Instytut Podstawowych Problemów Techniki
Polskiej Akademii Nauk

Partnerzy

Dadaso D. Mohite


Ostatnie publikacje
1.  Lokhande P. E., Mohite D. D., Vedpathak A., Kumar D., Aepuru R., Rednam U., Al-Asbahi B. A., Microwave assisted Gd(OH)3–MXene nanocomposites for high power density solid state supercapacitor applications, Chemical communications, ISSN: 1359-7345, DOI: 10.1039/d6cc02461k, Vol.62, No.52, pp.13146-13149, 2026

Streszczenie:
A gadolinium hydroxide–MXene nanocomposite was synthesized through a microwave-assisted route as a supercapacitor electrode material. The prepared electrode material demonstrated a specific capacity of 128 mAh g−1, along with 98% capacitance retention after 5000 cycles. An solid-state hybrid supercapacitor (Gd–MX//AC) delivered an energy density of 25.8 Wh kg−1 and a high power density of 3000 W kg−1, while maintaining outstanding capacitance retention over repeated cycles.

Afiliacje autorów:
Lokhande P. E. - IPPT PAN
Mohite D. D. - inna afiliacja
Vedpathak A. - inna afiliacja
Kumar D. - inna afiliacja
Aepuru R. - inna afiliacja
Rednam U. - inna afiliacja
Al-Asbahi B. A. - inna afiliacja
200p.
2.  Lokhande P. E., Ballal R. S., Mohite D., Kadam V., Khasim S., Almasoudi A., Aepuru R., Rednam U., Facile microwave-assisted synthesis of Ce(OH)3-rGO nanocomposites for high-performance supercapacitor applications, Journal of Rare Earths, ISSN: 1002-0721, DOI: 10.1016/j.jre.2026.07.017, pp.1-30, 2026

Streszczenie:
The rising demand for durable, high-power energy storage devices has driven the advancement of innovative electrode materials for modern supercapacitors. In this regard, microwave-assisted synthesis has emerged as a fast and energy-saving approach for producing nanocomposites with superior electrochemical features. In this work, Ce(OH)3-x wt%rGO (x = 5, 10, and 15) nanocomposites were prepared through a simple microwave-assisted route to enhance electrochemical efficiency in supercapacitor systems. Structural and morphological characterizations using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and Brunauer-Emmett-Teller (BET) analysis confirm the effective incorporation of Ce(OH)3 with reduced graphene oxide (rGO) sheets, resulting in improved crystallinity, abundant defect sites, and larger surface area. Electrochemical testing in a three-electrode setup shows that the optimized CeG-10 electrode delivers a specific capacitance of 1229 F/g at 1 A/g, with strong rate capability and minimal internal resistance. Long-term cycling experiments demonstrate 92% capacitance retention after 10000 charge–discharge cycles, confirming excellent structural and electrochemical durability. Moreover, the fabricated supercapacitor device achieves an energy density of 49.46 Wh/kg at a power density of 1400 W/kg. These findings emphasize the promising potential of microwave-assisted Ce(OH)3-rGO nanocomposites as efficient electrode materials for next-generation energy storage technologies.

Afiliacje autorów:
Lokhande P. E. - IPPT PAN
Ballal R. S. - inna afiliacja
Mohite D. - inna afiliacja
Kadam V. - inna afiliacja
Khasim S. - inna afiliacja
Almasoudi A. - inna afiliacja
Aepuru R. - inna afiliacja
Rednam U. - inna afiliacja
70p.

Kategoria A Plus

IPPT PAN

logo ippt            ul. Pawińskiego 5B, 02-106 Warszawa
  +48 22 826 12 81 (centrala)
  +48 22 826 98 15
 

Znajdź nas

mapka
© Instytut Podstawowych Problemów Techniki Polskiej Akademii Nauk 2026