• Centre of Printable Electronics
  • cope@um.edu.my
  • 03-79672326
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(2023)

1. Md Rezali, F. A., Aidit, S. N., NOUXMAN, M. H. A. H., Wan Muhamad Hatta, S. F., & Soin, N. (2023). Development of Rapid Dispense-Printed Flexible Interdigitated Electrode Modified with rGO-TiO2 Nanohybrid for Glucose Detection. Journal of The Electrochemical Society.

DOI 10.1149/1945-7111/ace8c1

 

2. Azri, A. K., Jasni, M. M., Hatta, S. W. M., Islam, M. A., Wahab, Y. A., Mekhilef, S., & Ker, P. J. (2023). Advancement in thermophotovoltaic technology and nanoparticle incorporation for power generation. Solar Energy, 259, 279-297.

 

3. Aidit, S. N., Rezali, F. A. M., Nor, N. H. M., Yusoff, N., Ma, L. Y., Hatta, S. F. W. M., & Soin, N. (2023). Hydrothermal synthesis of zinc oxide/PEDOT: PSS composite for flexible temperature sensor application. Flexible and Printed Electronics, 8(2), 025008.

 

4. Ma, L. Y., Soin, N., Aidit, S. N., Rezali, F. A. M., & Hatta, S. F. W. M. (2023). Recent advances in flexible solution-processed thin-film transistors for wearable electronics. Materials Science in Semiconductor Processing, 165, 107658.

 

5. Wong, G. W., & Soin, N. (2023). Improved Q-Factor 3D Double-Layered On-Chip Resistor with Shielded Ground Conductor. IETE Journal of Research, 1-12.

 

6. Yusof, N., Norzeli, S. M., Yusof, S. N. A., Yunus, N. H. M., & Soin, N. (2023). Modeling and Simulation of Planar Micro-coils for Invasive Pressure Sensing. In Advancements in Materials Science and Technology Led by Women (pp. 165-172). Cham: Springer Nature Switzerland. 

 

(2022)

1. Goh, W. Z., Fong, B., Hussin, H., & Hatta, S. W. M. (2022). Study of Scaling Limits of Multi-Gate Fets (Finfet) With High-K Dielectric. AIJR Proceedings, 123-129.

 

2. Ahmed, S. M., Soin, N., Wan, S. F., Hatta, M., & Wahab, Y. A. (2022, August). Ultra-Sensitive Flexible Piezoresistive Strain Sensor Simulation using Carbon Nanotube Composite. In 2022 IEEE International Conference on Semiconductor Electronics (ICSE) (pp. 25-28). IEEE.

 

3. Rezali, F. A. M., Hatta, S. F. W. M., & Soin, N. (2022, August). Modelling of Thin-film Transistor for Glucose Sensing Application. In 2022 IEEE International Conference on Semiconductor Electronics (ICSE) (pp. 21-25). IEEE.

 

4. Rezali, F. A. M., Soin, N., Hatta, S. F. W. M., Daut, M. H. M., Nouxman, M. H. A. H., & Hussin, H. (2022). Design strategies and prospects in developing wearable glucose monitoring system using printable organic transistor and microneedle: A review. IEEE Sensors Journal.

 

5. Jasni, M. M., Choong, J. S., Abd Rashid, W. W., Wahab, Y. A., & Hatta, S. W. M. (2021). Performance analysis of indium antimonide thermophotovoltaic system with varied material and geometrical properties. Microelectronics Reliability, 126, 114325.

 

6. Ma, L. Y., & Soin, N. (2022). Recent progress in printed physical sensing electronics for wearable health-monitoring devices: A review. IEEE Sensors Journal, 22(5), 3844-3859

 

(2021)

 

1. Zulfikar, Z., Soin, N., Wan Muhamad Hatta, S. F., Abu Talip, M. S., & Jaafar, A. (2021). Routing density analysis of area-efficient ring oscillator physically unclonable functions. Applied Sciences, 11(20), 9730.

 

2. Zulfikar, Z., Soin, N., Wan Muhamad Hatta, S. F., & Abu Talip, M. S. (2021). Runtime analysis of area-efficient uniform RO-PUF for uniqueness and reliability balancing. Electronics, 10(20), 2504.

 

3. Ye, T. C., Hatta, S. W. M., Soin, N., & Sajak, A. A. B. (2021, August). Modeling and optimization of ISFET microsensor for the use of quality testing in food and pharmaceutical industry. In 2021 IEEE Regional Symposium on Micro and Nanoelectronics (RSM) (pp. 120-123). IEEE.

 

4. Hussin, H., Soin, N., Hatta, S. F. W. M., Rezali, F. A. M., & Wahab, Y. A. (2021). Recent progress in the diversity of inkjet-printed flexible sensor structures in biomedical engineering applications. Journal of The Electrochemical Society, 168(7), 077508.

 

5. Jaafar, A., Soin, N., Wan Muhamad Hatta, S. F., Salim, S. I., & Zakaria, Z. (2021). Multipoint detection technique with the best clock signal closed-loop feedback to prolong FPGA performance. Applied Sciences, 11(14), 6417.

Last Update: 07/05/2025