Publications

2024

 

  1. I. Kopal, M. Švecová, V. Jeřábek, D. Palounek, T. Čapková, A. Michalcová, L. Lapčák, P. Matějka,  M. Dendisová,  Laser-Induced Reactions of 4-Aminobenzenthiol Species Adsorbed on Ag, Au, and Cu Plasmonic Structures Followed by SERS Spectroscopy. The Role of Substrate and Excitation Energy – Surface-Complex Photochemistry and Plasmonic Catalysis. ACS Omega 2024, 9 (5), 6005-6017. DOI: https://doi.org/10.1021/acsomega.4c00121

2022

 

  1. S. Lin, Y. He, D. Feng, M. Piliarik, X-W Chen, Optical Fingerprint of Flat Substrate Surface and Marker-Free Lateral Displacement Detection with Angstrom-Level Precision, Phys. Rev. Lett. 129 (2022), 213201, DOI: https://doi.org/10.1103/PhysRevLett.129.213201
  2. Robert, H. M. L., Čičala, M., Piliarik, M., Shaping of Optical Wavefronts Using Light-Patterned Photothermal Metamaterial. Adv. Optical Mater. 2022, 2200960. https://doi.org/10.1002/adom.202200960
  3. Jiří Červenka, Martin Šilhavík, Prabhat Kumar, Zahid Ali Zafar, Martin Míšek, Martin Čičala, Marek Piliarik, Anomalous elasticity and damping in covalently cross-linked graphene aerogels, Commun Phys 5, 27 (2022); doi: https://doi.org/10.1038/s42005-022-00806-5.

2021

 

  1. M. Vala, M. Piliarik, Weighing single protein complexes on the go, Nature Methods 18 (2021) 1159–1160 (News & Views); doi: https://doi.org/10.1038/s41592-021-01263-8.
  2. Ł. Bujak, K. Holanová, A.G. Marin, V. Henrichs, I. Barvík, M. Braun, Z. Lánský, M. Piliarik, Fast leaps between millisecond confinements govern Ase1 diffusion along microtubules, Small Methods 2021, 2100370; doi: https://onlinelibrary.wiley.com/doi/10.1002/smtd.202100370.
  3. Y. He, S. Lin, H. Robert, H. Li, P. Zhang, M. Piliarik, X.-W. Chen, Multiscale Modeling and Analysis for High-fidelity Interferometric Scattering Microscopy, Journal of Physics D: Applied Physics (2021) doi: https://doi.org/10.1088/1361-6463/abf70d.
  4. H. Robert, K. Holanová, Ł. Bujak, M. Vala, V. Henrichs, Z. Lánský, M. Piliarik, Fast photothermal spatial light modulation for quantitative phase imaging at the nanoscale, Nature Communications 12 (2021) 2921; doi: https://doi.org/10.1038/s41467-021-23252-3.
  5. M. Vala, L. Bujak, A.G. Marin, K. Holanova, V. Henrichs, M. Braun, Z. Lansky, M. Piliarik, Nanoscopic Structural Fluctuations of Disassembling Microtubules Revealed by Label-Free Super-Resolution Microscopy, Small Methods (2021) 2000985; doi: https://doi.org/10.1002/smtd.202000985.
  6. M. Vala, D. Palounek, H. M. L. Robert, M. Piliarik, Quantitative detection of optical anisotropy of single microtubules by polarization-sensitive interferometric scattering microscopy, Journal of Physics D: Applied Physics (2021); doi: https://doi.org/10.1088/1361-6463/abe669.

2020

 

  1. S. Lin, Y. He, H. Robert, H. Li, P. Zhang, M. Piliarik, X.-W. Chen, Multiscale Modeling and Analysis for High-fidelity Interferometric Scattering Microscopy, PREPRINT, arXiv:2004.10575v3
  2. H. Robert, Ł. Bujak, K. Holanová, M. Vala, M. Piliarik, Fast photothermal spatial light modulation for quantitative phase imaging at the nanoscale, PREPRINT available at Research Square; doi: https://doi.org/10.21203/rs.3.rs-38429/v1
  3. M. Vala, L. Bujak, A.G. Marin, K. Holanova, V. Henrichs, M. Braun, Z. Lansky, M. Piliarik, Nanoscopic Structural Fluctuations of Disassembling Microtubules Revealed by Label-Free Super-Resolution Microscopy, PREPRINT, bioRxiv 2020.10.21.348904; doi: https://doi.org/10.1101/2020.10.21.348904

2019

  1. M. Vala, Ch. T. Ertsgaard, N. J. Wittenberg, S. H. Oh, Plasmonic Sensing on Symmetric Nanohole Arrays Supporting High-Q Hybrid Modes and Reflection Geometry, ACS Sensors (2019).
  2. K. Holanová, M. Vala, M. Piliarik, Optical imaging and localization of prospective scattering labels smaller than a single protein, Optics and Laser Technology 109 (2019) 323.

2018

  1. M.P. McDonald, A. Gemeinhardt, K. König, M. Piliarik, S. Schaffer, S. Völkl, M. Aigner, A. Mackensen, V. Sandoghdar, Visualizing Single-Cell Secretion Dynamics with Single-Protein Sensitivity,Nano Letters 18 (2018) 513.

2017

  1. Łukasz Bujak, Kaishi Narushima, Dharmendar Kumar Sharma, Shuzo Hirata, and Martin Vacha, Plasmon Enhancement of Triplet Exciton Diffusion Revealed by Nanoscale Imaging of Photochemical Fluorescence Upconversion,J. Phys. Chem. C, 121 (2017) 25479

2016

  1. S. Spindler, J. Ehrig, K. Koenig, T. Nowak, M. Piliarik, H. Stein, R. Taylor, E. Garanger, S. Lecommandoux, I. Alves, V. Sandoghdar, Visualization of lipids and proteins at high spatial and temporal resolution via interferometric scattering (iSCAT) microscopy,Journal of Physics D: Applied Physics 49 (2016) 349601.

2014

  1. M. Piliarik, V. Sandoghdar, Direct optical sensing of single unlabeled proteins and super-resolution imaging of their binding sites.Nature Communications (2014) 4495.

IPE carries out fundamental and applied research in the scientific fields of photonics, optoelectronics and electronics. In these fields, IPE generates new knowledge and develops new technologies.

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