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Featured researches published by S. Phapale.


Inorganic Chemistry | 2015

Preparation and structure of uranium-incorporated Gd2Zr2O7 compounds and their thermodynamic stabilities under oxidizing and reducing conditions.

Mohsin Jafar; S. Phapale; Balaji P. Mandal; Ratikant Mishra; A. K. Tyagi

Gd2Zr2O7 is being contemplated as a futuristic matrix for the incorporation of high-level radioactive nuclear waste. This compound has the unique ability to incorporate several fission products and heavy metal ions like uranium and thorium into its lattice sites without undergoing structural changes. X-ray diffraction analyses of Gd2-xUxZr2O7+δ samples indicate that the parent compound can incorporate a substantial amount of uranium, both under oxidizing and reducing conditions. The oxidation state of these samples was investigated by X-ray photoelectron spectroscopy. The thermodynamic stability of uranium-substituted Gd2Zr2O7 is an important parameter that will govern the long-term storage of uranium and minor actinides in this matrix. High-temperature calorimetry has been used to investigate the stability of the Gd2-xUxZr2O7+δ (0.00 ≤ x ≤ 0.15) compositions. The standard molar free energy of the formation of Gd2-xUxZr2O7+δ (0.00 ≤ x ≤ 0.15) compositions has been estimated. From the free energy of formation data, the sample corresponding to x = 0.15 was found to be most stable in the Gd2-xUxZr2O7+δ (0.00 ≤ x ≤ 0.15) series. The relative stabilities of U(4+) and U(6+) substituted gadolinium zirconate have been discussed on the basis of the charge on the uranium ion and the incorporation of corresponding extra oxygen atoms into the lattice for charge compensation.


Inorganic Chemistry | 2013

Sequential Evolution of Different Phases in Metastable Gd2–xCexZr2–xAlxO7 (0.0 ≤ x ≤ 2.0) System: Crucial Role of Reaction Conditions

Rakesh Shukla; Farheen N. Sayed; S. Phapale; Ratikant Mishra; A. K. Tyagi

The Gd(2-x)Ce(x)Zr(2-x)Al(x)O7 (0.0 ≤ x ≤ 2.0) series was synthesized by the gel combustion method. This system exhibited the presence of a fluorite-type phase, along with a narrow biphasic region, depending upon the Ce/Gd content in the sample. Thermal stability of these new compounds under oxidizing and reducing conditions has been investigated. The products obtained on decomposition of Gd(2-x)Ce(x)Zr(2-x)Al(x)O7 in oxidizing and reducing conditions were found to be entirely different. It was observed that in air the fluorite-type solid solutions of Gd(2-x)Ce(x)Zr(2-x)Al(x)O7 composition undergo phase separation into perovskite GdAlO3 and fluorite-type solid solutions of Gd-Ce-Zr-O or Ce-Zr-Al-O depending upon the extent of Ce and Al substitution. On the other hand, Gd(2-x)Ce(x)Zr(2-x)Al(x)O7 samples on heating under reducing conditions show a phase separation to CeAlO3 perovskite and a defect-fluorite of Gd2Zr2O7. The extent of metastability for a typical composition of Gd(1.2)Ce(0.8)Zr(1.2)Al(0.8)O7 (nano), Gd(1.2)Ce(0.8)Zr(1.2)Al(0.8)O(6.6) (heated under reduced conditions), Gd(1.2)Ce(0.8)Zr(1.2)Al(0.8)O7 (heated in air at 1200 °C) has been experimentally determined employing a high temperature Calvet calorimeter. On the basis of thermodynamic stability data, it could be inferred that the formation of a more stable compound in the presence of two competing cations (i.e., Gd(3+) and Ce(3+)) is guided by the crystallographic stability.


Journal of Solid State Chemistry | 2016

Evidences of the existence of SiTe2 crystalline phase and a proposed new Si–Te phase diagram

Rosaline Mishra; P.K. Mishra; S. Phapale; P.D. Babu; P. U. Sastry; G. Ravikumar; A.K. Yadav


Propellants, Explosives, Pyrotechnics | 2013

Preparation of Nano‐Structured RDX in a Silica Xerogel Matrix

S. V. Ingale; P. U. Sastry; P. B. Wagh; Arvind Tripathi; R. Tewari; Vaisyappattu Balakrishnan Jayakrishnan; S. Phapale; Pandugula T. Rao; Rajbal D. Wasnik; Bikas Bhattacharya; Satish C. Gupta


Journal of Radioanalytical and Nuclear Chemistry | 2014

Synthesis and characterization of ammonium molybdophosphate–silica nano-composite (AMP–SiO2) as a prospective sorbent for the separation of 137Cs from nuclear waste

S. V. Ingale; Ramu Ram; P. U. Sastry; P. B. Wagh; Ratanesh Kumar; Ram Niranjan; S. Phapale; R. Tewari; Ashutosh Dash; Satish C. Gupta


Defence Science Journal | 2011

Nanocrystalline Pentaerythritoltetranitrate using Sol-Gel Process

S. V. Ingale; P. B. Wagh; P. U. Sastry; A. K. Patra; R. Tewari; I. K. Singh; S. Phapale; Rajbal D. Wasnik; A. Subhananda Rao; Satish C. Gupta


Journal of Alloys and Compounds | 2012

Standard enthalpy of formation of NaxCoO2 system

S. Phapale; Rosaline Mishra; P.K. Mishra


Journal of Thermal Analysis and Calorimetry | 2018

High-temperature crystallographic and thermodynamic investigations on synthetic zirconolite (CaZrTi 2 O 7 )

Mohsin Jafar; S. Phapale; S. N. Achary; Rosaline Mishra; A.K. Tyagi


Journal of Alloys and Compounds | 2014

Standard molar enthalpy of formation of Ce2Zr2O8

S. Phapale; Rakesh Shukla; Rosaline Mishra; A.K. Tyagi


Journal of Alloys and Compounds | 2018

Thermodynamic stability of SrThF 6 (cr) and BaThF 6 (cr)

Rimpi Dawar; S. Phapale; S. Kolay; M. Basu; Rosaline Mishra; A.K. Tyagi

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Rosaline Mishra

Bhabha Atomic Research Centre

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P. U. Sastry

Bhabha Atomic Research Centre

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A.K. Tyagi

Bhabha Atomic Research Centre

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Mohsin Jafar

Bhabha Atomic Research Centre

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P. B. Wagh

Bhabha Atomic Research Centre

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P.K. Mishra

Bhabha Atomic Research Centre

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S. V. Ingale

Bhabha Atomic Research Centre

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Satish C. Gupta

Bhabha Atomic Research Centre

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A. K. Tyagi

Bhabha Atomic Research Centre

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Pradeep Samui

Bhabha Atomic Research Centre

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