Publications of Paolo Giusto
All genres
Journal Article (30)
21.
Journal Article
8 (8), nwaa231 (2021)
Light-driven directional ion transport for enhanced osmotic energy harvesting. National Science Review 22.
Journal Article
3, 684788 (2021)
Visible-light-driven photocatalytic water disinfection toward escherichia coli by nanowired g-C3N4 film. Frontiers in Nanotechnology 23.
Journal Article
142 (49), pp. 20883 - 20891 (2020)
Boron carbon nitride thin films: from disordered to ordered conjugated ternary materials. Journal of the American Chemical Society 24.
Journal Article
32 (10), 1908140 (2020)
Shine bright like a diamond: new light on an old polymeric semiconductor. Advanced Materials 25.
Journal Article
32 (17), pp. 7284 - 7291 (2020)
Let a hundred polymers bloom: tunable wetting of photografted polymer-carbon nitride surfaces. Chemistry of Materials 26.
Journal Article
11 (18), pp. 8978 - 8983 (2019)
All-polymer methylammonium lead iodide perovskite microcavities. Nanoscale 27.
Journal Article
3 (7), pp. 7517 - 7522 (2018)
Colorimetric detection of perfluorinated compounds by all-polymer photonic transducers. ACS Omega 28.
Journal Article
5 (3), pp. 867 - 874 (2018)
Engineering the emission of broadband 2D perovskites by polymer distributed bragg reflectors. ACS Photonics 29.
Journal Article
57 (32), pp. 10123 - 10126 (2018)
Nanofluidic ions transport and energy conversion through ultrathin free-standing polymeric carbon nitride membranes. Angewandte Chemie International Edition 30.
Journal Article
8 (46), pp. 31941 - 31950 (2016)
Label-free vapor selectivity in poly(p-phenylene oxide) photonic crystal sensors. ACS Applied Materials and Interfaces Book Chapter (1)
31.
Book Chapter
Chapter 12. Carbon nitride thin films as a high refractive index optical material. In: Carbon nitrides: structure, properties and applications in science and technology, pp. 321 - 344 (Eds. Savateev, O.; Antonietti, M.; Wang, X.). De Gruyter, Berlin, Boston (2023)
Thesis - PhD (1)
32.
Thesis - PhD
Chemical vapor deposition of carbon-based thin films. Dissertation, 165 pp., Universität, Potsdam (2020)