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Conference Paper

Deepak, FL and Govindaraj, A and Rao, CNR (2006) Improved synthesis of carbon nanotubes with junctions and of single-walled carbon nanotubes. In: International Conference on Recent Developments in Metal Oxides and Related Materials,, Jan 09-11, 2006, Bangalore, India, pp. 9-14.

Rao, CNR and Aiyer, Hemantkumar N and Seshadri, Ram and Govindaraj, A (1996) Fullerenes and other carbon forms: studies by STM and cognate techniques. In: International Symposium on Ultra Materials for Picotransfer, 21-25 March 1995, Chiba, Japan, pp. 132-137.

Journal Article

Dey, Sunita and Naidu, BS and Govindaraj, A and Rao, CNR (2015) Noteworthy performance of La1-xCaxMnO3 perovskites in generating H-2 and CO by the thermochemical splitting of H2O and CO2. In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 17 (1). pp. 122-125.

Gopalakrishnan, K and Sultan, S and Govindaraj, A and Rao, CNR (2015) Supercapacitors based on composites of PANI with nanosheets of nitrogen-doped RGO, BC1.5N, MoS2 and WS2. In: NANO ENERGY, 12 . pp. 52-58.

Pramoda, K and Moses, Kota and Ikram, Mohd and Vasu, K and Govindaraj, A and Rao, CNR (2014) Synthesis, Characterization and Properties of Single-Walled Carbon Nanohorns. In: JOURNAL OF CLUSTER SCIENCE, 25 (1). pp. 173-188.

Rao, CNR and Gopalakrishnan, K and Govindaraj, A (2014) Synthesis, properties and applications of graphene doped with boron, nitrogen and other elements. In: NANO TODAY, 9 (3). pp. 324-343.

Pramoda, K and Suresh, S and Matte, Ramakrishna HSS and Govindaraj, A (2013) Graphene composites containing chemically bonded metal oxides. In: Bulletin of Materials Science, 36 (4). pp. 585-590.

Gopalakrishnan, K and Govindaraj, A and Rao, CNR (2013) Extraordinary supercapacitor performance of heavily nitrogenated graphene oxide obtained by microwave synthesis. In: Journal of Materials Chemistry A, 1 (26). pp. 7563-7565.

Gopalakrishnan, K and Moses, Kota and Govindaraj, A and Rao, CNR (2013) Supercapacitors based on nitrogen-doped reduced graphene oxide and borocarbonitrides. In: SOLID STATE COMMUNICATIONS, 175 (SI). pp. 43-50.

Sreedhara, MB and Matte, Ramakrishna HSS and Govindaraj, A and Rao, CNR (2013) Synthesis, Characterization, and Properties of Few-Layer MoO3. In: CHEMISTRY-AN ASIAN JOURNAL, 8 (10, SI). pp. 2430-2435.

Voggu, Rakesh and Govindaraj, A and Rao, CNR (2012) Selective synthesis of metallic and semiconducting single-walled carbon nanotubes. In: Indian Journal of Chemistry - Section A: Inorganic, Physical, Theoretical and Analytical Chemistry, 51 (1-2). pp. 32-46.

Rao, CNR and Matte, Ramakrishna HSS and Voggu, Rakesh and Govindaraj, A (2012) Recent progress in the synthesis of inorganic nanoparticles. In: DALTON TRANSACTIONS, 41 (17). pp. 5089-5120.

Rao, CNR and Subrahmanyam, KS and Matte, Ramakrishna HSS and Abdulhakeem, B and Govindaraj, A and Das, Barun and Kumar, Prashant and Ghosh, Anupama and Late, Dattatray J (2010) A study of the synthetic methods and properties of graphenes. In: Science and Technology of Advanced Materials, 11 (5).

Voggu, Rakesh and Ghosh, Sandeep and Govindaraj, A and Rao, CNR (2010) New Strategies for the Enrichment of Metallic Single-Walled Carbon Nanotubes. In: Journal of Nanoscience and Nanotechnology, 10 (6, Sp. Iss. SI). pp. 4102-4108.

Subrahmanyam, KS and Panchakarla, LS and Govindaraj, A and Rao, CNR (2009) Simple Method of Preparing Graphene Flakes by an Arc-Discharge Method. In: Journal Of Physical Chemistry C, 113 (11). pp. 4257-4259.

Rao, CNR and Biswas, Kanishka and Subrahmanyam, KS and Govindaraj, A (2009) Graphene, the new nanocarbon. In: Journal of Materials Chemistry, 19 (17). pp. 2457-2469.

Ghosh, Anupama and Late, Dattatray J and Panchakarla, LS and Govindaraj, A and Rao, CNR (2009) NO2 and humidity sensing characteristics of few-layer graphenes. In: Journal of Experimental Nanoscience, 4 (4). pp. 313-322.

Ghosh, Anupama and Subrahmanyam, KS and Krishna, Katia Sai and Datta, Sudipta and Govindaraj, A and Pati, Swapan K and Rao, CNR (2008) Uptake of $H_2$ and $CO_2$ by graphene. In: Journal of Physical Chemistry C, 112 (40). pp. 15704-15707.

Das, Anindya and Sood, AK and Govindaraj, A and Saitta, Marco A and Lazzeri, Michele and Mauri, Francesco and Rao, CNR (2007) Doping in Carbon Nanotubes Probed by Raman and Transport Measurements. In: Physical Review Letters, 99 (13). 136803-1-136803-4.

Govindaraj, A and Vivekchand, SRC and Rao, CNR (2007) Novel vapor phase reactions for the synthesis and modification of carbon nanotubes and inorganic nanowires. In: Journal of Nanoscience and Nanotechnology, 7 (6). pp. 1695-1702.

Panchakarla, LS and Govindaraj, A (2007) Carbon nanostructures and graphite-coated metal nanostructures obtained by pyrolysis of ruthenocene and ruthenocene–ferrocene mixtures. In: Bulletin of Materials Science, 30 (1). pp. 23-29.

Voggu, Rakesh and Biswas, Kanishka and Govindaraj, A and Rao, CNR (2006) Use of Fluorous Chemistry in the Solubilization and Phase Transfer of Nanocrystals, Nanorods, and Nanotubes. In: Journal of Physical Chemistry B, 110 (42). 20752 -20755.

Rao, CNR and Agrawal, Ved Varun and Biswas, Kanishka and Gautam, Ujjal K and Ghosh, Moumita and Govindaraj, A and Kulkarni, GU and Kalyanikutty, KP and Sardar, Kripasindhu and Vivekchand, SRC (2006) Soft chemical approaches to inorganic nanostructures. In: Pure and Applied Chemistry, 78 (9). pp. 1619-1650.

Gautam, Ujjal K and Vivekchand, SRC and Govindaraj, A and Kulkarni, GU and Selvi, NR and Rao, CNR (2005) Generation of Onions and Nanotubes of GaS and GaSe through Laser and Thermally Induced Exfoliation. In: Journal of the American Chemical Society, 127 (11). pp. 3658-3659.

Gautam, Ujjal K and Vivekchand, SRC and Govindaraj, A and Rao, CNR (2005) GaS and GaSe nanowalls and their transformation to $Ga_{2}O_{3}$ and GaN nanowalls. In: Chemical Communications (31). pp. 3995-3997.

Sardar, Kripasindhu and Deepak, FL and Govindaraj, A and Seikh, MM and Rao, CNR (2005) InN Nanocrystals, Nanowires, and Nanotubes. In: Small, 1 (1). pp. 91-94.

Vivekchang, SRC and Govindaraj, A (2003) A new method of preparing single-walled carbon nanotubes. In: Proceedings of the Indian Academy of Sciences - Chemical Sciences, 115 (5-6). pp. 509-518.

Karmakar, Sukanta and Sharma, Surinder M and Teredesai, PV and Muthu, DVS and Govindaraj, A and Sikka, SK and Sood, AK (2003) Structural changes in single-walled carbon nanotubes under non-hydrostatic pressures: x-ray and Raman studies. In: New Journal of Physics, 5 . p. 143.

Gundiah, Gautam and Mukhopadhyay, Samrat and Tumkurkar, Usha Govind and Govindaraj, A and Maitra, Uday and Rao, CNR (2003) Hydrogel route to nanotubes of metal oxides and sulfates. In: Journal of Materials Chemistry, 13 (9). pp. 2118-2122.

Teredesai, Pallavi V and Deepak, Leonard F and Govindaraj, A and Sood, AK and Rao, CNR (2002) A Raman study of CdSe and ZnSe nanostructures. In: Journal of Nanoscience and Nanotechnology, 2 (5). pp. 495-498.

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.

Deepak, FL and Vinod, CP and Mukhopadhyay, K and Govindaraj, A and Rao, CNR (2002) Boron nitride nanotubes and nanowires. In: Chemical Physics Letters, 353 (5-6). pp. 345-352.

Rao, CNR and Govindaraj, A (2001) Nanotubes and nanowires. In: Proceedings Of The Indian Academy Of Sciences Chemical Sciences, 113 (5-6). pp. 375-392.

Teredesai, PV and Sood, AK and Govindaraj, A and Rao, CNR (2001) Surface enhanced resonance Raman scattering from radial and tangential modes of semiconducting single wall carbon nanotubes. In: Applied Surface Science, 182 (3-4). pp. 196-201.

Sen, Rahul and Suenaga, K and Achib, Y and Iijima, S and Kataura, H and Govindaraj, A and Suzuki, S (2001) Encapsulated and hollow closed-cage structures of WS2 and MoS2 prepared by laser ablation at 450–1050°C. In: Chemical Physics Letters, 340 (3-4). pp. 242-248.

Sharma, Surinder M and Karmakar, S and Sikka, SK and Teredesai, Pallavi V and Sood, AK and Govindaraj, A and Rao, CNR (2001) Pressure-induced phase transformation and structural resilience of single-wall carbon nanotube bundles. In: Physical Review B, 63 (20). 205417/1-5.

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

Teredesai, PV and Sood, AK and Sharma, SM and Karmakar, S and Sikka, SK and Govindaraj, A and Rao, CNR (2001) Pressure Effects on Single Wall Carbon Nanotube Bundles. In: physica status solidi:B, 223 . pp. 479-487.

Murugavel, P and Narayana, Chandrabhas and Govindaraj, A and Sood, Ajay K and Rao, CNR (2000) Brillouin scattering from $C_{70}$ and $C_{60}$ films: a comparative study of elastic properties. In: Chemical Physics Letters, 331 (2-4). pp. 149-153.

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.

Teredesai, Pallavi V and Sood, AK and Muthu, DVS and Sen, R and Govindaraj, A and Rao, CNR (2000) Pressure-induced reversible transformation in single-wall carbon nanotube bundles studied by Raman spectroscopy. In: Chemical Physics Letters, 319 (3-4). pp. 296-302.

Mishra, SR and Rawat, HS and Mehendale, SC and Rustagi, KC and Sood, AK and Bandyopadhyay, Ranjini and Govindaraj, A and Rao, CNR (2000) Optical limiting in single-walled carbon nanotube suspensions. In: Chemical Physics Letters, 317 (3-5). pp. 510-514.

Govindaraj, A and Nath, Manashi and Eswaramoorthy, M (2000) Studies of $C_{60}$ and $C_{70}$ incorporated in cubic mesoporous silica (MCM-48). In: Chemical Physics Letters, 317 (1-2). pp. 35-39.

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.

Govindaraj, A and Flahaut, E and Laurent, Ch and Peigney, A and Rousset, A and Rao, CNR (1999) An investigation of carbon nanotubes obtained from the decomposition of methane over reduced Mg1− xM xAl2O4 spinel catalysts. In: Journal of Materials Research, 14 (6). 2567-2576 .

Govindaraj, A and Flahaut, E and Laurent, Ch and Peigney, A and Rousset, A and Rao, CNR (1999) An investigation of carbon nanotubes obtained from the decomposition of methane over reduced $Mg_{1-x}M_xAl_2O_4$ spinel catalysts. In: Journal of Materials Research, 14 (6). pp. 2567-2576.

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.

Flahaut, E and Govindaraj, A and Peigney, A and Laurent, C and Rousset, A and Rao, CNR (1999) Synthesis of single-walled carbon nanotubes using binary (Fe, Co, Ni) alloy nanoparticles prepared in situ by the reduction of oxide solid solutions. In: Chemical Physics Letters, 300 (1-2). pp. 236-242.

Sood, AK and Teresdesai, Pallavi V and Muthu, DVS and Sen, Rahul and Govindaraj, A and Rao, CNR (1999) Pressure Behaviour of Single Wall Carbon Nanotube Bundles and Fullerenes: A Raman Study. In: physica status solidi: B, 215 . pp. 393-401.

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.

Govindaraj, A and Sen, R and Santra, AK and Nagaraju, BV (1998) Carbon structures obtained by the disproportionation of carbon monoxide over nickel catalysts. In: Materials Research Bulletin, 33 (4). pp. 663-667.

Govindaraj, A and Sen, Rahul and Nagaraju, Venkata B and Rao, CNR (1997) Carbon nanospheres and tubules obtained by the pyrolysis of hydrocarbons. In: Philosophical Magazine Letters, 76 (5). pp. 363-368.

Sen, R and Govindaraj, A and Rao, CNR (1997) Metal-billed and hollow carbon nanotubes obtained by the decomposition of metal-containing free precursor molecules. In: Chemistry of Materials, 9 (10). pp. 2078-2081.

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

Sen, R and Govindaraj, A and Rao, CNR (1997) Carbon nanotubes by the metallocene route. In: Chemical Physics Letters, 267 (3-4). pp. 276-280.

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 Sumathy, R and Sood, AK (1996) A combined experimental and theoretical study of the charge-transfer compound between C60Br8 and tetrathiafulvalene. In: Molecular Physics, 89 (1). pp. 267-277.

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

Rao, CNR and Sen, Rahul and Govindaraj, A (1996) Fullerenes and carbon nanotubes. In: Current Opinion in Solid State & Materials Science, 1 (2). pp. 279-284.

Rao, CNR and Seshadri, Ram and Govindaraj, A and Sen, Rahul (1995) Fullerenes, nanotubes, onions and related carbon structures. In: Materials Science and Engineering, 15 (6). pp. 209-262.

Aiyert, Hemantkumar N and Govindaraj, A and Rao, CNR (1995) Orientational disorder and other aspects of C70 and C60-C70 films deposited on single-crystal substrates. In: Philosophical Magazine Letters, 72 (3). pp. 185-191.

Muthu, DVS and Sood, AK and Govindaraj, A and Rao, CNR (1995) Raman Spectroscopy of the Charge Transfer Complex (TTF)x C60 Br8. In: Fullerene Science and Technology, 3 (6). pp. 755-764.

Aiyer, Hemantkumar N and Govindaraj, A and Rao, CNR (1994) Scanning tunneling microscopy and spectroscopy of C70 thin films. In: Bulletin of Materials Science, 17 (6). pp. 563-575.

Seshadri, Ram and Alyer, Hemantkumar N and Govindaraj, A and Rao, CNR (1994) Electron Transport Properties of Carbon Nanotubes. In: Solid State Communications, 19 (3). pp. 195-199.

Seshadri, R and Govindaraj, A and Aiyer, HN and Sen, R and Subbanna, GN and Raju , AR and Rao, CNR (1994) Investigations of carbon nanotubes. In: Current science (Bangalore), 66 (11). 839 -847 .

Rao, CNR and Seshadri, Ram and Govindaraj, A and Mittal, JP and Pal, H and Mukherjee, T (1993) Electronic absorption and emission spectroscopic investigations of the interaction of the fullerenes, C60 and C70, with amines and aromatic molecules. In: Journal of Molecular Structure, 300 . pp. 289-301.

Govindaraj, A (1993) Investigation of the fullerene hydride $C_{60}H_{36}$. In: Current Science, 65 (11). pp. 868-870.

Govindaraj, A and Rathna, A and Chandrasekhar, J and Rao, CNR (1993) Investigations on $C_{70}H_{30}$ obtained by the Birch reduction of $C_{70}$. In: Proceedings of Indian Academy of Sciences: Chemical Sciences, 105 (4-5). pp. 303-309.

Varma, Vijay and Seshadri, Ram and Govindaraj, A and Sood, AK and Rao, CNR (1993) An infrared spectroscopic study of the orientational phase transitions of C70. In: Chemical Physics Letters, 203 (5-6). pp. 545-548.

Rao, CNR and Pradeep, T and Seshadri, R and Govindaraj, A (1992) Nitrogen Derivatives Of C-60 And C-70 - Interaction Of Fullerenes With Nitrogen In Gas-Phase. In: Indian Journal of Chemistry - Section A: Inorganic, Physical, Theoretical and Analytical Chemistry, 31 (5). F27-F31.

Seshadri, Ram and Govindaraj, A and Nagarajan, R and Rao, CNR and Pradeep, T (1992) Addition of amines and halogens to fullerenes C60 and C70. In: Tetrahedron Letters, 33 (15). 2069 -2070.

Editorials/Short Communications

Rao, CNR and Govindaraj, A and Aiyer, Hemantkumar N and Seshadri, Ram (1995) Polymerization and Pressure-Induced Amorphization of C60 and C70. In: Journal of Physical Chemistry, 99 (46). pp. 16814-16816.

This list was generated on Thu Apr 25 19:49:20 2024 IST.