Publications
 
 Dr.T.Sreekanth has published 38 research papers in various national and international journals.
 
 
Sl.
No.
Title with page nos. Journal name with month & Year of publications ISSN / ISBN No. Whether peer reviewed Impact Factor, if any
1 Conductivity and parametric studies of a [PEO + Glass) (15N2O-15NaF-70B2O3)] cell, 76 (1998) 30-35. Journal of Power Sources (1998) 0378-7753 6.686
2 Ion-Conducting polymer electrolyte based on poly (ethylene oxide) complexed with NaNO3 salt-application as an electrochemical cell, 79 (1999) 105-110. Journal of Power Sources (1999) 0378-7753 6.686
3 Study of plasticizer effect on (PEO+NaYF4) polymer electrolyte and its use as an electrolyte and its use as an electrochemical cell, 126(1999)55-63. Solid State Ionics (1999) 0167-2738 2.751
4 Ion conducting polymer electrolyte films based on (PEO+KNO­3) system and its applications as an electrochemical cell, 64(1999) 107-112. Materials Science & Engineering B, (1999) 0921-5107 3.316
5  Ion transport and electrochemical cell characteristic studies of a new (PVP+NaNO3) polymer electrolyte system, Journal of Material Science, 35(2000) 2841-2845. Journal of Material Science  (2000) 0022-2461 2.993
6 Polymer electrolyte system based on (PEO+KBrO3) its applications as an electrochemical cell, 93(2001)268-272. Journal of Power Sources (2001) 0378-7753 6.686
7 Study of transport and electrochemical cell characteristics of PVP:NaClO3 polymer electrolyte system, 101(2001) 130-133. Journal of Power Sources 0378-7753 6.686
8 PEO: KIOPolymer electrolyte system – its application to solid state electrochemical cell, 12(2001) 153-156. Journal of Materials Science: Materials in Electronics (2001) 0957-4522 2.324
9 Study on Performance of Carbon Nanotubes, Vol. I, No.3, Nov 2007, pp -29-38. Technology Spectrum, JNTUH (2007) 09746854 --
10 Structural investigation of Nano composite (PEO+KNO3+Nano Al2O3) solid polymer electrolytes. Vol. 4, No.3-2010,pp. 1-4. Technology Spectrum JNTUH (2010) 09746854 --
11 Study of characterization and transport properties of (PEO+NaClO3) polymer electrolyte,
2012 3(1): 1-5.
Journal of Trends in Chemistry (2012) 21460914 --
12 Characterization and application of the (PEO+KIO3+Plasticizer) solid state polymer electrolyte system, April 2013, Volume 62, Issue 8, pp 1129-1133. Journal of the Korean Physical Society (2013) 0374-4884 0.493
13 Preparation and Characterization of (PEO+NaClO3) Based Polymer, Vol. 4, Issue 1(Version3), January 2014, pp.29-32. International Journal of Engineering Research and Applications www.ijera. com. (2014) 2248-9622 5.179
14 The Effect of Nano Filler Al2O3 on (PEO+KClO4) Based Polymer Electrolyte Gas Sensors, Vol. 4, No. 2, March 2014. International Journal of Applied Physics and Mathematics (2014) 2010-362X --
15 Investigation of Characterization of (PEO+NaClO3+Plasticizer) Based Polymer Electrolytes, Volume 3 Issue 8, August 2014. International Journal of Science and Research (IJSR) (2014) 2319-7064, 3.358
16 Study of Characterization of (PEO+KClO4) Polymer Electrolyte System, Volume: 03 Issue: 02 | Feb-2014, Available @ http://www.ijret.org, pp 263-267. IJRET: International Journal of Research in Engineering and Technology (2014) 2319-1163 --
17 Ultrasonic and Densimetric Studies of Solute-Solvent Interaction in Aqueous Electrolytic Solutions-Part I: Isentropic Compressibility and Acoustic Impedance of Transition Metal Chloride Solutions, Vol. 12 No.1, January – June – 2014. Science & Society (2014) 0973-0206 --
18 Ultrasonic and Densimetric Studies of Solute-Solvent Interaction in Aqueous Electrolytic Solutions-Part II: Isentropic Compressibility and Acoustic, Vol. 12 No.1, January – June – 2014.  Impedance of Transition Metal Nitrate Solutions Science & Society
(2014)
0973-0206 --
19 Ultrasonic and Densimetric Studies of Solute-Solvent Interaction in Aqueous Electrolytic Solutions-Part III: Isentropic Compressibility and Acoustic Impedance of Transition Metal Sulphate Solutions Science & Society
(2014)
0973-0206 --
20 Effect of Placement of Hydroxyl Groups in Isomeric Butanol on the Behavior of Thermophysical and Spectroscopic Properties of 2-Methoxyaniline, December 2015, Volume 44, Issue 12, pp 2267–2296 Journal of Solution Chemistry
 (2015)
1572-8927 1.401
21 Electronic, Magnetic and Optical Properties of Rutile Ti1-xTM x O2 (TM = V, Fe, Co, Ni) Using Tran and Blaha’s Modified Becke–Johnson Exchange Potential Model, October 2016, Volume 29, Issue 10, pp 2641–2650 Journal of Superconductivity and Novel Magnetism
(2016)
1557-1947 1.142
22 A Comparative Study on the Role of the Plasticizer on (PEO+KBrO3) Polymer Electrolytes, Volume 4, Issue 5 May 2017 International Journal of Engineering Technology Science and Research (2017) 2394 – 3386 2.120
23 Impression of (PEO+KBrO3+Plasticizer) Polymer Electrolyte as Carbon Monoxide Gas Sensor, Volume7, Issue 6,(Part -4), Pages 47-51, 2017/6 International Journal of Engineering Research and Application (2017) 2248-9622 5.179
24 Assessment of Ion-Solvent Interactions of Electrolyte Solutions in Binary Solvent Mixtures, Volume 7, Issue 5, Pages1-5, 2017/9 International Journal of Applied Science & Technology Research Excellence (2017) 2250-2726 2.47
25 Transport properties of PEO: KClO4 solid state polymer electrolytes, Volume 4, Issue 12, Pages 59-64 (2017) International Journal of Current Engineering and Scientific Research (2017) 2394-0697 3.241
26 Sensing Performance of PEO: KClO4 Polymer Electrolyte as Gas Sensor, Volume 4, Issue 7, Pages 240-244, (2017) Journal For Advanced Research In Applied Sciences (2017) 2394-8442 5.80
27 Studies on the importance of thermodynamic and transport properties of liquid mixtures at various temperatures
, May 2018, Volume 132, Issue 2, pp 1167–1181
Journal of Thermal Analysis and Calorimetry (2018) 1588-2926 2.209
28 A Comparative Study of Chemically and Biologically Synthesized MgO Nanomaterial for Liquefied Petroleum Gas Detection, July 2018, Volume 47, Issue 7, pp 3468–3473 Journal of Electronic Materials (2018) 1543-186X 1.566
29 Fabrication of Gas Sensor By Using (PEO+KNO3+Nano Al2O3) Composite Polymer Electrolyte, Volume 4, Issue 4, Pages 2616-2619 (2018) International Journal for Science and Advance Research In Technology (IJSART)
 (2018)
2395-1052 5.388
30 Investigation of XRD and Transport Properties of (PEO+ KNO3+ Nano Al2O3) Composite Polymer Electrolyte, Volume
15, Issue 1, Pages 23-27 (2018)
Material Science Research India (2018) 2394-0565 --
31 Study of IR and DC Conductivity of (PEO+KBrO3+Plasticizer) Polymer Electrolytes, Vol. 7, Issue 10, Oct, 2018. International Journal of Scientific Research and Review
(2018)
2279-543X 6.1
32 Fabrication of Electrochemical Cell and Gas Sensor by using (PEO+NaClO3+PLASTICIZER) Polymer Electrolyte International Journal of Technical Innovation in Modern Engineering & Science (IJTIMES) 2455-2585 5.22
33 Influence of Dysprosium on the dielectric properties of bismuth layered structured Piezo ceramics Rasayan Journal of Chemistry 09741496 0.29
34 Thermodynamic and transport properties of 2-methoxyaniline with substituted ethanols at various temperatures INTERNATIONAL JOURNAL OF AMBIENT ENERGY2019 1430750 3.219
35 Thermodynamic, DFT and molecular dynamics studies of intermolecular interactions between 2-methoxyaniline and N- substituted amide mixtures CHEMICAL DATA COLLECTIONS
2019
24058300 0.94
36 Synthesis of Ag, Cu and Ag-Cu Bimetallic Nanoparticles Using Tulsi Leaf Extract INTERNATIONAL JOURNAL OF ADVANCED SCIENCE AND TECHNOLOGY
2020
22076360,                  20054238 0.41
37 Dielectric properties of Na and Pr doped SrBi4Ti4O15 ceramics MATERIALSTODAY:PROCEEDINGS
2020
2214-7853 0.97
38 Dielectric properties of sodium and neodymium substitute to A-Site SrBi4Ti4O15 ceramics FERROELECTRICS
2020
‎0015-0193 0.75
 
 


Dr.Suresh Sripada has published 32 research papers in various national and international journals.

Sl.
No.
Title with page nos. Journal name with month & Year of publications ISSN / ISBN No. Whether peer reviewed Impact Factor, if any
1 Pressure-Induced Martensitic Phase Transition and Low Lattice Thermal Conductivity of SrClF, 125(31), 17261–17270 The Journal of  Physical Chemistry, 8/3/2021 1932-7447 4.18
2 Structural Studies of TeO2–SeO2–Na2O Glass System, 47, 308-320 Glass Physics and Chemistry, 7/2021 1608-313X 0.9
3 Raman and in-field 57Fe Mössbauer study of cation distribution in indium (In) substituted phase pure cobalt ferrite (CoFe2− xInxO4), 523, 167561 Journal of Magnetism and Magnetic Materials, 4/1/2021 0304-8853 3.05
4 Crystal structure of Samarium based orthoferrites for Solid Oxide Fuel Cells 63(6) Solid State Technology, 2020 0038-111X 0.33
5 Physical, Optical, Structural and Thermal Studies of xWO3 + (30 − x)As2O3 + 70TeO2 (where x = 10, 20, 30 mol%) glasses by UV–vis, Raman, 224, 165450 Optik, Dec – 2020 0030-4026 2.44
6 Influence of nano crystalline behavior of Nb2O5–Sb2O3–TeO2 glass ceramics on structural and thermal studies, 46, 6344-6357 Materials today: proceedings
2021
2214-7853 1.24
7 Highly effective SnS composite counter electrode sandwiched bi-function CeO2:Er3+/Yb3+ assisted surface modified photoelectroded dye sensitized solar cell exceeds 9.5% efficiency, 207,  1158-1164 Solar Energy
2020
0038-092X 4.67
8 Effect of  indium substitution on structural and hyperfine parameters of  CoFe2O4, 2220, 110038 Aip conference proceedings, 2020 0094-243X, 0.40
9 Structural and optical properties of TeO2- SeO2-Na2O glass system, 58 (1), 50-62 Indian Journal of Pure & Applied Physics, 2020 0019-5596 0.65
10 Raman and in-field 57Fe Mössbauer study of cation distribution in Ga substituted cobalt ferrite (CoFe2-xGaxO4), 837,  155478 Journal of Alloys And Compounds
2020
0925-8388 4.65
11 Impedance analysis of TeO2-SeO2-Li2O nano glass system. 13, 102133 Results in Physics
February 2019
2211-3797 2.14
12 Spatio – temporal distribution of CO2 mixing ratio over Bhubaneswar, Varanasi and Jodhpur of India - airborne campaign, 2016. 201, 257-264 Atmospheric Environment
January 2019

 
1352-2310 3.70
13 Structural study of TeO2–SeO2–Li2O ternary glass system using Raman and IR. 59(2), 88-92 Phys. Chem. Glasses: Eur. J .Glass Sci. Technol. B April 2018 0031-9090 0.63
14 Structural Properties of Pr1-xSrxFeO3 materials For Solid Oxide Fuel Cells. 4(6), 1059 - 1061 IJSRET
Nov-Dec 2018,
2395 - 566X 3.24
15 Infrared and Raman Spectroscopic Investigations of xSrO-(40-x) As2O3 –60TeO2 Glass System. 5(3), 1366-72 ICETESM
March 2017
978-93-86171-32-0  
16  Electron paramagnetic resonance of V4+ ions in the xB2O3–(100−x) TeO2 (x=0 to 50 mol%) binary glass system. 58 (2), 63-67  Phys. Chem. Glasses: Eur. J. Glass Sci. Technol. B., April 2017 0031-9090  0.63
17 AC conductivity and impedance measurements in alkali boro-tellurite glasses. 356 (31-32), 1599–1603 Journal of Non-Crystalline Solids. 2010   0022-3093 2.48
18 Structure, physical and thermal properties of WO3–GeO2–TeO2 glasses. 121, 335–341 Materials Chemistry and Physics. 2010 0254-0584 2.21
19 Studies on boro cadmium tellurite glasses. 34 (1),  215–220 Optical Materials. 2011   1873-1252 2.02
20 Structural evaluation on TeO2–SeO2–R2O ternary glass system using Raman and IR. 5 (1), 95–99 Emerging Materials
Research. 2016
2046-0147 0.34
21 An electron paramagnetic resonance and optical study of Cr doped BaAl12O19 powders. 40 (7), 9629-9636 Ceramics International
August 2014
‎0272-8842 3.05
22 DSC, Raman and Impedance Spectroscopy Studies
on thexB2O3−(90−x)TeO2–10TiO2(where x= 0 to 50 mol%) Glass System. 62, 762-769
Journal of the Korean Physical Society. March 2013 0374-4884 0.41
23 Study of Dielectric Relaxation in 60B2O3–10TeO2 -5TiO2 -25R2O(R= Li, Na & K) Quaternary Glass System. 136-140 IJERA. January 2014 2248-9622 5.17
24 Preparation and Characterization of Pr1-xSrxMO3(PSMO) (0≤x≤0.6) Nano materials. 3 (10), 3709–3712. Materials Today: Proceedings, 2016 2214-7853 1.24
25 Glass transition temperature-structural studies of tungstate tellurite glasses. 118(2–3), 298-302 Materials Chemistry and Physics. December 2009 0254-0584 2.21
26 ESR, optical absorption, IR and Raman studies of xTeO2 + (70−x)B2O3 + 5TiO2 + 24R2O:1CuO (x = 10, 35 and 60 mol%; R = Li, Na and K) quaternary glass system. 47(3) 724-731 Materials Research. Bulletin. March 2012 0025-5408 2.87
27 ESR,IR Optical absorption and Raman studies of 60B2O3+10TeO2+5TiO2+24R2O:1CuO quaternary glass system. 34(1) 215-220, Ind.J.Pure & Appl.Physics, 2009 0975-1041 0.71
28 ESR, IR Optical absorption and Raman studies of Cu2+ ion doped xB2O3-(100-x)TeO2 glass system.
46(1), 27-30
Phys.Chem.Glasses. 2005 1753-3562 0.63
29 Spectroscopic studies of Cu2+ doped in xPbO-(100-x) B2O3 non-linear optical glass system. 325, 105-106 Ferroelectrics. 2005

 
0015-0193 0.4
30 ESR, IR and optical absorption studies of Cu2+ spin probe in xNa2O-(50-x)ZnO-50B2O3 ternary glass system. 43, 833-837 In.J.Pure & Appl. Phys. 2005 0975-1041 0.71
31 Spectroscopic and transport studies of Cu2+ doped in (30-x)Na2O-xNaF-50B2O3-20Bi2O3 glasses. 42, 560-564 In.J.Pure & Appl. Phys. 2004 0975-1041 0.71
32 ESR, and optical absorption and transport studies of Cu2+ spin probe in 50Li2O3-(50-x)B2O3-xBi2O3 glass system. 41, 954-960 In.J.Pure & Appl. Phys. 2003 0975-1041 0.71
 

 
 


Mr. Rajesh Siripuram has published 6 research papers in various national and international journals.


Sl.
No.
Title with page nos. Journal name with month & Year of publications ISSN / ISBN No. Whether peer reviewed Impact Factor, if any
1 Structural evaluation on TeO2–SeO2–R2O ternary glass system using Raman and IR. 5(1):Pp 95–99 Emerging Materials
Research.2016
2046-0147 0.341
2  Electron paramagnetic resonance of V4+ ions in the xB2O3–(100−x) TeO2 (x=0 to 50 mol%) binary glass system. Volume 58, Number 2, pp. 63-67(5)  Phys. Chem. Glasses: Eur. J. Glass Sci. Technol. B., April 2017 0031-9090  
 
0.63
3 Structural study of TeO2–SeO2–Li2O ternary glass system using Raman and IR. Volume  59, Number 2,pp. 88-92(5) Phys. Chem. Glasses: Eur. J .Glass Sci. Technol. B April 2018 0031-9090  
 
0.63
4 Impedance analysis of TeO2-SeO2-Li2O nano glass system. Volume 13 Pp 1-13 Results in Physics
February 2019

 
2211-3797 2.147
5 Infrared and Raman  Spectroscopic Investigations of xSrO-(40-x) As2O3 –60TeO2 Glass System ICETESM
March 2017
978-93-86171-32-0  
 
6 Raman and IR studies on Tellurite based Lithium Selenite glasses. 3 (s3) 2015. Int.J.Eng.Research-Online 2015  2321-1758 3.6