7 Plasmon-Associated Control of Chemical Reaction at Nanometer …
133
12. Sanders AW, Routenberg DA, Wiley BJ, Xia Y, Dufresne ER, Reed MA (2006) Observation
of plasmon propagation, redirection, and fan-out in silver nanowires. Nano Lett 6:1822–1826
13. Ru EL, Etchegoin P (2008) Principles of surface-enhanced Raman spectroscopy: and related
plasmonic effects. Elsevier Science
14. Lin H, Centeno SP, Su L, Kenens B, Rocha S, Sliwa M, Hofkens J, Uji-i H (2012) Mapping of
surface-enhanced fluorescence on metal nanoparticles using super-resolution photoactivation
localization microscopy. Chem Phys Chem 13:973–981
15. Orrit M (2014) Nobel prize in chemistry: celebrating optical nanoscopy. Nat Photon 8:887–888
16. Rust MJ, Bates M, Zhuang X (2006) Sub-diffraction-limit imaging by stochastic optical
reconstruction microscopy (STORM). Nat Methods 3:793–796
17. Schüttpelz M, Wolter S, van de Linde S, Heilemann M, Sauer M (2010) dSTORM: realtim
subdiffraction-resolution fluorescence imaging with organic fluorophores. In: Proceedings of
SPIE, vol 7571. pp 75710 V–7
18. van de Linde S, Loschberger A, Klein T, Heidbreder M, Wolter S, Heilemann M, Sauer M
(2011) Direct stochastic optical reconstruction microscopy with standard fluorescent probes.
Nat Protoc 6:991–1009
19. Kauranen M, Zayats AV (2012) Nonlinear plasmonics. Nat Photon 6:737–748
20. Inose T, Toyouchi S, Lu G, Umemoto K, Tezuka Y, Lyu B, Masuhara A, Fron E, Fujita Y,
Hirai K, Uji-i H (2019) Water-mediated polyol synthesis of pencil-like sharp silver nanowires
suitable for nonlinear plasmonics. Chem Common 55:11630–11633
21. Irie M, Fukaminato T, Matsuda K, Kobatake S (2014) Photochromism of diarylethene
molecules and crystals: Memories, switches, and actuators. Chem Rev 114:12174
22. Mori K, Ishibashi Y, Matsuda H, Ito S, Nagasawa Y, Nakagawa H, Uchida K, Yokojima
S, Nakamura S, Irie M, Miyasaka H (2011) One-color reversible control of photochromic
reactions in a diarylethene derivative: three-photon cyclization and two-photon cycloreversion
by a near-infrared femtosecond laser pulse at 1.28 µm. J Am Chem Soc 133:2621
23. Sotome H, Nagasaka T, Une K, Okui C, Ishibashi Y, Kamada K, Kobatake S, Irie M, Miyasaka
H (2017) Efficient cycloreversion reaction of a diarylethene derivative in higher excited states
attained by off-resonant simultaneous two-photon absorption. J Phys Chem Lett 8:3272
24. Kasha M (1950) Characterization of electronic transitions in complex molecules. Discuss
Faraday Soc 9:14
25. de Klerk JS, Szemik-Hojniak A, Ariese F, Gooijer C (2007) Intramolecular proton-transfer
processes starting at higher excited states: a fluorescence study on 2-butylamino-6-methyl-4nitropyridine N-oxide in nonpolar solutions. J Phys Chem A 111:5828
26. Tseng HW, Shen JY, Kuo TY, Tu TS, Chen YA, Demchenko AP, Chou PT (2016) Excited-state
intramolecular proton-transfer reaction demonstrating anti-Kasha behavior. Chem Sci 7:655
27. Sotome H, Nagasaka T, Une K, Morikawa S, Katayama T, Kobatake S, Irie M, Miyasaka H
(2017) Cycloreversion reaction of a diarylethene derivative at higher excited states attained by
two-color, two-photon femtosecond pulsed excitation. J Am Chem Soc 139:17159
Précédent

- 139/586

Suivant