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Optimizing (1-x) BiFeO3-xCaTiO3 Perovskites: A Pathway to Efficient Flexible Energy Storage (2025)
Journal Article
Paul, F., Shareef, S., Barimah, E. K., Beg, M., Goh, K., Jose, G., Lu, Z., & Manjakkal, L. (online). Optimizing (1-x) BiFeO3-xCaTiO3 Perovskites: A Pathway to Efficient Flexible Energy Storage. Advanced functional materials, Article e07692. https://doi.org/10.1002/adfm.202507692

New advanced functional material manufacturing and electrode design are the keys to developing the next generation of smart energy storage devices. This study explores the electrochemical performances of (1-x) BiFeO3-xCaTiO3 (x = 0.4, 0.5, 0.6) (BFO-... Read More about Optimizing (1-x) BiFeO3-xCaTiO3 Perovskites: A Pathway to Efficient Flexible Energy Storage.

Design of Dual-Polarised Multi-Pixel Patch Antennas for Simultaneous Wireless Information and Power Transfer in IoT Sensor Networks (2025)
Presentation / Conference Contribution
Odiamenhi, M., Basherlou, H. J., See, C. H., Goh, K., Yu, H., Parchin, N. O., Amar, A. I., & Mahmoud, A. (2025, July). Design of Dual-Polarised Multi-Pixel Patch Antennas for Simultaneous Wireless Information and Power Transfer in IoT Sensor Networks. Presented at International Telecommunications Conference (ITC-Egypt 2025), Cairo, Egypt

Dual-Band Rectenna for Simultaneous Wireless Information and Power Transfer in IoT Nodes (2025)
Presentation / Conference Contribution
Odiamenhi, M., Jahanbakhsh Basherlou, H., See, C. H., Goh, K., Yu, H., O. Parchin, N., Amar, A. I., & Mahmoud, A. (2025, July). Dual-Band Rectenna for Simultaneous Wireless Information and Power Transfer in IoT Nodes. Presented at International Telecommunications Conference (ITC-Egypt 2025), Cairo, Egypt

From Design to Deployment: A Comprehensive Review of Theoretical and Experimental Studies of Multi-Energy Systems for Residential Applications (2025)
Journal Article
Khan, T. A., Kahwash, F., Ahmed, J., Goh, K., & Papadopoulos, S. (2025). From Design to Deployment: A Comprehensive Review of Theoretical and Experimental Studies of Multi-Energy Systems for Residential Applications. Electronics, 14(11), Article 2221. https://doi.org/10.3390/electronics14112221

Multi-energy systems (MESs) use more than one energy vector to fulfil users' electrical, thermal, and cooling demands. This paper examines the recent developments in the design, optimisation, and implementation of MESs, focusing on residential applic... Read More about From Design to Deployment: A Comprehensive Review of Theoretical and Experimental Studies of Multi-Energy Systems for Residential Applications.

Compact Dual-Band Circularly Polarized Rectenna for SWIPT in Low-Power IoT and WSNs (2025)
Presentation / Conference Contribution
Odiamenhi, M., Basherlou, H. J., See, C. H., O. Parchin, N., Yu, H., & Goh, K. (2025, March). Compact Dual-Band Circularly Polarized Rectenna for SWIPT in Low-Power IoT and WSNs. Presented at URSI UK Symposium 2025, Durham University, UK

Energy-constrained Internet of Things (IoT) and wireless sensor networks (WSNs) require sustainable power solutions to minimise battery maintenance and ensure continuous operation. Simultaneous wireless information and power transfer (SWIPT) enables... Read More about Compact Dual-Band Circularly Polarized Rectenna for SWIPT in Low-Power IoT and WSNs.

U-Shape Lossy Mode Resonance Optical Fiber Sensor for Temperature Detection of Lithium-Ion Batteries (2024)
Presentation / Conference Contribution
Alcock, K. M., Goh, K., Beg, M., Melendi-Espina, S., & Hernaez, M. (2024, September). U-Shape Lossy Mode Resonance Optical Fiber Sensor for Temperature Detection of Lithium-Ion Batteries. Poster presented at 2024 Frontiers in Optics + Laser Science meeting, Denver, Colorado , USA

This study develops a Polyethylenimine/Graphene Oxide thin film-based Lossy Mode Resonance U-shaped optical fiber sensor for lithium-ion battery temperature measurement. The study encourages further development of this device further as it compares w... Read More about U-Shape Lossy Mode Resonance Optical Fiber Sensor for Temperature Detection of Lithium-Ion Batteries.

Optimal DC link voltage stabilisation technique for a grid-connected PV system (2024)
Presentation / Conference Contribution
Khan, T., Kahwash, F., Ahmed, J., & Goh, K. (2024, September). Optimal DC link voltage stabilisation technique for a grid-connected PV system. Paper presented at ECCE Europe 2024, Darmstadt, Germany

The utilisation of renewable energy (RES) powered microgrids has seen significant growth due to environmental concerns. These RES resources are often integrated with the grid through a DC link. Maintaining the DC link voltage at a specified level is... Read More about Optimal DC link voltage stabilisation technique for a grid-connected PV system.

Advancements and Challenges in Antenna Design and Rectifying Circuits for Radio Frequency Energy Harvesting (2024)
Journal Article
Odiamenhi, M., Jahanbakhsh Basherlou, H., Hwang See, C., Ojaroudi Parchin, N., Goh, K., & Yu, H. (2024). Advancements and Challenges in Antenna Design and Rectifying Circuits for Radio Frequency Energy Harvesting. Sensors, 24(21), Article 6804. https://doi.org/10.3390/s24216804

The proliferation of smart devices increases the demand for energy-efficient, battery-free technologies essential for sustaining IoT devices in Industry 4.0 and 5G networks, which require zero maintenance and sustainable operation. Integrating radio... Read More about Advancements and Challenges in Antenna Design and Rectifying Circuits for Radio Frequency Energy Harvesting.

Power Consumption Analysis For Smarter Robotics Via Industry 4.0 Methods And Technologies RS HYu V2 (2024)
Presentation / Conference Contribution
Samson, R., Goh, K., Sankarraj, A., Gkanatsios, A., & Yu, H. (2023, September). Power Consumption Analysis For Smarter Robotics Via Industry 4.0 Methods And Technologies RS HYu V2. Presented at 2023 International Conference on Innovation of Communication and Information Technology (ICIEICT 2023), Madrid, Spain

This paper examines the opportunities to apply industry 4.0 technology to practical applications, with a specific focus on sustainability and resource efficiency in industrial environments. The main objective of this paper is to design and implement... Read More about Power Consumption Analysis For Smarter Robotics Via Industry 4.0 Methods And Technologies RS HYu V2.