Nanoscale optical and structural characterisation of silk

Meguya Ryu, Reo Honda, Adrian Cernescu, Arturas Vailionis, Armandas Balčytis, Jitraporn Vongsvivut, Jing-Liang Li, Denver P. Linklater, Elena P. Ivanova, Vygantas Mizeikis, Mark J. Tobin, Junko Morikawa and Saulius Juodkazis
Beilstein J. Nanotechnol. 2019, 10, 922–929. https://doi.org/10.3762/bjnano.10.93

Cite the Following Article

Nanoscale optical and structural characterisation of silk
Meguya Ryu, Reo Honda, Adrian Cernescu, Arturas Vailionis, Armandas Balčytis, Jitraporn Vongsvivut, Jing-Liang Li, Denver P. Linklater, Elena P. Ivanova, Vygantas Mizeikis, Mark J. Tobin, Junko Morikawa and Saulius Juodkazis
Beilstein J. Nanotechnol. 2019, 10, 922–929. https://doi.org/10.3762/bjnano.10.93

How to Cite

Ryu, M.; Honda, R.; Cernescu, A.; Vailionis, A.; Balčytis, A.; Vongsvivut, J.; Li, J.-L.; Linklater, D. P.; Ivanova, E. P.; Mizeikis, V.; Tobin, M. J.; Morikawa, J.; Juodkazis, S. Beilstein J. Nanotechnol. 2019, 10, 922–929. doi:10.3762/bjnano.10.93

Download Citation

Citation data can be downloaded as file using the "Download" button or used for copy/paste from the text window below.
Citation data in RIS format can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Zotero.

Presentation Graphic

Picture with graphical abstract, title and authors for social media postings and presentations.
Format: PNG Size: 1.4 MB Download

Citations to This Article

Up to 20 of the most recent references are displayed here.

Scholarly Works

  • Linklater, D.; Vailionis, A.; Ryu, M.; Kamegaki, S.; Morikawa, J.; Mu, H.; Smith, D.; Maasoumi, P.; Ford, R.; Katkus, T.; Blamires, S.; Kondo, T.; Nishijima, Y.; Moraru, D.; Shribak, M.; O'Connor, A.; Ivanova, E. P.; Ng, S. H.; Masuda, H.; Juodkazis, S. Structure and Optical Anisotropy of Spider Scales and Silk: The Use of Chromaticity and Azimuth Colors to Optically Characterize Complex Biological Structures. Nanomaterials (Basel, Switzerland) 2023, 13, 1894. doi:10.3390/nano13121894
  • Wang, H.; Zhang, W.; Ladika, D.; Yu, H.; Gailevičius, D.; Wang, H.; Pan, C.; Nair, P. N. S.; Ke, Y.; Mori, T.; Chan, J. Y. E.; Ruan, Q.; Farsari, M.; Malinauskas, M.; Juodkazis, S.; Gu, M.; Yang, J. K. W. Two‐Photon Polymerization Lithography for Optics and Photonics: Fundamentals, Materials, Technologies, and Applications. Advanced Functional Materials 2023, 33. doi:10.1002/adfm.202214211
  • Eliaz, D.; Paul, S.; Benyamin, D.; Cernescu, A.; Cohen, S. R.; Rosenhek-Goldian, I.; Brookstein, O.; Miali, M. E.; Solomonov, A.; Greenblatt, M.; Levy, Y.; Raviv, U.; Barth, A.; Shimanovich, U. Micro and nano-scale compartments guide the structural transition of silk protein monomers into silk fibers. Nature communications 2022, 13, 7856. doi:10.1038/s41467-022-35505-w
  • Pritam, P.; Senapati, S.; Palai, S. P.; Giri, J.; Dash, M.; Sahoo, B.; Bastia, T. K.; Rath, P.; Panda, A. K. Protein-Based Biomaterials for Sustainable Remediation of Aquatic Environments. Biobased Materials; Springer Nature Singapore, 2022; pp 153–170. doi:10.1007/978-981-19-6024-6_7
  • Hinrichs, K.; Blevins, B.; Furchner, A.; Yadavalli, N. S.; Minko, S. Infrared polarimetry: Anisotropy of polymer nanofibers. Micro and Nano Engineering 2022, 14, 100116. doi:10.1016/j.mne.2022.100116
  • Bhagia, S.; Ďurkovič, J.; Lagaňa, R.; Kardošová, M.; Kačík, F.; Cernescu, A.; Schäfer, P.; Yoo, C. G.; Ragauskas, A. J. Nanoscale FTIR and Mechanical Mapping of Plant Cell Walls for Understanding Biomass Deconstruction. ACS Sustainable Chemistry & Engineering 2022, 10, 3016–3026. doi:10.1021/acssuschemeng.1c08163
  • Wang, H.; Xie, Q.; Xu, X. G. Super-resolution mid-infrared spectro-microscopy of biological applications through tapping mode and peak force tapping mode atomic force microscope. Advanced drug delivery reviews 2021, 180, 114080. doi:10.1016/j.addr.2021.114080
  • Govindaraj, P.; Sokolova, A.; Salim, N. V.; Juodkazis, S.; Fuss, F. K.; Fox, B.; Hameed, N. Distribution states of graphene in polymer nanocomposites: A review. Composites Part B: Engineering 2021, 226, 109353. doi:10.1016/j.compositesb.2021.109353
  • Ryu, M.; Nishijima, Y.; Morimoto, S.; To, N.; Hashizume, T.; Matsubara, R.; Kubono, A.; Hu, J.; Ng, S. H.; Juodkazis, S.; Morikawa, J. Hyperspectral Molecular Orientation Mapping in Metamaterials. Applied Sciences 2021, 11, 1544. doi:10.3390/app11041544
  • Schnell, M.; Goikoetxea, M.; Amenabar, I.; Carney, P. S.; Hillenbrand, R. Rapid Infrared Spectroscopic Nanoimaging with nano-FTIR Holography. ACS Photonics 2020, 7, 2878–2885. doi:10.1021/acsphotonics.0c01164
  • Fujisawa, H.; Ryu, M.; Lundgaard, S.; Linklater, D. P.; Ivanova, E. P.; Nishijima, Y.; Juodkazis, S.; Morikawa, J. Direct Measurement of Temperature Diffusivity of Nanocellulose-Doped Biodegradable Composite Films. Micromachines 2020, 11, 738. doi:10.3390/mi11080738
  • Ryu, M.; Honda, R.; Balčytis, A.; Vongsvivut, J.; Tobin, M. J.; Juodkazis, S.; Morikawa, J. Hyperspectral mapping of anisotropy. Nanoscale Horizons 2019, 4, 1443–1449. doi:10.1039/c9nh00340a
  • Ryu, M.; Honda, R.; Reich, A.; Cernescu, A.; Li, J.; Hu, J.; Juodkazis, S.; Morikawa, J. Near-Field IR Orientational Spectroscopy of Silk. Applied Sciences 2019, 9, 3991. doi:10.3390/app9193991
  • Dharmavarapu, R.; Izumi, K.-i.; Katayama, I.; Ng, S. H.; Vongsvivut, J.; Tobin, M. J.; AleksandrKuchmizhak; Nishijima, Y.; Bhattacharya, S.; SauliusJuodkazis. Dielectric cross-shaped resonator based metasurface for vortex beam generation in Mid-IR and THz wavelengths. Nanophotonics 2019, 8, 1263–1270. doi:10.1515/nanoph-2019-0112
  • Honda, R.; Ryu, M.; Moritake, M.; Balčytis, A.; Mizeikis, V.; Vongsvivut, J.; Tobin, M. J.; Appadoo, D. R. T.; Li, J.; Ng, S. H.; Juodkazis, S.; Morikawa, J. Infrared Polariscopy Imaging of Linear Polymeric Patterns with a Focal Plane Array. Nanomaterials (Basel, Switzerland) 2019, 9, 732. doi:10.3390/nano9050732
Other Beilstein-Institut Open Science Activities