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Number of items: 20.

Journal Article

Satishkumar, BC and Govindaraj, A and Vanitha, PV and Raychaudhuri, Arup K and Rao, CNR (2002) Barkhausen jumps and related magnetic properties of iron nanowires encapsulated in aligned carbon nanotube bundles. In: Chemical Physics Letters, 362 (3-4). pp. 301-306.

Rao, CNR and Satishkumar, BC and Govindaraj, A and Nath, Manashi (2001) Nanotubes. In: ChemPhysChem, 2 (2). pp. 78-105.

Nath, Manashi and Satishkumar, BC and Govindaraj, A and Vinod, CP and Rao, CNR (2000) Production of bundles of aligned carbon and carbon–nitrogen nanotubes by the pyrolysis of precursors on silica-supported iron and cobalt catalysts. In: Chemical Physics Letters, 322 (5). pp. 333-340.

Rajalakshmi, N and Dhathathreyan, KS and Govindaraj, A and Satishkumar, BC (2000) Electrochemical investigation of single-walled carbon nanotubes for hydrogen storage. In: Electrochimica Acta, 45 (27). pp. 4511-4515.

Govindaraj, A and Satishkumar, BC and Nath, Manashi and Rao, CNR (2000) Metal Nanowires and Intercalated Metal Layers in Single-Walled Carbon Nanotube Bundles. In: Chemistry of Materials, 12 (1). pp. 202-205.

Satishkumar, BC and Govindaraj, A and Nath, Manashi and Rao, CNR (2000) Synthesis of metal oxide nanorods using carbon nanotubes as templates. In: Journal of Materials Chemistry, 10 (9). pp. 2115-2119.

Satishkumar, BC and Govindaraj, A and Rao, CNR (1999) Bundles of aligned carbon nanotubes obtained by the pyrolysis of ferrocene hydrocarbon mixtures: role of the metal nanoparticles produced in situ. In: Chemical Physics Letters, 307 (3-4). pp. 158-162.

Satishkumar, BC and Govindaraj, A and Harikumar, KR and Zhang, Jin-Ping and Cheetham, AK and Rao, CNR (1999) Boron-carbon nanotubes from the pyrolysis of $C_{2}H_{2}-B_{2}H_{6}$ mixtures. In: Chemical Physics Letters, 300 (3-4). pp. 473-477.

Rao, CNR and Govindaraj, A and Sen, Rahul and Satishkumar, BC (1998) Synthesis of multi-walled and single-walled nanotubes, aligned- nanotube bundles and nanorods by employing organometallic precursors. In: Materials Research Innovations, 2 (3). pp. 128-141.

Rao, CNR and Sen, Rahul and Satishkumar, BC and Govindaraj, A (1998) Large aligned-nanotube bundles from ferrocene pyrolysis. In: Chemical Communication (15). pp. 1525-1526.

Satishkumar, BC and Govindaraj, A and Sen, Rahul and Rao, CNR (1998) Single-walled nanotubes by the pyrolysis of acetylene-organometallic mixtures. In: Chemical Physics Letters, 293 (1-2). pp. 47-52.

Sen, Rahul and Satishkumar, BC and Govindaraj, A and Harikumar, KR and Raina, Gargi and Zhang, Jin-Ping and Cheetham, AK and Rao, CNR (1998) B-C-N, C-N and B-N nanotubes produced by the pyrolysis of precursor molecules over Co catalysts. In: Chemical Physics Letters, 287 (5-6). pp. 671-676.

Sen, Rahul and Sumathy, R and Satishkumar, BC and Rao, CNR (1997) Investigations of diamond-graphite hybrids and fullerenes with seven-membered rings. In: Journal of Molecular Structure, 436-43 . pp. 11-18.

Sen, Rahul and Satishkumar, BC and Govindaraj, S and Harikumar, KR and Renganathan, MK and Rao, CNR (1997) Nitrogen-containing carbon nanotubes. In: Journal of Materials Chemistry, 7 (12). pp. 2335-2337.

Rao, CNR and Satishkumar, BC and Govindaraj, A (1997) Zirconia nanotubes. In: Chemical Communications (16). pp. 1581-1582.

Rahul, Sen and Satishkumar, BC and Gargi, Raina and Rao, CNR (1997) Structures and images of novel derivatives of carbon nanotubes,fullerenes and related new carbon forms. In: Fullerene Science and Technology, 5 (3). pp. 489-502.

Satishkumar, BC and Govindaraj, A and Vogl, EM and Basumallick, L and Rao, CNR (1997) Oxide nanotubes prepared using carbon nanotubes as templates. In: Journal of Materials Research, 12 (3). pp. 604-606.

Satishkumar, BC and Vogl, Erasmus M and Govindaraj, A and Rao, CNR (1996) The decoration of carbon nanotubes by metal nanoparticles. In: Journal of Physics D, 29 (12). pp. 3173-3176.

Satishkumar, BC and Govindaraj, A and Mofokeng, J and Subbanna, GN and Rao, CNR (1996) Novel experiments with carbon nanotubes: opening, filling, closing and functionalizing nanotubes. In: Journal of Physics B: Atomic, Molecular and Optical Physics, 29 (21). pp. 4925-4934.

Rao, CNR and Govindaraj, A and Satishkumar, BC (1996) Functionalised carbon nanotubes from solutions. In: Chemical Communications (13). pp. 1525-1526.

This list was generated on Wed Sep 18 06:18:45 2019 IST.