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Alisha Dhakal

University of Memphis

SCHOLARLY PAPERS

6

DOWNLOADS

299

TOTAL CITATIONS

1

Scholarly Papers (6)

1.

Lamno3-Mn3o4 Nanocomposite: Synergetic Effect Towards High Electrochemical Performance

Number of pages: 31 Posted: 02 Apr 2024
University of Memphis, University of Memphis, Union College and University of Memphis
Downloads 95 (725,554)
Citation 1

Abstract:

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LaMnO3, Mn3O4, composite, autocombustion, electrochemical characterizations, Pseudocapacitors

2.

Mn2o3–Co3o4 Nanocomposites as Advanced Electrode Materials: Achieving High Specific Capacitance and Excellent Cycling Stability

Number of pages: 21 Posted: 24 Jul 2025
Alisha Dhakal, Sanjay R. Mishra and Felio Perez
University of Memphis, University of Memphis and University of Memphis
Downloads 66 (951,658)

Abstract:

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Co3O4, electrochemical analysis, Supercapacitor, Hydrothermal synthesis.

3.

Electrochemical Assessment of Tailored Mn2o3 Cuboidal Hierarchical Particles Prepared Using Urea and Piperazine

Number of pages: 15 Posted: 22 Jun 2024
Alisha Dhakal, Felio Perez and Sanjay R. Mishra
University of Memphis, University of Memphis and University of Memphis
Downloads 45 (1,121,190)

Abstract:

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Mn2O3, Piperazine, Urea, electrochemical analysis, supercapacitor, hydrothermal synthesis

4.

Urea-Driven Hydrothermal Synthesis of Mn2o3: Electrochemical Performance Across Various Electrolytes for Supercapacitor Applications

Number of pages: 31 Posted: 23 Nov 2024
Alisha Dhakal, Sanjay R. Mishra and Felio Perez
University of Memphis, University of Memphis and University of Memphis
Downloads 41 (1,183,237)

Abstract:

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Mn2O3, XRD, hydrothermal, electrochemical characterizations in different electrolytes, Supercapacitor.

5.

Tuning LaMnO3-NiO Composites via Autocombustion: Structural and Electrochemical Insights

Number of pages: 24 Posted: 07 Jan 2026
Alisha Dhakal, Felio Perez and Sanjay R. Mishra
University of Memphis, University of Memphis and University of Memphis
Downloads 35 (1,304,549)

Abstract:

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LaMnO3/NiO composites, Electrochemical Analysis, autocombustion, energy storage, supercapacitors

6.

High-Capacitance V2O5 Nanoparticles Derived from Facile Ball Milling for Advanced Supercapacitors

Number of pages: 24 Posted: 10 Feb 2026
University of Memphis, University of Memphis, University of Memphis and University of Memphis
Downloads 17 (1,541,665)

Abstract:

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Electrochemical analysis, Ball milling, Energy Storage, Metal oxide, Supercapacitors