Browsing by Author "Banerjee, Prasun"
Now showing items 1-4 of 4
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Insights into the influence of Pd loading on CeO2 catalysts for CO2 hydrogenation to methanol
Pothu, Ramyakrishna; Mitta, Harisekhar; Banerjee, Prasun; Boddula, Rajender; K. Srivastava, Rajesh; K. Kalambate, Pramod; Naik, Ramachandra; Bahgat Radwan, Ahmed; Al-Qahtani, Noora... more authors ... less authors ( Elsevier , 2023 , Article)One of the most significant industrial processes is the catalytic methanol synthesis from carbon dioxide because methanol is a future energy carrier for producing fuels and high-value-added commodities, the so-called ... -
Progressive Review of Functional Nanomaterials-Based Polymer Nanocomposites for Efficient EMI Shielding
Kallambadi Sadashivappa, Prashanth; Venkatachalam, Revathi; Pothu, Ramyakrishna; Boddula, Rajender; Banerjee, Prasun; Naik, Ramachandra; Radwan, Ahmed Bahgat; Al-Qahtani, Noora... more authors ... less authors ( MDPI , 2023 , Article Review)Nanomaterials have assumed an imperative part in the advancement of human evolution and are more intertwined in our thinking and application. Contrary to the conventional micron-filled composites, the unique nanofillers ... -
Role of the intercalated ions on the high capacitance behavior of Ti 3 C 2 Tx MXene nanohybrids
Koneru, Bhargavi; Swapnalin, Jhilmil; Pothu, Ramyakrishna; Banerjee, Prasun; Boddula, Rajender; Radwan, Ahmed Bahgat; Al-Qahtani, Noora... more authors ... less authors ( Taylor and Francis Ltd. , 2023 , Article)Ti3C2Tx (MXene) is prone to surface oxidation because of the presence of oxygen surface terminals in its surfaces. In this work, the effect of oxygen surface terminals has been reduced by replacing it with other surface ... -
Surface modification of Ti3C2Tx using terminal groups and heteroatoms with excellent electrochemical performance in supercapacitors
Swapnalin, Jhilmil; Koneru, Bhargavi; Pothu, Ramyakrishna; Banerjee, Prasun; Boddula, Rajender; Radwan, Ahmed Bahgat; Al-Qahtani, Noora... more authors ... less authors (2023 , Article)Surface modification of Ti3C2Tx greatly enhances its charge storage mechanism as an electrode material. Herein, we demonstrate the role of surface terminals and heteroatoms in the electrochemical behavior of Ti3C2Tx ...




