The effect of Copper-Aluminum Bimetallic Metal Organic Framework based electrode on the energy stored in a Supercapacitor
CSEF · 2023 Chemistry Honorable_mention Award
Overview
As the world seeks safe, sustainable sources of energy storage, supercapacitors are becoming a lucrative option, with their rapid charging capabilities and long lifespans. Their adoption can be facilitated by increasing their energy storage capabilities with porous electrode materials such as Metal Organic Frameworks (MOFs). To enhance catalytic and electronic properties, secondary metal ions are introduced in the construction of Bimetallic MOFs (BMOFs). This research aimed to synthesize a novel BMOF using Cu and Al, study its properties through SEM and XRD, and use the synthesized BMOF in the construction of activated-carbon (AC) based hybrid supercapacitors. Various quantities of Cu-Al BMOF (0.5 g, 1g, 1.5 g) were used with AC to form the cathode in the experimental groups while the control group contained only AC based cathodes. The research was conducted by subjecting supercapacitors to 10 second charge cycles at 1.2V and measuring the voltage change during intervals within 2 minute discharge cycles. Capacitance was derived from these voltage values and was used to determine the energy stored. Compared with the control group, the 1.5g BMOF stored 144% more energy, the 1g BMOF group stored 88% more energy and the 0.5g BMOF group stored 33% more energy. My hypothesis was supported as the 1.5g group exhibited the greatest energy storage. The new Cu-Al BMOF increased energy storage through increased porosity, surface area, and conductivity in the electrode. Further improvements include purifying the BMOF. Further research includes functionalizing the BMOF to enhance conductivity.
Source coverage
This record comes from a published award list, not a complete project archive. Its abstract comes from CSEF's public project showcase as archived by the Internet Archive before judging (https://web.archive.org/web/20230401224130/https://ca-csef.zfairs.com/showcase/ShowcaseInfo?f=838e60b7-ea75-46e8-865c-fde4864244b3); the version presented may differ.
Awards (1)
- Category Award: HM
Competition history
- CSEF 2023
Resources
Related projects
ISEF · 2023
The Effect of Copper-Aluminum Bimetallic Metal Organic Framework Based Electrode on the Energy Stored in a Supercapacitor
ISEF · 2016
Revolutionizing Energy Storage with Supercapacitors and Metal Organic Frameworks
ISEF · 2015
Optimization of Hybrid Capacitors: Role of Electrode Composition and Surface Area
JSHS · 2025
Development of next-generation supercapacitors through high-performance nanocomposite electrodes
ISEF · 2025
Design and Synthesis of a Novel MIL-101(Fe)/GQDs/PPy Nanocomposite for High-Performance Hybrid Energy Storage Applications
ISEF · 2022
Synthesis and Characterization of Doped Carbon Materials for Supercapacitor Applications
ISEF · 2018
Green Synthesis of Phosphorous, Nitrogen Co-Doped Carbon Materials from Renewable Resources for Supercapacitor Applications via Microwave Assisted Technique
CSEF · 2013
Design and Synthesis of Hydrogenated TiO2-Polyaniline Nanorods for Flexible High-Performance Supercapacitors
Closest projects by meaning, across every fair and year in the corpus.
Browse more like this
Source: California Science & Engineering Fair public projects