Crossref
journal-article
Springer Science and Business Media LLC
Nature Nanotechnology (297)
References
29
Referenced
423
-
Li, Y. & El-Sayed, M. A. The effect of stabilizers on the catalytic activity and stability of Pd colloidal nanoparticles in the Suzuki reactions in aqueous solution. J. Phys. Chem. B 105, 8938–8943 (2001).
(
10.1021/jp010904m) / J. Phys. Chem. B by Y Li (2001) -
Meisel, D., Mulac, W. & Matheson, M. Catalysis of methyl viologen radical reactions by polymer-stabilized gold sols. J. Phys. Chem. 85, 179–187 (1981).
(
10.1021/j150602a015) / J. Phys. Chem. by D Meisel (1981) -
Narayanan, R. & El-Sayed, M. A. Shape-dependent catalytic activity of platinum nanoparticles in colloidal solution. Nano Lett. 4, 1343–1348 (2004).
(
10.1021/nl0495256) / Nano Lett. by R Narayanan (2004) -
Rupprechter, G. & Weilach, C. Mind the gap! Spectroscopy of catalytically active phases. Nano Today 2, 20–29 (2007).
(
10.1016/S1748-0132(07)70114-7) / Nano Today by G Rupprechter (2007) -
Park, I., Lee, K., Choi, J., Park, H. & Sung, Y. Surface structure of Pt-modified Au nanoparticles and electrocatalytic activity in formic acid electro-oxidation. J. Phys. Chem. C 111, 19126–19133 (2007).
(
10.1021/jp0739566) / J. Phys. Chem. C by I Park (2007) -
Chen, X. & Moskovits, M. Observing catalysis through the agency of the participating electrons: surface-chemistry-induced current changes in a tin oxide nanowire decorated with silver. Nano Lett. 7, 807–812 (2007).
(
10.1021/nl062467z) / Nano Lett. by X Chen (2007) -
Fierro-Gonzalez, J. & Gates, B. Evidence of active species in CO oxidation catalyzed by highly dispersed supported gold. Catal. Today 122, 201–210 (2007).
(
10.1016/j.cattod.2007.01.020) / Catal. Today by J Fierro-Gonzalez (2007) -
Somorjai, G., York, R., Butcher, D. & Park, J. The evolution of model catalytic systems: studies of structure, bonding and dynamics from single-crystal metal surfaces to nanoparticles, and from low pressure (<10−3 Torr) to high pressure (>10−3 Torr) to liquid interfaces. Phys. Chem. Chem. Phys. 9, 3500–3513 (2007).
(
10.1039/B618805B) / Phys. Chem. Chem. Phys. by G Somorjai (2007) -
Novo, C. et al. Contributions from radiation damping and surface scattering to the linewidth of the longitudinal plasmon band of gold nanorods: a single particle study. Phys. Chem. Chem. Phys. 8, 3540–3546 (2006).
(
10.1039/b604856k) / Phys. Chem. Chem. Phys. by C Novo (2006) -
Novo, C., Funston, A. M., Pastoriza-Santos, I., Liz-Marzán, L. & Mulvaney, P. Spectroscopy and high-resolution microscopy of single nanocrystals by a focused ion beam registration method. Angew. Chem. Int. Ed. 46, 3517–3520 (2007).
(
10.1002/anie.200700033) / Angew. Chem. Int. Ed. by C Novo (2007) -
Henglein, A. Physicochemical properties of small metal particles in solution—microelectrode reactions, chemisorption, composite metal particles, and the atom-to-metal transition. J. Phys. Chem. 97, 5457–5471 (1993).
(
10.1021/j100123a004) / J. Phys. Chem. by A Henglein (1993) -
Bard, A., Crayston, J., Kittlesen, G., Shea, T. & Wrighton, M. Digital simulation of the measured electrochemical response of reversible redox couples at microelectrode arrays—consequences arising from closely spaced ultramicroelectrodes. Anal. Chem. 58, 2321–2331 (1986).
(
10.1021/ac00124a045) / Anal. Chem. by A Bard (1986) -
Mulvaney, P. Surface plasmon spectroscopy of nanosized metal particles. Langmuir 12, 788–800 (1996).
(
10.1021/la9502711) / Langmuir by P Mulvaney (1996) -
Bockris, J., Damjanov, A. & Mannan, R. Catalysis of electrodic hydrogen evolution and dissolution reactions on rationally chosen substrates. J. Electroanal. Chem. 18, 349–361 (1968).
(
10.1016/S0022-0728(68)80003-8) / J. Electroanal. Chem. by J Bockris (1968) -
Spiro, M. & Freund, P. Colloidal catalysis—transport versus surface control. J. Chem. Soc., Faraday Trans. I 79, 1649–1658 (1983).
(
10.1039/f19837901649) / J. Chem. Soc., Faraday Trans. I by M Spiro (1983) -
Spiro, M. Heterogeneous catalysis in solution. 17. Kinetics of oxidation–reduction reactions catalyzed by electron-transfer through the solid—an electrochemical treatment. J. Chem. Soc., Faraday Trans. I 75, 1507–1512 (1979).
(
10.1039/f19797501507) / J. Chem. Soc., Faraday Trans. I by M Spiro (1979) -
Henglein, A. & Lilie, J. Storage of electrons in aqueous solution—the rates of chemical charging and discharging the colloidal silver microelectrode. J. Am. Chem. Soc. 103, 1059–1066 (1981).
(
10.1021/ja00395a011) / J. Am. Chem. Soc. by A Henglein (1981) -
Miller, D., Bard, A., McLendon, G. & Ferguson, J. Catalytic water reduction at colloidal metal microelectrodes. 2. Theory and experiment. J. Am. Chem. Soc. 103, 5336–5341 (1981).
(
10.1021/ja00408a010) / J. Am. Chem. Soc. by D Miller (1981) -
Kiwi, J. & Gratzel, M. Hydrogen evolution from water induced by visible light mediated by redox catalysis. Nature 281, 657–658 (1979).
(
10.1038/281657a0) / Nature by J Kiwi (1979) -
Mulvaney, P., Perez-Juste, J., Giersig, M., Liz-Marzán, L. & Pecharroman, C. Drastic surface plasmon mode shifts in gold nanorods due to electron charging. Plasmonics 1, 61–66 (2006).
(
10.1007/s11468-005-9005-0) / Plasmonics by P Mulvaney (2006) -
Novo, C. & Mulvaney, P. Charge-induced Rayleigh instabilities in small gold rods. Nano Lett. 7, 520–524 (2007).
(
10.1021/nl062649t) / Nano Lett. by C Novo (2007) -
Mulvaney, P., Linnert, T. & Henglein, A. Surface chemistry of colloidal silver in aqueous solution—observations on chemisorption and reactivity. J. Phys. Chem. 95, 7843–7846 (1991).
(
10.1021/j100173a053) / J. Phys. Chem. by P Mulvaney (1991) -
Liz-Marzán, L. Tailoring surface plasmons through the morphology and assembly of metal nanoparticles. Langmuir 22, 32–41 (2006).
(
10.1021/la0513353) / Langmuir by L Liz-Marzán (2006) -
Nikoobakht, B. & El-Sayed, M. A. Preparation and growth mechanism of gold nanorods (NRs) using seed-mediated growth method. Chem. Mater. 15, 1957–1962 (2003).
(
10.1021/cm020732l) / Chem. Mater. by B Nikoobakht (2003) -
Perez-Juste, J., Liz-Marzán, L., Carnie, S., Chan, D. & Mulvaney, P. Electric-field-directed growth of gold nanorods in aqueous surfactant solutions. Adv. Funct. Mater. 14, 571–579 (2004).
(
10.1002/adfm.200305068) / Adv. Funct. Mater. by J Perez-Juste (2004) -
Jana, N., Gearheart, L. & Murphy, C. Wet chemical synthesis of silver nanorods and nanowires of controllable aspect ratio. Chem. Commun. 617–618 (2001).
(
10.1039/b100521i) -
Prescott, S. & Mulvaney, P. Gold nanorod extinction spectra. J. Appl. Phys. 99,123504-1 (2006).
(
10.1063/1.2203212) / J. Appl. Phys. by S Prescott (2006) -
Sánchez-Iglesias, A. et al. Synthesis and optical properties of gold nanodecahedra with size control. Adv. Mater. 18, 2529–2534 (2006).
(
10.1002/adma.200600475) / Adv. Mater. by A Sánchez-Iglesias (2006) -
Gesquiere, A., Park, S. & Barbara, P. F-V/SMS: a new technique for studying the structure and dynamics of single molecules and nanoparticles. J. Phys. Chem. B 108, 10301–10308 (2004).
(
10.1021/jp049583f) / J. Phys. Chem. B by A Gesquiere (2004)
Dates
| Type | When |
|---|---|
| Created | 16 years, 11 months ago (Sept. 15, 2008, 12:57 p.m.) |
| Deposited | 2 years, 3 months ago (May 18, 2023, 8:12 p.m.) |
| Indexed | 2 weeks, 3 days ago (Aug. 6, 2025, 8:19 a.m.) |
| Issued | 16 years, 11 months ago (Sept. 14, 2008) |
| Published | 16 years, 11 months ago (Sept. 14, 2008) |
| Published Online | 16 years, 11 months ago (Sept. 14, 2008) |
| Published Print | 16 years, 10 months ago (Oct. 1, 2008) |
@article{Novo_2008, title={Direct observation of chemical reactions on single gold nanocrystals using surface plasmon spectroscopy}, volume={3}, ISSN={1748-3395}, url={http://dx.doi.org/10.1038/nnano.2008.246}, DOI={10.1038/nnano.2008.246}, number={10}, journal={Nature Nanotechnology}, publisher={Springer Science and Business Media LLC}, author={Novo, Carolina and Funston, Alison M. and Mulvaney, Paul}, year={2008}, month=sep, pages={598–602} }