Zobrazeno 1 - 10
of 18
pro vyhledávání: '"Balamuralitharan, Balakrishnan"'
Publikováno v:
Mechanics of Advanced Materials and Structures. 29:2942-2961
In the present work, vibroacoustic (VA) characteristics, namely sound transmission loss (STL), overall sound pressure levels (OASPLs) of aircraft panels made up of aluminum, composites and fiber me...
Autor:
Venkata Thulasivarma Chebrolu, Balamuralitharan Balakrishnan, Hee-Je Kim, In-Ho Cho, Jin-Soo Bak
Publikováno v:
Dalton Transactions. 49:14432-14444
The integration of metal oxide composite nanostructures has attracted great attention in supercapacitor (SC) applications. Herein, we fabricated a series of metal oxide composite nanostructures, including ZnO nanowires, NiO nanosheets, ZnO/CuO nanowi
Autor:
Selvaraj Aravindha Raja, Venkata Thulasivarma Chebrolu, Hee-Je Kim, Balamuralitharan Balakrishnan
Publikováno v:
Dalton Transactions. 49:9762-9772
Recently, reagent-based electrode materials (urea, ammonium fluoride, hexamethylenetetramine, l-cysteine, acetic acid, and triethylamine) have received great attention in numerous applications (e.g., solar cells, fuels cells, and battery-type hybrid
Publikováno v:
Journal of Industrial and Engineering Chemistry. 81:294-302
Here, we report a simple strategy to grow NiSe architectures vertically on nickel foam (NF) via facile solution-based deposition. The as-synthesized NSE7h core-shell nanoplate structure with a mass loading of 6.4 mg/cm−2 can be delivered a high spe
Autor:
Selvaraj Aravindha Raja, In-Ho Cho, Balamuralitharan Balakrishnan, Venkata Thulasivarma Chebrolu, Jin-Soo Bak, Hee-Je Kim
Publikováno v:
New Journal of Chemistry. 44:7690-7697
Transition metal phosphides (TMPs) have received considerable attention for various applications, including the water splitting reaction (hydrogen evolution reaction and oxygen evolution reaction), methanol oxidation, the oxygen reduction reaction (O
Autor:
Venkata Thulasivarma Chebrolu, Hee-Je Kim, Balamuralitharan Balakrishnan, Aravindha Raja Selvaraj
Publikováno v:
Sustainable Energy & Fuels. 4:4848-4858
New atom substitution in transition metals is a promising strategy for improving the performance of supercapacitors (SCs). Herein, we developed a cobalt sulfide core–shell nanostructure composed of nanoflakes and nanoparticles on a nickel foam subs
Autor:
Aravindha Raja Selvaraj, Vivekanandan Raman, Vinodh Rajangam, N. Vijay Mohan, Balamuralitharan Balakrishnan, Hee-Je Kim, Rajendiran Rajmohan
Publikováno v:
Ionics. 26:345-354
Mushroom carbon based composite electrode with NiCo2O4 (m-C/NiCo2O4) nanorod arrays (NRAs), which improves the pseudocapacitive properties by effectively amplifying the electrochemical performance of supercapacitor. Carbon or graphene-based nanorod t
Autor:
Hee-Je Kim, Ann Mari Svensson, Kaushik Jayasayee, Balamuralitharan Balakrishnan, Manab Kundu, Suresh Kannan Balasingam
Publikováno v:
Materials Letters. 247:163-166
In this work, hematite microdisks (500 nm to 1 μm in diameter, ∼200 nm in thickness) have been synthesized by a facile hydrothermal method which exhibited good cycling stability at a current density of 200 mA g−1 and 1000 mA g−1, and excellent
Autor:
Hee-Je Kim, Jin Soo Bak, In-Ho Cho, Balamuralitharan Balakrishnan, Prabakar Kandasamy, Karthick Sivalingam Nallathambi, Manab Kundu, Yongseok Jun, Ananthakumar Ramadoss, Suresh Kannan Balasingam
Publikováno v:
Journal of Industrial and Engineering Chemistry. 71:191-200
Iron pyrite (FeS2) is an interesting mineral in the transition metal dichalcogenide group due to its high abundance in the earth’s crust which can be used for various electrochemical energy storage applications, such as batteries and supercapacitor
Autor:
Balamuralitharan Balakrishnan, In-Ho Cho, Jin-Soo Bak, Hee-Je Kim, Venkata Thulasivarma Chebrolu
Publikováno v:
Dalton Transactions. 48:8254-8263
Herein, we report a simple and cost-effective route for the fabrication of NiWO4, NiWO4P, and NiWO4Se nanostructures using the chemical bath deposition method. As a binder-free electrode material for pseudo capacitors (PCs), the fabricated nickel foa