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Water-based scalable methods for self-cleaning antibacterial ZnO-nanostructured surfaces
Milionis, A., Tripathy, A., Donati, M., Sharma, C. S., Pan, F., Maniura-Weber, K., … Poulikakos, D. (2020). Water-based scalable methods for self-cleaning antibacterial ZnO-nanostructured surfaces. Industrial and Engineering Chemistry Research, 59(32), 14323-14333. https://doi.org/10.1021/acs.iecr.0c01998
A nanolayer coating on polydimethylsiloxane surfaces enables a mechanistic study of bacterial adhesion influenced by material surface physicochemistry
Pan, F., Altenried, S., Liu, M., Hegemann, D., Bülbül, E., Moeller, J., … Ren, Q. (2020). A nanolayer coating on polydimethylsiloxane surfaces enables a mechanistic study of bacterial adhesion influenced by material surface physicochemistry. Materials Horizons, 7(1), 93-103. https://doi.org/10.1039/C9MH01191A
Cobalt-citrate metal-organic-framework UTSA-16 on TiO<sub>2</sub> nanoparticles
Tseng, M. Y., Su, Y. H., Lai, Y. S., Pan, F., & Kung, P. Y. (2020). Cobalt-citrate metal-organic-framework UTSA-16 on TiO2 nanoparticles. In IOP conference series: materials science and engineering: Vol. 720. 4th international conference on optics in materials, energy, and technologies, 2019 (ICOMET-2019) 24-28 June 2019, Tainan, Taiwan (p. 012008). https://doi.org/10.1088/1757-899X/720/1/012008
Nanocellulose assisted preparation of ambient dried, large-scale and mechanically robust carbon nanotube foams for electromagnetic interference shielding
Zeng, Z., Wang, C., Wu, T., Han, D., Luković, M., Pan, F., … Nyström, G. (2020). Nanocellulose assisted preparation of ambient dried, large-scale and mechanically robust carbon nanotube foams for electromagnetic interference shielding. Journal of Materials Chemistry A, 8(35), 17969-17979. https://doi.org/10.1039/D0TA05961G
Energy-yielding mini heat thermocells with WS<sub>2</sub> water-splitting dual system to recycle wasted heat
Lai, Y. S., Del Rosario, M. A. J. V. G., Chen, W. F., Yen, S. C., Pan, F., Ren, Q., & Su, Y. H. (2019). Energy-yielding mini heat thermocells with WS2 water-splitting dual system to recycle wasted heat. ACS Applied Energy Materials, 2(10), 7092-7103. https://doi.org/10.1021/acsaem.9b01010