1 - 2 |
Special Issue of Papers by Plenary and Topical Invited Lecturers at the 22nd International Symposium on Plasma Chemistry (ISPC 22), 5-10 July 2015, Antwerp, Belgium: Introduction Bogaerts A, van de Sanden R |
3 - 28 |
The Role of Transport Phenomena and Modeling in the Development of Thermal Plasma Technology Boulos MI |
29 - 44 |
A Short Review of Experimental and Computational Diagnostics for Radiofrequency Plasma Micro-thrusters Charles C, Bish A, Boswell RW, Dedrick J, Greig A, Hawkins R, Ho TS |
45 - 72 |
Plasma Catalysis for Environmental Treatment and Energy Applications Kim HH, Teramoto Y, Ogata A, Takagi H, Nanba T |
73 - 84 |
Nonthermal Plasma Synthesis of Nanocrystals: Fundamentals, Applications, and Future Research Needs Kortshagen U |
85 - 105 |
Plasma Assisted Low Temperature Combustion Ju YG, Lefkowitz JK, Reuter CB, Won SH, Yang XL, Yang S, Sun WT, Jiang ZL, Chen Q |
107 - 120 |
Plasma Nanotextured Polymeric Surfaces for Controlling Cell Attachment and Proliferation: A Short Review Tserepi A, Gogolides E, Bourkoula A, Kanioura A, Kokkoris G, Petrou PS, Kakabakos SE |
121 - 149 |
On the Interaction of Cold Atmospheric Pressure Plasma with Surfaces of Bio-molecules and Model Polymers Bartis EAJ, Knoll AJ, Luan P, Seog J, Oehrlein GS |
151 - 167 |
Thermal and Chemical Nonequilibrium Effects in Free-Burning Arcs Baeva M |
169 - 183 |
Influence of the Surface Structure on the Anode Boundary of High Current Moving Arcs in Atmosphere Kirner S, Forster G, Schein J |
185 - 212 |
Plasma-Surface Interactions in Plasma Catalysis Neyts EC |
213 - 229 |
Hydrogen Plasmas Processing of Graphene Surfaces Despiau-Pujo E, Davydova A, Cunge G, Graves DB |
231 - 239 |
Direct Synthesis of Carbon Nanotubes from Only CO2 by a Hybrid Reactor of Dielectric Barrier Discharge and Solid Oxide Electrolyser Cell Mori S, Matsuura N, Tun LL, Suzuki M |
241 - 257 |
Plasma Nitrogen Oxides Synthesis in a Milli-Scale Gliding Arc Reactor: Investigating the Electrical and Process Parameters Patil BS, Palau JR, Hessel V, Lang J, Wang Q |
259 - 268 |
Why Target Immune Cells for Plasma Treatment of Cancer Miller V, Lin A, Fridman A |
269 - 280 |
Plasma Processing of Scaffolds for Tissue Engineering and Regenerative Medicine Intranuovo F, Gristina R, Fracassi L, Lacitignola L, Crovace A, Favia P |
281 - 294 |
Microdischarge-Induced Decomposition of Ammonia and Reduction of Silver Ions for Formation of Two-Dimensional Network Structure Sakai O, Hiraoka Y, Kihara N, Blanquet E, Urabe K, Tanaka M |
295 - 307 |
Atmospheric-Pressure Plasma Reduction of Metal Cation-Containing Polymer Films to Produce Electrically Conductive Nanocomposites by an Electrodiffusion Mechanism Ghosh S, Ostrowski E, Yang R, Debnath D, Feng PXL, Zorman CA, Sankaran RM |
309 - 327 |
Ignition of Quiescent Lean Propane-Air Mixtures at High Pressure by Nanosecond Repetitively Pulsed Discharges Xu DA, Lacoste DA, Laux CO |
329 - 340 |
Application of Plasma Fuel Reformer to an On-Board Diesel Burner Pyun SH, Lee DH, Kim KT, Song YH |
341 - 354 |
Effects of Atmospheric-Pressure Plasma Treatment on the Processes Involved in Fabrics Dyeing Rusu GB, Topala I, Borcia C, Dumitrascu N, Borcia G |