Centre for Tribal Technology Development (CTTD)

Publications

(Dr Vivek Garg)(1-47)
1 Thakur DS, Sharma RK, Garg V, Yadav S. DFT-based accurate and efficient bandgap prediction of CsSnI3-xBrx and parameter optimization for enhanced perovskite solar cell performance. Physica B: Condensed Matter. 2025;697:416693.
2 Kumar A, Siddharth G, Dwivedi P, Pandey SK, Sengar BS, Garg V. Insights into the potential of Sb alloyed Cu2AgBiI6-based solar cells: For efficient indoor energy-harvesting. Solar Energy. 2025;286:113188.
3 Yadav AK, S NS, Singh R, Das PP, Garg V, Pandey SK. DFT Calculations for Temperature Stable Quantum Capacitance of VS2 Based Electrodes for Supercapacitors. IEEE Transactions on Nanotechnology. 2024;23:132-8.
4Vinturaj VP, Yadav AK, Singh R, Garg V, Bhardwaj R, Ajith KM, et al. A DFT study of the adsorption behavior and sensing properties of CO gas on monolayer MoSe2 in CO2-rich environment. Journal of Molecular Modeling. 2024;30(8):250.
5Sharma RK, Patel HN, Garg V, Yadav S. Unraveling the Potential Pathways for Improved Performance of EDA0.01 (GA0.06 (FA0.8Cs0.2)0.94)0.98 SnI2Br‐Based Solar Cells. Energy Technology. 2024:2300876.
6Patel HN, Sharma RK, Joshi D, Garg V. Bandgap engineering of earth-abundant Cu2BaSn(S1-xSex)4 for photovoltaic application: A systematic approach to double grading. Solar Energy Materials and Solar Cells. 2024;269:112792.
7Patel HN, Sharma RK, Joshi D, Garg V. Elucidating the Potential Strategies for Performance Improvement of CBTSSe-Based Solar Cells: A Pathway Toward 20% Efficiency. Energy Technology. 2024;n/a(n/a):2301198.
8Mishra VV, Sharma AK, Siddharth G, Garg V, Sengar BS. Exploring Multi-Level ETL and HTL Configurations for High-Efficiency Lead-Free Cs2AgBiBr6 Double Perovskite Solar Cells: A Design and Simulation Study. Energy Technology. 2024;12(9):2400578.
9Manjhi S, Siddharth G, Pandey SK, Sengar BS, Garg V. Unveiling the Potential of Cs3Sb2ClxI9-x-Based Solar Cells for Efficient Indoor Light Harvesting: Numerical Simulation. Advanced Theory and Simulations. 2024;n/a(n/a):2400128.
10Kumar Sharma R, Narsi Patel H, Singh Thakur D, Garg V, Yadav S. Investigating ASnI2Br wide bandgap tin perovskite for bifacial solar cells: Modeling of bifacial efficiency with comparative analysis. Solar Energy. 2024;283:113017.
11Kumar S, Thiyyakkandy J, Yadav AK, Vinturaj V, Garg V, Prabhu S, et al. Comprehensive Modeling of High-Performance All-Inorganic Cs2TiBr6-Based Perovskite Solar Cells. physica status solidi (b). 2024;261(9):2400247.
12Yadav AK, Patel C, Kiran G, Singh R, Singh AK, Garg V, et al. Growth optimization and DFT investigation of doping effect on properties of VS2 monolayer crystals. The European Physical Journal B. 2023;96(4):49.
13Vinturaj VP, Yadav AK, Jasil TK, Kiran G, Singh R, Singh AK, et al. Theoretical investigation of electronic and optical properties of doped and defective MoSe2 monolayers. Bulletin of Materials Science. 2023;46(3).
14Singh D, Sengar BS, Dwivedi P, Garg V. Comparative analysis of gate structure dependent FET-based biosensor. Materials Today Communications. 2023;35:106301.
15Prajakta K, Vinturaj VP, Singh R, Garg V, Pandey SK, Pandey SK. Effect of Introducing Defects and Doping on Different Properties of Monolayer MoS2. physica status solidi (b). 2023;260(9):2300017.
16Manjhi S, Siddharth G, Pandey SK, Sengar BS, Dwivedi P, Garg V. Unveiling the Potential of Bismuth Oxy-Iodide (BiOI)-Based Photovoltaic Device for Indoor Light Harvesting. IEEE Transactions on Electron Devices. 2023.
17Jadhav A, Yadav S, Pandey SK, Garg V, Dwivedi P. Performance assessment of pocket tunnel FET and accumulation mode FET for detection of streptavidin protein. Physica Scripta. 2023;98(11):115002.
18Bhandari B, Yadav AK, Singh R, Kiran G, Singh AK, Garg V, et al. DFT Study about the Effect of Doping on the Properties of GaSb Material and Designing of High-Efficiency Infrared Photodetector. physica status solidi (b). 2023;260(11):2300299.
19Yadav S, Niranjan AS, Garg V. Design Investigation of Charge Plasma Tunnel FET with Vertical Source. Silicon. 2022;14(17):11821-8.
20Yadav S, Aslam M, Garg V, Reddy PJR. Design Analysis of Ohmic Junction Based Tunnel FET. Silicon. 2022;14(16):10901-8.
21Siddharth G, Garg V, Sengar BS, Mukherjee S. Progress in Thin Film Solar Cell and Advanced Technologies for Performance Improvement. Reference Module in Materials Science and Materials Engineering. 2021.
22Sengar BS, Garg V, Siddharth G, Kumar A, Pandey SK, Dubey M, et al. Improving the Cu2ZnSn(S,Se)4-Based Photovoltaic Conversion Efficiency by Back-Contact Modification. IEEE Transactions on Electron Devices. 2021;68(6):2748-52.
23Sengar BS, Garg V, Kumar A, Dwivedi P. Numerical Simulation: Design of High-Efficiency Planar p-n Homojunction Perovskite Solar Cells. IEEE Transactions on Electron Devices. 2021;68(5):2360-4.
24 Sachchidanand, Garg V, Kumar A, Sharma P. Numerical simulation of novel lead-free Cs3Sb2Br9 absorber-based highly efficient perovskite solar cell. Optical Materials. 2021; 122:111715.
25 Garg V, Sengar BS, Siddharth G, Kumar S, Atuchin VV, Mukherjee S. Insights into the sputter-instigated valence plasmon oscillations in CIGSe thin films. Surfaces and Interfaces. 2021; 25.
26 Dwivedi P, Singh R, Sengar BS, Kumar A, Garg V. A New Simulation Approach of Transient Response to Enhance the Selectivity and Sensitivity in Tunneling Field Effect Transistor-Based Biosensor. IEEE Sensors Journal. 2021; 21(3):3201-9.
27 Siddharth G, Singh R, Garg V, Sengar BS, Das M, Mandal B, et al. Investigation of DIBS-Deposited CdZnO/ZnO-Based Multiple Quantum Well for Large-Area Photovoltaic Application. IEEE Transactions on Electron Devices. 2020; 67(12):5587-92.
28 Siddharth G, Sengar BS, Garg V, Khan MA, Singh R, Mukherjee S. Analytical Performance Analysis of CdZnO/ZnO-Based Multiple Quantum Well Solar Cell. IEEE Transactions on Electron Devices. 2020; 67(3):1047-51.
29 Siddharth G, Garg V, Sengar BS, Bhardwaj R, Kumar P, Mukherjee S. Analytical Study of Performance Parameters of InGaN/GaN Multiple Quantum Well Solar Cell. IEEE Transactions on Electron Devices. 2019; 66(8):3399-404.
30 Kumar A, Das M, Sharma P, Garg V, Sengar BS, Barman A, et al. Resistive switching in reactive electrode-based memristor: engineering bulk defects and interface inhomogeneity through bias characteristics. Semiconductor Science and Technology. 2019.
31 Garg V, Sengar BS, Kumar A, Siddharth G, Kumar S, Mukherjee S. Investigation of valence plasmon excitations in GMZO thin film and their suitability for plasmon-enhanced buffer-less solar cells. Solar Energy. 2019; 178:114-24.
32 Garg V, Sengar BS, Awasthi V, Kumar A, Pandey SK, Kumar S, et al. Investigation of valence electron excitation and plasmonic enhancement in sputter grown NMZO thin films: For energy harvesting applications. Optical Materials. 2019; 88:372-7.
33 Garg V, Mukherjee S. Plasmons for efficient light harvesting in ultrathin solar cells. Discipline of Electrical Engineering, IIT Indore. 2019.
34 Sengar BS, Garg V, Kumar A, Kumar S, Mukherjee S. Surface layer investigation of dual ion beam sputtered Cu2ZnSn (S, Se) 4 thin film for open circuit voltage improvement. Journal of Physics D: Applied Physics. 2018.
35 Sengar BS, Garg V, Kumar A, Awasthi V, Kumar S, Atuchin VV, et al. Band alignment of Cd-free (Zn, Mg)O layer with Cu2ZnSn(S,Se)4 and its effect on the photovoltaic properties. Optical Materials. 2018; 84:748-56.
36 Garg V, Sengar BS, Sharma P, Kumar A, Aaryashree, Kumar S, et al. Sputter-instigated plasmon-enhanced optical backscattering layer in ultrathin solar cells: Application of GZO in CIGSe material system. Solar Energy. 2018; 174:35-44.
37 Garg V, Sengar BS, Mukherjee S. A Review on Sputtered Chalcopyrite and Kesterite Thin Film Solar Cell. In: Hashemi J, editor. Reference Module in Materials Science and Materials Engineering: Oxford: Elsevier. 2018; p. 1-15.
38 Garg V, Sengar BS, Awasthi V, Kumar A, Singh R, Kumar S, et al. Investigation of dual-ion beam sputter-instigated plasmon generation in TCOs: A case study of GZO. ACS Applied Materials & Interfaces. 2018; 10(6):5464-74.
39 Sharma P, Aaryashree, Garg V, Mukherjee S. Optoelectronic properties of phosphorus doped p-type ZnO films grown by dual ion beam sputtering. Journal of Applied Physics. 2017; 121(22):225306.
40 Kumar A, Das M, Garg V, Sengar BS, Htay MT, Kumar S, et al. Forming-free high-endurance Al/ZnO/Al memristor fabricated by dual ion beam sputtering. Applied Physics Letters. 2017; 110(25):253509.
41 Awasthi V, Garg V, Sengar BS, Pandey SK, Aaryashree, Kumar S, et al. Impact of sputter-instigated plasmonic features in TCO films: for ultrathin photovoltaic applications. Applied Physics Letters. 2017; 110(10):103903.
42 Singh R, Sharma P, Khan MA, Garg V, Awasthi V, Kranti A, et al. Investigation of barrier inhomogeneities and interface state density in Au/MgZnO: Ga Schottky contact. Journal of Physics D: Applied Physics. 2016; 49(44):445303.
43 Sengar BS, Garg V, Awasthi V, Aaryashree, Kumar S, Mukherjee C, et al. Growth and characterization of dual ion beam sputtered Cu2ZnSn(S,Se)4 thin films for cost-effective photovoltaic application. Solar Energy. 2016; 139:1-12.
44 Garg V, Sengar BS, Awasthi V, Aaryashree, Sharma P, Mukherjee C, et al. Localized surface plasmon resonance on Au nanoparticles: tuning and exploitation for performance enhancement in ultrathin photovoltaics. RSC Advances. 2016; 6(31):26216-26.
45 Awasthi V, Pandey SK, Garg V, Sengar BS, Sharma P, Kumar S, et al. Plasmon generation in sputtered Ga-doped MgZnO thin films for solar cell applications. Journal of Applied Physics. 2016; 119(23):233101.
46 Sharma P, Singh R, Awasthi V, Pandey SK, Garg V, Mukherjee S. Detection of a high photoresponse at zero bias from a highly conducting ZnO: Ga based UV photodetector. RSC Advances. 2015; 5(104):85523-9.
47 Pandey SK, Awasthi V, Sengar BS, Garg V, Sharma P, Kumar S, et al. Band alignment and photon extraction studies of Na-doped MgZnO/Ga-doped ZnO heterojunction for light-emitter applications. Journal of Applied Physics. 2015; 118(16):165301.
(Dr. Bade Mukund Haribhau)(1-26)
1 MH Bade, SV Jangam, AS Mujumdar (2024). Superheated Steam Drying: Technology for Improved Sustainability and Quality, 1st Edition, 01-206. CRC Press. DOI: https://doi.org/10.1016/j.esd.2024.101494
2 Rahulkumar Painter, Ashish Doshi, Mukund Bade (2024). Investigations of specific modifications in pump as turbine towards performance improvement. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 46(1), 4777-94. Taylor & Francis. DOI: https://doi.org/10.1080/01430750.2024.2316778
3 Rahulkumar Painter, Ashish Doshi, Punit Singh, Mukund Bade (2024). Development of single point prediction model using artificial neural network and experimental validation for pump as turbine applications. International Journal of Ambient Energy, 45(1), 01-13. Taylor & Francis. DOI: 9781040147818, 104014781X
4Rahulkumar Painter, A Dhamija, Ashish Doshi, Mukund Bade (2024). A generalized prediction model for complete performance investigation of pump operated as turbine in microhydro applications using novel approach for improving sustainability. Energy for Sustainable Development, 81, 01-16. Elsevier. DOI
5Satish Dokiparti, Ashish Doshi, Mukund Haribhau Bade (2024). Centrifugal pump performance improvement using back cavity filling. Physics of Fluids, 36(6), 067129-1-22. AIP Publishing. DOI
6Gaji, Rahul; Doshi, Ashish; Bade, Mukund (2024). Investigating the impact of back cavity filling and axial clearance on the flow physics and performance of a pump as Turbine. Journal of Applied Fluid Mechanics, 17(4), 799-815.
7Patel, Sanjay Kumar; Gupta, Aditya Kumar; Bade, Mukund H (2022). Primary energy and exergy analysis of a spray dryer for the application of industrial effluents: a case study. Brazilian Journal of Chemical Engineering, 39(1), 251-272. Springer International Publishing.
8Patel, Nikunjkumar; Parikh, Munjal; Basu, Surajit; Bade, Mukund (2022). Investigations on energy assessment, conservation potential, and recovery opportunities for stenter machines based on the field trial. Energy Sources, Part A, 44(1), 685-699. Taylor & Francis.
9Anghan, Chetankumar; Bade, Mukund H; Banerjee, Jyotirmay (2022). A review on fundamental properties of the jet in the wave environment. Ocean Engineering, 250. Pergamon.
10Anghan, Chetankumar; Bade, Mukund H; Banerjee, Jyotirmay (2022). Direct numerical simulation of turbulent round jet released in regular waves. Applied Ocean Research, 125, 1E+05. Elsevier.
11Rahul Gaji, Ashish Doshi, Mukund Bade, Punit Singh (2023). Influence of impeller blade rounding and surface roughness on the internal hydraulics and performance of pump as turbine. Archive of Mechanical Engineering, 70(2), 219-245. Polish Academy of Sciences. DOI
12Kanani, Kirtan; Gupta, Aditya Kumar; Patel, Sanjay Kumar; Bade, Mukund Haribhau (2022). Exploration of climate zones based on hierarchal clustering algorithm for buildings in India. Journal of Building Pathology and Rehabilitation, 7(1), 45992. Springer International Publishing.
13Anghan, Chetankumar; Bade, Mukund Haribhau; Banerjee, Jyotirmay (2022). Influence of wave height on round jet in regular waves: Direct Numerical Simulations. Physics of Fluids, AIP Publishing LLC.
14Anghan, Chetankumar; Bade, Mukund H; Banerjee, Jyotirmay (2021). A modified switching technique for advection and capturing of surfaces. Applied Mathematical Modelling, 92, 349-379. Elsevier.
15Patel, Nikunjkumar G; Shendage, Dadasaheb J; Parikh, Munjal G; Basu, Surajit K; Bade, Mukund H (2021). Energy model-based benchmarking of the drying process in the stenter machine. Drying Technology, 39(8), 1114-1133. Taylor & Francis.
16Arote, Ashish; Bade, Mukund; Banerjee, Jyotirmay (2021). Behavior of synchronous and asynchronous spatially oscillating planar liquid jets in tandem. Physics of Fluids, 33(5), 52102. AIP Publishing LLC.
17Patel, Sanjay Kumar; Bade, Mukund Haribhau (2021). Parametric analysis of industrial spray dryer for performance enhancement applicable in effluent management. Drying Technology, 45292. Taylor & Francis.
18Patel, Sanjay Kumar; Bade, Mukund Haribhau (2020). Energy targeting and process integration of spray dryer with heat recovery systems. Energy Conversion and Management, 221. Pergamon.
19Arote, Ashish; Bade, Mukund; Banerjee, Jyotirmay (2020). An improved compressive volume of fluid scheme for capturing sharp interfaces using hybridization. Numerical Heat Transfer, Part B, 79(1), 29-53. Taylor & Francis.
20Arote, Ashish; Bade, Mukund; Banerjee, Jyotirmay (2020). On coherent structures of spatially oscillating planar liquid jet developing in a quiescent atmosphere. Physics of Fluids, 32(8), 82111. AIP Publishing LLC.
21Patel, Sanjay Kumar; Bade, Mukund Haribhau (2020). Superheated steam drying and its applicability for various types of the dryer: The state of art. Drying Technology, 39(3), 284-305. Taylor & Francis.
22Patel, Sanjay Kumar; Bade, Mukund Haribhau (2019). Energy analysis and heat recovery opportunities in spray dryers applied for effluent management. Energy Conversion and Management, 186, 597-609. Pergamon.
23Arote, Ashish; Bade, Mukund; Banerjee, Jyotirmay (2019). Numerical investigations on stability of the spatially oscillating planar two-phase liquid jet in a quiescent atmosphere. Physics of Fluids, 31(11), 1E+05. AIP Publishing LLC.
24Bade, Mukund H; Bandyopadhyay, Santanu (2015). Analysis of gas turbine integrated cogeneration plant: Process integration approach. Applied Thermal Engineering, 78, 118-128. Pergamon.
25Bade, Mukund H; Bandyopadhyay, Santanu (2014). Thermal integration of heat transfer fluid systems. Asia-Pacific Journal of Chemical Engineering, 9(1), 42005.
26Bade, Mukund H; Bandyopadhyay, Santanu (2014). Minimization of thermal oil flow rate for indirect integration of multiple plants. Industrial & Engineering Chemistry Research, 53(33), 13146-13156. American Chemical Society.