92
C. Balasubramanian
Kumar PM, Borse P, Rohatgi VK, Bhoraskar SV, Singh P, Sastry M (1994) Mater Chem Phys 36:354
Kumar V et al (2008) Gas-phase, bulk production of metal oxide nanowires and nanoparticles using
a microwave plasma jet reactor. J Phys Chem C 112:17750
Lee C-H, Rai P, Moon S-Y, Yu Y-T (2016) Thermal plasma synthesis of Si/SiC nanoparticles from
silicon and activated carbon powders. Ceram Int 42:16469–16473
Madhu Kumar P, Balasubramanian C, Sali ND, Bhoraskar SV, Rohatgi VK, Badrinarayanan S
(1999) Nanophase alumina synthesis in thermal arc plasma and characterization: correlation to
gas-phase studies. Mater Sci Eng, B 63:215–227
Meng H, Zhao F, Zhang Z (2012) Preparation of cobalt nanoparticles by direct current arc plasma
evaporation method. Int J Refract Met Hard Mater 31:224
Orpe PB, Balasubramanian C, Mukherjee S (2017) Influence of DC arc current on the formation of
cobalt-based nanostructures. Pramana J Phys 89:20
Patel J, Balasubramanian C, Sasmal C, Satyaprasad A (2018) Preparation of SiC nanowires and
nanotubes by thermal arc plasma and study of parameters controlling its growth. Phys E 103:377–
382
Raut SA et al (2018) Single step, phase controlled, large scale synthesis of ferrimagnetic iron oxide
polymorph nanoparticles by thermal plasma route and their rheological properties. J Mag Mag
Mater 449:232–242
Salata OV (2004) Applications of nanoparticles in biology and medicine. J Nanobiotech 2:3
Sergiienko R et al (2007) Formation and characterization of graphite-encapsulated cobalt nanoparticles synthesized by electric discharge in an ultrasonic cavitation field of liquid ethanol. Acta
Mater 55:3671
Shigeta M, Watanabe T (2007) Growth mechanism of silicon-based functional nanoparticles
fabricated by inductively coupled thermal plasmas. J Phys D Appl Phys 40:2407–2419
Siegmann S, Girshick S, Szépvölgyi J, Leparoux M, Shin J-W, Schreuders C, Rohr L, Ishigaki
T, Jurewicz JW, Habib M, Baroud G, Gitzhofer F, Kambara M, Diaz JMA, Yoshida T (2008)
Nano powder synthesis by plasmas. Report of the session held at the international round table on
thermal plasma fundamentals and applications: Sharm el Sheikh, Egypt, Jan. 14–18, 2007, High
Temp. Mater. Processes, 12:205–254
Tondare VN, Balasubramanian C, Shende SV, Joag DS, Godbole VP, Bhoraskar SV (2002) Field
emission from open ended aluminum nitride nanotubes. Appl Phys Lett 80:4813–4815
Tsai P-C, Chen W-J, Chen J-H, Chang C-L (2009) Deposition and characterization of TiBCN films
by cathodic arc plasma evaporation. Thin Solid Films 517:5044–5049
Wan X, Fan Y, Ma W, Li S, Huang X, Yu J (2018) One-step synthesis of nano-silicon/graphene
composites using thermal plasma approach. Mater Lett 220:144–147
C. Balasubramanian
Kumar PM, Borse P, Rohatgi VK, Bhoraskar SV, Singh P, Sastry M (1994) Mater Chem Phys 36:354
Kumar V et al (2008) Gas-phase, bulk production of metal oxide nanowires and nanoparticles using
a microwave plasma jet reactor. J Phys Chem C 112:17750
Lee C-H, Rai P, Moon S-Y, Yu Y-T (2016) Thermal plasma synthesis of Si/SiC nanoparticles from
silicon and activated carbon powders. Ceram Int 42:16469–16473
Madhu Kumar P, Balasubramanian C, Sali ND, Bhoraskar SV, Rohatgi VK, Badrinarayanan S
(1999) Nanophase alumina synthesis in thermal arc plasma and characterization: correlation to
gas-phase studies. Mater Sci Eng, B 63:215–227
Meng H, Zhao F, Zhang Z (2012) Preparation of cobalt nanoparticles by direct current arc plasma
evaporation method. Int J Refract Met Hard Mater 31:224
Orpe PB, Balasubramanian C, Mukherjee S (2017) Influence of DC arc current on the formation of
cobalt-based nanostructures. Pramana J Phys 89:20
Patel J, Balasubramanian C, Sasmal C, Satyaprasad A (2018) Preparation of SiC nanowires and
nanotubes by thermal arc plasma and study of parameters controlling its growth. Phys E 103:377–
382
Raut SA et al (2018) Single step, phase controlled, large scale synthesis of ferrimagnetic iron oxide
polymorph nanoparticles by thermal plasma route and their rheological properties. J Mag Mag
Mater 449:232–242
Salata OV (2004) Applications of nanoparticles in biology and medicine. J Nanobiotech 2:3
Sergiienko R et al (2007) Formation and characterization of graphite-encapsulated cobalt nanoparticles synthesized by electric discharge in an ultrasonic cavitation field of liquid ethanol. Acta
Mater 55:3671
Shigeta M, Watanabe T (2007) Growth mechanism of silicon-based functional nanoparticles
fabricated by inductively coupled thermal plasmas. J Phys D Appl Phys 40:2407–2419
Siegmann S, Girshick S, Szépvölgyi J, Leparoux M, Shin J-W, Schreuders C, Rohr L, Ishigaki
T, Jurewicz JW, Habib M, Baroud G, Gitzhofer F, Kambara M, Diaz JMA, Yoshida T (2008)
Nano powder synthesis by plasmas. Report of the session held at the international round table on
thermal plasma fundamentals and applications: Sharm el Sheikh, Egypt, Jan. 14–18, 2007, High
Temp. Mater. Processes, 12:205–254
Tondare VN, Balasubramanian C, Shende SV, Joag DS, Godbole VP, Bhoraskar SV (2002) Field
emission from open ended aluminum nitride nanotubes. Appl Phys Lett 80:4813–4815
Tsai P-C, Chen W-J, Chen J-H, Chang C-L (2009) Deposition and characterization of TiBCN films
by cathodic arc plasma evaporation. Thin Solid Films 517:5044–5049
Wan X, Fan Y, Ma W, Li S, Huang X, Yu J (2018) One-step synthesis of nano-silicon/graphene
composites using thermal plasma approach. Mater Lett 220:144–147
