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Results: 245
Number of items: 245
  • Hsu, C. C., Brouwer, F., Bonn, D., Peng, L., & Weber, B. (2023, February 25). DataFiles:Molecular Probing of the Stress Activation Volume in Vapor Phase Lubricated Friction [Data set]. Universiteit van Amsterdam. https://doi.org/10.21942/uva.21884220.v2
  • Hsu, C. C., Rückel, M., Bonn, D., & Brouwer, A. M. (2023, October 3). Datafile: Super-resolution Fluorescence Imaging of Recycled Polymer Blends via Hydrogen Bond Assisted Adsorption of a Nile Red Derivative [Data set]. Universiteit van Amsterdam. https://doi.org/10.21942/uva.23580459.v2
  • Open Access
    Sadegh, N., Evrard, Q., Mahne, N., Giglia, A., Nannarone, S., & Brouwer, A. M. (2023). Electron Generation in Tin-oxo Cage Extreme Ultraviolet Photoresists. Journal of Photopolymer Science and Technology, 36(5), 373-378. https://doi.org/10.2494/photopolymer.36.373
  • Open Access
    Evrard, Q., Sadegh, N., Hsu, C. C., Mahne, N., Giglia, A., Nannarone, S., Ekinci, Y., Vockenhuber, M., Nishimura, A., Goya, T., Sugioka, T., & Brouwer, A. M. (2023). Influence of the anion in tin-based EUV photoresists properties. In D. Guerrero, & G. R. Amblard (Eds.), Advances in Patterning Materials and Processes XL: 27 February-1 March 2023, San Jose, California, United States Article 124980Z (Proceedings of SPIE; Vol. 12498). SPIE. https://doi.org/10.1117/12.2658498
  • Open Access
    Sadegh, N. (2023). Spectroscopic investigations of photon-induced reactions in tin-oxo cage photoresists. [Thesis, fully internal, Universiteit van Amsterdam].
  • Open Access
    Hsu, C. C., Peng, L., Hsia, F. C., Weber, B., Bonn, D., & Brouwer, A. M. (2023). Molecular Probing of the Stress Activation Volume in Vapor Phase Lubricated Friction. ACS Applied Materials and Interfaces, 15(9), 12603-12608. https://doi.org/10.1021/acsami.3c00789
  • Open Access
    Hsu, C.-C., Rückel, M., Bonn, D., & Brouwer, A. M. (2023). Super-resolution Fluorescence Imaging of Recycled Polymer Blends via Hydrogen Bond-Assisted Adsorption of a Nile Red Derivative. Langmuir, 39(41), 14652-14659. https://doi.org/10.1021/acs.langmuir.3c01976
  • Open Access
    Bouwens, T., Bakker, T. M. A., Zhu, K., Hasenack, J., Dieperink, M., Brouwer, A. M., Huijser, A., Mathew, S., & Reek, J. N. H. (2023). Using supramolecular machinery to engineer directional charge propagation in photoelectrochemical devices. Nature Chemistry, 15(2), 213-221. https://doi.org/10.1038/s41557-022-01068-y
  • Reisner, E., Klein, D. M., Rodríguez-Jiménez, S., Hoefnagel, M. E., Prabhakaran, A., Pannwitz, A., Bonnet, S., Siegler, M. A., Brouwer, A. M., & Keyes, T. E. (2022). CCDC 2062217: Experimental Crystal Structure Determination [Data set]. The Cambridge Structural Database. https://doi.org/10.5517/ccdc.csd.cc276x4j
  • Bouwens, T., Bakker, T., Hasenack, J., Dieperink, M., Brouwer, F., Huijser, A., Mathew, S., & Reek, J. N. H. (2022). Using supramolecular machinery to engineer directional charge propagation in photoelectrochemical devices [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.20508852.v1
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