Sugiura, Shintaro, Shintani, Yuki, Mori, Daisuke, Higashi, Sayuri L., Shibata, Aya, Kitamura, Yoshiaki, Kawano, Shin-ichiro, Hirosawa, Koichiro M., Suzuki, Kenichi G. N., Ikeda, Masato (2023) Design of supramolecular hybrid nanomaterials comprising peptide-based supramolecular nanofibers and in situ generated DNA nanoflowers through rolling circle amplification. Nanoscale, 15 (3) 1024-1031 doi:10.1039/d2nr04556g
Reference Type | Journal (article/letter/editorial) | ||
---|---|---|---|
Title | Design of supramolecular hybrid nanomaterials comprising peptide-based supramolecular nanofibers and in situ generated DNA nanoflowers through rolling circle amplification | ||
Journal | Nanoscale | ||
Authors | Sugiura, Shintaro | Author | |
Shintani, Yuki | Author | ||
Mori, Daisuke | Author | ||
Higashi, Sayuri L. | Author | ||
Shibata, Aya | Author | ||
Kitamura, Yoshiaki | Author | ||
Kawano, Shin-ichiro | Author | ||
Hirosawa, Koichiro M. | Author | ||
Suzuki, Kenichi G. N. | Author | ||
Ikeda, Masato | Author | ||
Year | 2023 | Volume | 15 |
Issue | 3 | ||
Publisher | Royal Society of Chemistry (RSC) | ||
DOI | doi:10.1039/d2nr04556gSearch in ResearchGate | ||
Generate Citation Formats | |||
Mindat Ref. ID | 15673558 | Long-form Identifier | mindat:1:5:15673558:4 |
GUID | 0 | ||
Full Reference | Sugiura, Shintaro, Shintani, Yuki, Mori, Daisuke, Higashi, Sayuri L., Shibata, Aya, Kitamura, Yoshiaki, Kawano, Shin-ichiro, Hirosawa, Koichiro M., Suzuki, Kenichi G. N., Ikeda, Masato (2023) Design of supramolecular hybrid nanomaterials comprising peptide-based supramolecular nanofibers and in situ generated DNA nanoflowers through rolling circle amplification. Nanoscale, 15 (3) 1024-1031 doi:10.1039/d2nr04556g | ||
Plain Text | Sugiura, Shintaro, Shintani, Yuki, Mori, Daisuke, Higashi, Sayuri L., Shibata, Aya, Kitamura, Yoshiaki, Kawano, Shin-ichiro, Hirosawa, Koichiro M., Suzuki, Kenichi G. N., Ikeda, Masato (2023) Design of supramolecular hybrid nanomaterials comprising peptide-based supramolecular nanofibers and in situ generated DNA nanoflowers through rolling circle amplification. Nanoscale, 15 (3) 1024-1031 doi:10.1039/d2nr04556g | ||
In | (2023) Nanoscale Vol. 15 (3) Royal Society of Chemistry (RSC) |
See Also
These are possibly similar items as determined by title/reference text matching only.