Home         People        Research        Publications        Contact

 

HRTEM Gallery        Teaching        Facilities        Funding        News


 

For updated list visit please visit other sites

Scopus ID: 14069136600      

 

Researcher ID: A-3393-2013      

 

Google Scholar page:

 


Publications:         Conference Presentations:            Patents:               Book Chapters:                Talks:


      

2019         

 

2018         

 

2017         

 

2016         

 

2011-2015       

 

 

61. Jayakumar OD, Sudakar C, Persson C, Salunke HG, Naik R, Tyagi AK. Erratum: Enhancement of ferromagnetic properties in Zn0.95Co0.05O nanoparticles by indium codoping: An experimental and theoretical study (Applied Physics Letters (2010) 97 (232510)). Applied Physics Letters. 2011;98(7).

 

62. Jayakumar OD, Sudakar C, Tyagi AK. Magnetic behavior of gallium doped Zn0.95Co0.05O nanoparticles. Nanoscience and Nanotechnology Letters. 2011;3(2):140-5.

 

63. Jayakumar OD, Sudarsan V, Shashikala K, Sudakar C, Naik R, Vatsa RK, et al. Defect stabilization in ZnO nanorods by Mg2+ doping. Journal of Nanoscience and Nanotechnology. 2011;11(4):3273-7.

 

64. Persson C, Jayakumar OD, Sudakar C, Sudarsan V, Tyagi AK. Morphology and magnetic coupling in ZnO:Co and ZnO:Ni co-doped with Li. Acta Physica Polonica A. 2011;119(2):95-8.

 

65. Regmi R, Gumber V, Rao VS, Kohli I, Black C, Sudakar C, et al. Discrepancy between different estimates of the hydrodynamic diameter of polymer-coated iron oxide nanoparticles in solution. Journal of Nanoparticle Research. 2011;13(12):6869-75.

 

66. Sasikala R, Shirole AR, Sudarsan V, Girija KG, Rao R, Sudakar C, et al. Improved photocatalytic activity of indium doped cadmium sulfide dispersed on zirconia. Journal of Materials Chemistry. 2011;21(41):16566-73.

 

67. Sayed FN, Jayakumar OD, Sudakar C, Naik R, Tyagi AK. Possible weak ferromagnetism in pure and M (Mn, Cu, Co, Fe and Tb) Doped NiGa2O4 Nanoparticles. Journal of Nanoscience and Nanotechnology. 2011;11(4):3363-9.

 

68. Sudakar C. Role of defects, surface and interface disorders and clusters on the magnetic properties of transition metal doped semiconducting oxide thin films.  Magnetic Thin Films: Properties, Performance and Applications2011. p. 107-34.

 

69. Bazzi K, Dhindsa KS, Dixit A, Sahana MB, Sudakar C, Nazri M, et al. Nanostructured high specific capacity C-LiFePO4 cathode material for lithium-ion batteries. Journal of Materials Research. 2012;27(2):424-30.

 

70. Dutta DP, Sudakar C, Mocherla PSV, Mandal BP, Jayakumar OD, Tyagi AK. Enhanced magnetic and ferroelectric properties in scandium doped nano Bi2Fe4O9. Materials Chemistry and Physics. 2012;135(2-3):998-1004.

 

71. Ma Q, Prater JT, Sudakar C, Rosenberg RA, Narayan J. Defects in room-temperature ferromagnetic Cu-doped ZnO films probed by x-ray absorption spectroscopy. Journal of Physics Condensed Matter. 2012;24(30).

 

72. Sahana MB, Sudakar C, Dixit A, Thakur JS, Naik R, Naik VM. Quantum confinement effects and band gap engineering of SnO2 nanocrystals in a MgO matrix. Acta Materialia. 2012;60(3):1072-8.

 

73. Sudakar C, Singh S, Rao MSR, Lawes G. The role of defects in functional oxide nanostructures. Springer Series in Materials Science 2012. p. 37-68.

 

74. Mocherla PSV, Karthik C, Ubic R, Ramachandra Rao MS, Sudakar C. Tunable bandgap in BiFeO3 nanoparticles: The role of microstrain and oxygen defects. Applied Physics Letters. 2013;103(2).

 

75. Padmaja S, Jayakumar S, Balaji R, Sudakar C, Kumaravel M, Rajendran V, et al. Structural and optical properties of CdS/PEO nanocomposite solid films. Materials Science in Semiconductor Processing. 2013;16(6):1502-7.

 

76. Radhamani AV, Karthik C, Ubic R, Ramachandra Rao MS, Sudakar C. Suppression of FeLi• antisite defects in fluorine-doped LiFePO4. Scripta Materialia. 2013;69(1):96-9.

 

77. Jayakumar OD, Persson C, Tyagi AK, Sudakar C. Experimental and theoretical investigations of dopant, defect, and morphology control on the magnetic and optical properties of transition metal doped ZnO nanoparticles. Springer Series in Materials Science 2014. p. 341-70.

 

78. Mocherla PSV, Karthik C, Ubic R, Ramachandra Rao MS, Sudakar C. Effect of microstrain on the magnetic properties of BiFeO3 nanoparticles. Applied Physics Letters. 2014;105(13).

 

79. Sahana MB, Vasu S, Sasikala N, Anandan S, Sepehri-Amin H, Sudakar C, et al. Raman spectral signature of Mn-rich nanoscale phase segregations in carbon free LiFe1-xMnxPO4 prepared by hydrothermal technique. RSC Advances. 2014;4(110):64429-37.

 

80. Thapa P, Lawes G, Nadgorny B, Naik R, Sudakar C, Schaff WJ, et al. Ferromagnetism and spin polarization in indium nitride, indium oxynitride, and Cr substituted indium oxynitride films. Applied Surface Science. 2014;295:189-93.

 

81. Mocherla PSV, Gautam S, Chae KH, Ramachandra Rao MS, Sudakar C. Wide-range tunable bandgap in Bi1-xCaxFe1-yTiyO3-δ nanoparticles via oxygen vacancy induced structural modulations at room temperature. Materials Research Express. 2015;2(9).

 

82. Swain P, Viji M, Mocherla PSV, Sudakar C. Carbon coating on the current collector and LiFePO4 nanoparticles - Influence of sp2 and sp3-like disordered carbon on the electrochemical properties. Journal of Power Sources. 2015;293:613-25.

 

Before 2010               

 


Copyright (C), C. Sudakar, PhD., All right reserved. 2019
Updated: Sep 2019