthesis of titania nanoparticles. AIChE Journal 49:7, pages 1667-1675.
Crossref
Suyuan Yu. (2003) Aerosol behavior in chromium waste incineration. China Particuology 1:2, pages 47-51.
Crossref
Gang-Ho An, Jin-Uk Yun & Yeong-Won Kim. (2002) Corona ion Assisted Nano-Particle Morphology Control in an Atmospheric Pressure Furnace Reactor. Transactions of the Korean Society of Mechanical Engineers B 26:5, pages 710-715.
Crossref
Kari E.J. Lehtinen & Michael R. Zachariah. (2002) Energy accumulation in nanoparticle collision and coalescence processes. Journal of Aerosol Science 33:2, pages 357-368.
Crossref
Markus WintererMarkus Winterer. 2002. Nanocrystalline Ceramics. Nanocrystalline Ceramics 233 250 .
Markus WintererMarkus Winterer. 2002. Nanocrystalline Ceramics. Nanocrystalline Ceramics 35 90 .
Jens P. Hansen, Joakim R. Jensen, Hans Livbjerg & Tue Johannessen. (2004) Synthesis of ZnO particles in a quench‐cooled flame reactor. AIChE Journal 47:11, pages 2413-2418.
Crossref
Kari E. J. Lehtinen & Michael R. Zachariah. (2001) Effect of coalescence energy release on the temporal shape evolution of nanoparticles. Physical Review B 63:20.
Crossref
Toshiyuki Nomura, Manuel Alonso, Yasuo Kousaka & Eiji Tenjiku. (2000) Simple Model of Aerosol Particle Formation by the Evaporation–Condensation Method. Journal of Colloid and Interface Science 231:1, pages 107-113.
Crossref
A.A. Onischuk, A.I. Levykin, V.P. Strunin, M.A. Ushakova, R.I. Samoilova, K.K. Sabelfeld & V.N. Panfilov. (2000) AEROSOL FORMATION UNDER HETEROGENEOUS/HOMOGENEOUS THERMAL DECOMPOSITION OF SILANE: EXPERIMENT AND NUMERICAL MODELING. Journal of Aerosol Science 31:8, pages 879-906.
Crossref
Tue Johannessen, Sotiris E. Pratsinis & Hans Livbjerg. (2000) Computational fluid-particle dynamics for the flame synthesis of alumina particles. Chemical Engineering Science 55:1, pages 177-191.
Crossref
Sheryl H. Ehrman, Sheldon K. Friedlander & Michael R. Zachariah. (2011) Phase segregation in binary SiO 2 /TiO 2 and SiO 2 /Fe 2 O 3 nanoparticle aerosols formed in a premixed flame . Journal of Materials Research 14:12, pages 4551-4561.
Crossref
Yangchuan Xing, Umit O. Koylu & Daniel E. Rosner. (1999) In situ light-scattering measurements of morphologically evolving flame-synthesized oxide nanoaggregates. Applied Optics 38:12, pages 2686.
Crossref
Sheryl H. Ehrman, Maria I. Aquino-Class & Michael R. Zachariah. (2011) Effect of Temperature and Vapor-phase Encapsulation on Particle Growth and Morphology. Journal of Materials Research 14:4, pages 1664-1671.
Crossref
Richard W. Siegel, Evelyn Hu, Donald M. Cox, Herb Goronkin, Lynn Jelinski, Carl C. Koch, John Mendel, M. C. Roco & David T. ShawJohn Mendel. 1999. Nanostructure Science and Technology. Nanostructure Science and Technology 35 47 .
Richard W. Siegel, Evelyn Hu, Donald M. Cox, Herb Goronkin, Lynn Jelinski, Carl C. Koch, John Mendel, M. C. Roco & David T. ShawEvelyn L. Hu & David T. Shaw. 1999. Nanostructure Science and Technology. Nanostructure Science and Technology 15 33 .
D. Lindackers, C. Janzen, B. Rellinghaus, E.F. Wassermann & P. Roth. (1998) Synthesis of Al2O3 and SnO2 particles by oxidation of metalorganic precursors in premixed H2/O2/Ar low pressure flames. Nanostructured Materials 10:8, pages 1247-1270.
Crossref
Sotiris E. Pratsinis. (1998) Flame aerosol synthesis of ceramic powders. Progress in Energy and Combustion Science 24:3, pages 197-219.
Crossref
Richard C. Flagan. 1998. Nanostructured Materials. Nanostructured Materials 15 30 .
Yangchuan Xing, Ümit Ö. Köylü & Daniel E. Rosner. (1996) Synthesis and restructuring of inorganic nano-particles in counterflow diffusion flames. Combustion and Flame 107:1-2, pages 85-102.
Crossref
Srinivas Vemury & Sotiris E. Pratsinis. (1996) Charging and coagulation during flame synthesis of silica. Journal of Aerosol Science 27:6, pages 951-966.
Crossref
Kari E.J. Lehtinen, Robert S. Windeler & Sheldon K. Friedlander. (1996) Prediction of nanoparticle size and the onset of dendrite formation using the method of characteristic times. Journal of Aerosol Science 27:6, pages 883-896.
Crossref
Y. Xing & D. E. Rosner. (2011) Surface Melting of Particles: Predicting Spherule Size in Vapor-Phase Nanometer Particle Formation. MRS Proceedings 457.
Crossref
Dong Gon Park & James M. Burlitch. (1996) Electro-spray synthesis of titanium oxide nano-particles. Journal of Sol-Gel Science and Technology 6:3, pages 235-249.
Crossref
Richard C. Flagan & Melissa M. Lunden. (1995) Particle structure control in nanoparticle synthesis from the vapor phase. Materials Science and Engineering: A 204:1-2, pages 113-124.
Crossref
Roger McClellan & Rogene HendersonOwen Moss & Vung-Sung Cheng. 1995. Concepts In Inhalation Toxicology. Concepts In Inhalation Toxicology 91 126 .
N. Rao, B. Micheel, D. Hansen, C. Fandrey, M. Bench, S. Girshiek, J. Heberlein & P. McMurry. (2011) Synthesis of nanophase silicon, carbon, and silicon carbide powders using a plasma expansion process. Journal of Materials Research 10:8, pages 2073-2084.
Crossref
Sheldon K. Friedlander & Murray K. Wu. (1994) Linear rate law for the decay of the excess surface area of a coalescing solid particle. Physical Review B 49:5, pages 3622-3624.
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.