Publications from 2025

  1. Tholen, P., Weishaupt, A.-K., Schmitt, F.-J., Müller, T., Fabrizi, J., Nguyen, T.V.M., Keil, C., Maares, M., Schomburg, L., Haase, H., Zorlu, Y., Beckmann, J., Bornhorst, J. and Yücesan, G. (2025)
    Monitoring copper ions in Caenorhabditis elegans using porphyrin phosphonic acids’, Communications Materials, 6(1), Article 228.
  2. Mohsin, G.F., Hornemann, A.I. and Schmitt, F.-J. (2025)
    Fructosylglycine assembles into melanoidin with more glycine than glucose while heating’, European Food Research and Technology, pp. 1–14.
  3. Rieder, F., Schnelle, K.O.D., Laufer, J. and Schmitt, F.-J. (2025)
    Fluorescence lifetime tomography’, European Conference on Biomedical Optics, p. W3A.24.
  4. Schmitt, F.-J., Mehmood, A.S., Phan, H.T., Tüting, C., Rieder, F., Henneberger, A.-S., Golmohamadi, F.G., Kastritis, P.L. and Laufer, J. (2025)
    The fluorescence yield of red pH-sensitive proteins is mainly determined by stability and internal water contact of the chromophore’, European Conference on Biomedical Optics, p. W3A.12.
  5. Schmitt, F.-J., Katz, S., Phan, H.T., Rieder, F., Laufer, J. and Hildebrandt, P. (2025)
    High fluorescence of phytochromes does not require chromophore protonation’, European Conference on Biomedical Optics, p. W3A.11.
  6. Golmohamadi, F.G., Mehmood, A., Phan, H.T., Schmitt, F.-J. and Laufer, J. (2025)
    Probing the photophysical properties of fluorescent proteins using photoacoustic pump–probe spectroscopy and imaging’, Photoacoustics, 44, Article 100738.