[1] S.P. Beeby, M.J. Tudor, N.M. White, Energy harvesting vibration sources for microsystems applications, Measurement Science and Technology 17(12) (2006) R175.
[2] T. Krupenkin and J. A. Taylor, Reverse electrowetting as a new approach to high-power energy harvesting, Nature Communications 2(1) (2011) 447–448.
[3] W. C. Han, D. S. Wang, L. P. Xiang, Y. D. Wang, Z. Q. Huang, and A. F. Li, A parametric study of microfluidic power generator based on reverse electrowetting in a microchannel geometry, Advance Materials Research 986–987 (2014) 1159–1162.
[4] F. Invernizzi, S. Dulio, M. Patrini, G. Guizzetti, and P. Mustarelli, Energy harvesting from human motion: materials and techniques, Chemical Society Reviews 45(20) (2016) 5455–5473.
[5] H. Yang, S. Hong, B. Koo, D. Lee, and Y.-B. Kim, "High-performance reverse electrowetting energy harvesting using atomic-layer-deposited dielectric film, Nano Energy 31 (2017) 450–455.
[6] T. H. Hsu, S. Manakasettharn, J. A. Taylor, and T. Krupenkin, Bubbler: A Novel Ultra-High Power Density Energy Harvesting Method Based on Reverse Electrowetting, Scientific Reports 5 (2015) 1–13.
[7] R. Rusev, G. Angelov, K. Angelov, and D. Nikolov, A model for reverse electrowetting with cost-effective materials, Proc. 26th International Scientific Conference Electronics (2017) 1–4.
[8] H. Yang, H. Lee, Y. Lim, M. Christy, and Y.-B. Kim, Laminated Structure of Al2O3 and TiO2 for Enhancing Performance of Reverse Electrowetting‑On‑Dielectric Energy Harvesting, International Journal of Precision Engineering and Manufacturing-Green Technology (2019).
[9] T.-H. Hsu, J. A. Taylor, and T. N. Krupenkin, Energy harvesting from aperiodic low-frequency motion using reverse electrowetting, Faraday Discussions 199 (2017) 377–392.
[10] D. Nikolov, R. Rusev, G. Angelov, M. Spasova, Energy Harvesting System Model Based on Reverse Electrowetting, 2019 MIXDES - 26th International Conference on Mixed Design of Integrated Circuits and Systems, IEEE, 2019, Rzeszów, Poland.
[11] H. Shi, Z. Liu, and X. Mei, Overview of Human Walking Induced Energy Harvesting Technologies and Its Possibility for Walking Robotics, Energy 13 (2020) 86.
[12] M. Sansebli, Y. Gorgich, A. Behzadmehr, and T. Fanaei Sheikholeslami, Fabrication and Characterization of an All-Polymer Nanogenerator using Effect of Reverse Electrowetting, Proc. 6th Annual Clean Energy Conference, 2018, Shiraz Iran (In Persian).
[13] Y. Y. Lin, R. D. Evans, E. Welch, B. N. Hsu, A. C. Madison, and R. B. Fair, Low voltage electrowetting-on-dielectric platform using multi-layer insulators, Sensors Actuators, B Chemical 150(1) (2010) 465–470.