M.K. Saxena
Bhabha Atomic Research Centre
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by M.K. Saxena.
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy | 2018
Manjulata Sahu; Santosh K. Gupta; D. Jain; M.K. Saxena; R.M. Kadam
An effort was taken to carry our speciation study of uranium ion in technologically important cerate host Sr2CeO4 using time resolved photoluminescence spectroscopy. Such studies are not relevant only to nuclear industry but can give rich insight into fundamentals of 5f electron chemistry in solid state systems. In this work both undoped and varied amount of uranium doped Sr2CeO4 compound is synthesized using complex polymerization method and is characterized systematically using X-ray diffraction (XRD), Raman spectroscopy, impedance spectroscopy and scanning electron microscopy (SEM). Both XRD and Raman spectroscopy confirmed the formation of pure Sr2CeO4 which has tendency to decompose peritectically to SrCeO3 and SrO at higher temperature. Uranium doping is confirmed by XRD. Uranium exhibits a rich chemistry owing to its variable oxidation state from +3 to +6. Each of them exhibits distinct luminescence properties either due to f-f transitions or ligand to metal charge transfer (LMCT). We have taken Sr2CeO4 as a model host lattice to understand the photophysical characteristics of uranium ion in it. Emission spectroscopy revealed the stabilization of uranium as U (VI) in the form of UO66- (octahedral uranate) in Sr2CeO4. Emission kinetics study reflects that uranate ions are not homogeneously distributed in Sr2CeO4 and it has two different environments due to its stabilization at both Sr2+ as well as Ce4+ site. The lifetime population analysis interestingly pinpointed that majority of uranate ion resided at Ce4+ site. The critical energy-transfer distance between the uranate ion was determined based on which the concentration quenching mechanism was attributed to electric multipolar interaction. These studies are very important in designing Sr2CeO4 based optoelectronic material as well exploring it for actinides studies.
Dalton Transactions | 2015
Santosh K. Gupta; Manjulata Sahu; P. S. Ghosh; Deepak Tyagi; M.K. Saxena; R.M. Kadam
Journal of Materials Chemistry C | 2013
Santosh K. Gupta; Manjulata Sahu; K. Krishnan; M.K. Saxena; V. Natarajan; S.V. Godbole
Journal of Alloys and Compounds | 2009
Manjulata Sahu; K. Krishnan; M.K. Saxena; K. L. Ramakumar
Thermochimica Acta | 2011
Manjulata Sahu; K. Krishnan; B.K. Nagar; M.K. Saxena; Smruti Dash
Journal of Thermal Analysis and Calorimetry | 2013
Manjulata Sahu; K. Krishnan; M.K. Saxena; Smruti Dash
Journal of Nuclear Materials | 2012
Manjulata Sahu; K. Krishnan; B.K. Nagar; Dheeraj Jain; M.K. Saxena; C.G.S. Pillai; Smruti Dash
Thermochimica Acta | 2014
Manjulata Sahu; Deepak Rawat; Bal Govind Vats; M.K. Saxena; Smruti Dash
Journal of Luminescence | 2017
Manjulata Sahu; Santosh K. Gupta; R.M. Kadam; M.K. Saxena
Industrial & Engineering Chemistry Research | 2016
Sankararao Chappa; Sadananda Das; Anil K. Debnath; Manjulata Sahu; M.K. Saxena; Ashok Pandey