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R. Mohan Sankaran
R. Mohan Sankaran
Department of Nuclear, Plasma, and Radiological Engineering, University of Illinois
Verified email at illinois.edu
Title
Cited by
Cited by
Year
Microplasmas for nanomaterials synthesis
D Mariotti, RM Sankaran
Journal of Physics D: Applied Physics 43 (32), 323001, 2010
6542010
Contact electrification of insulating materials
DJ Lacks, RM Sankaran
Journal of Physics D: Applied Physics 44 (45), 453001, 2011
5522011
Linking catalyst composition to chirality distributions of as-grown single-walled carbon nanotubes by tuning NixFe1−x nanoparticles
WH Chiang, R Mohan Sankaran
Nature materials 8 (11), 882-886, 2009
4982009
Plasma-liquid electrochemistry: Rapid synthesis of colloidal metal nanoparticles by microplasma reduction of aqueous cations
C Richmonds, RM Sankaran
Applied Physics Letters 93 (13), 2008
4282008
Nonthermal plasma synthesis of nanocrystals: fundamental principles, materials, and applications
UR Kortshagen, RM Sankaran, RN Pereira, SL Girshick, JJ Wu, ES Aydil
Chemical reviews 116 (18), 11061-11127, 2016
3982016
The solvation of electrons by an atmospheric-pressure plasma
P Rumbach, DM Bartels, RM Sankaran, DB Go
Nature communications 6 (1), 7248, 2015
3112015
Synthesis of blue luminescent Si nanoparticles using atmospheric-pressure microdischarges
RM Sankaran, D Holunga, RC Flagan, KP Giapis
Nano letters 5 (3), 537-541, 2005
2842005
Catalyst-free, highly selective synthesis of ammonia from nitrogen and water by a plasma electrolytic system
R Hawtof, S Ghosh, E Guarr, C Xu, R Mohan Sankaran, JN Renner
Science advances 5 (1), eaat5778, 2019
2402019
Charge segregation depends on particle size in triboelectrically charged granular materials
KM Forward, DJ Lacks, RM Sankaran
Physical review letters 102 (2), 028001, 2009
2252009
The 2022 Plasma Roadmap: low temperature plasma science and technology
I Adamovich, S Agarwal, E Ahedo, LL Alves, S Baalrud, N Babaeva, ...
Journal of Physics D: Applied Physics 55 (37), 373001, 2022
1912022
Continuous-flow, atmospheric-pressure microplasmas: a versatile source for metal nanoparticle synthesis in the gas or liquid phase
WH Chiang, C Richmonds, RM Sankaran
Plasma Sources Science and Technology 19 (3), 034011, 2010
1892010
Formation of nanodiamonds at near-ambient conditions via microplasma dissociation of ethanol vapour
A Kumar, P Ann Lin, A Xue, B Hao, Y Khin Yap, RM Sankaran
Nature communications 4 (1), 2618, 2013
1862013
Perspectives on atmospheric-pressure plasmas for nanofabrication
D Mariotti, RM Sankaran
Journal of Physics D: Applied Physics 44 (17), 174023, 2011
1792011
Electron-transfer reactions at the plasma–liquid interface
C Richmonds, M Witzke, B Bartling, SW Lee, J Wainright, CC Liu, ...
Journal of the American Chemical Society 133 (44), 17582-17585, 2011
1752011
Hollow cathode sustained plasma microjets: Characterization and application to diamond deposition
RM Sankaran, KP Giapis
Journal of Applied Physics 92 (5), 2406-2411, 2002
1712002
Plasma-assisted reduction of graphene oxide at low temperature and atmospheric pressure for flexible conductor applications
SW Lee, C Mattevi, M Chhowalla, RM Sankaran
The journal of physical chemistry letters 3 (6), 772-777, 2012
1592012
Microplasmas for advanced materials and devices
WH Chiang, D Mariotti, RM Sankaran, JG Eden, K Ostrikov
Advanced Materials 32 (18), 1905508, 2020
1582020
Synergistic effects in bimetallic nanoparticles for low temperature carbon nanotube growth
WH Chiang, RM Sankaran
Advanced Materials 20 (24), 4857-4861, 2008
1362008
Decoupling interfacial reactions between plasmas and liquids: Charge transfer vs plasma neutral reactions
P Rumbach, M Witzke, RM Sankaran, DB Go
Journal of the American Chemical Society 135 (44), 16264-16267, 2013
1322013
Evidence for the electrolysis of water by atmospheric-pressure plasmas formed at the surface of aqueous solutions
M Witzke, P Rumbach, DB Go, RM Sankaran
Journal of Physics D: Applied Physics 45 (44), 442001, 2012
1272012
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