Tsuguyuki Saito (@saito_tsuguyuki) 's Twitter Profile
Tsuguyuki Saito

@saito_tsuguyuki

Professor, Dept Biomater Sci, Univ Tokyo

ID: 1567460953691914240

linkhttps://www.webofscience.com/wos/author/record/232189 calendar_today07-09-2022 10:33:22

8 Tweet

40 Followers

49 Following

Nanoscale journal family (@nanoscale_rsc) 's Twitter Profile Photo

Atomic-scale dents on cellulose nanofibers: the origin of diverse defects in sustainable fibrillar materials Find out more in this #NanoscaleHorizons communication by Tsuguyuki Saito (UTokyo | 東京大学), Kayoko Kobayashi (Kyoto University) et al! 👇 RSC Japan pubs.rsc.org/en/content/art…

Kazuho Daicho (@daichok) 's Twitter Profile Photo

Our paper for true density of mercerized and regenerated celluloses has been recently pubilshed in Biomacromolecules! please check→pubs.acs.org/doi/10.1021/ac…

Nanoscale journal family (@nanoscale_rsc) 's Twitter Profile Photo

ICYMI! Wood-derived cellulose nanofibers (CNFs) have dent defects leading to further destruction such as kinking and fragmentation; we need to find a strategy for exploiting the full potential of CNFs! Tsuguyuki Saito Kayoko Kobayashi Tomoki Ito Kazuho Daicho 👇 pubs.rsc.org/en/content/art…

ICYMI! Wood-derived cellulose nanofibers (CNFs) have dent defects leading to further destruction such as kinking and fragmentation; we need to find a strategy for exploiting the full potential of CNFs! <a href="/saito_tsuguyuki/">Tsuguyuki Saito</a> <a href="/Kayoko3s/">Kayoko Kobayashi</a> <a href="/TomokiIto1996/">Tomoki Ito</a> <a href="/daichok/">Kazuho Daicho</a> 👇
pubs.rsc.org/en/content/art…
Kazuho Daicho (@daichok) 's Twitter Profile Photo

link.springer.com/article/10.100… Our paper has been published! Enhancing the inter-CNF interaction increases crystallinity. We call this "crystallite fusion". Here we observe the change in crystallinity during CNF condensation to investigate the mechanism. Congrats, Yoshi! Please check↓