• search hit 6 of 10
Back to Result List

Watching the Vibration and Cooling of Ultrathin Gold Nanotriangles by Ultrafast X-ray Diffraction

  • We study the vibrations of ultrathin gold nanotriangles upon optical excitation of the electron gas by ultrafast X-ray diffraction. We quantitatively measure the strain evolution in these highly asymmetric nano-objects, providing a direct estimation of the amplitude and phase of the excited vibrational motion. The maximal strain value is well reproduced by calculations addressing pump absorption by the nanotriangles and their resulting thermal expansion. The amplitude and phase of the out-of-plane vibration mode with 3.6 ps period dominating the observed oscillations are related to two distinct excitation mechanisms. Electronic and phonon pressures impose stresses with different time dependences. The nanosecond relaxation of the expansion yields a direct temperature sensing of the nano-object. The presence of a thin organic molecular layer at the nanotriangle/substrate interfaces drastically reduces the thermal conductance to the substrate.

Export metadata

Additional Services

Search Google Scholar Statistics
Metadaten
Author details:Alexander von ReppertORCiD, Radwan Mohamed SarhanORCiDGND, Felix SteteORCiD, Jan-Etienne PudellORCiDGND, N. Del Fatti, A. Crut, Joachim KoetzORCiDGND, Ferenc LiebigGND, Claudia Christina PrietzelGND, Matias BargheerORCiDGND
DOI:https://doi.org/10.1021/acs.jpcc.6b11651
ISSN:1932-7447
Title of parent work (English):The journal of physical chemistry : C, Nanomaterials and interfaces
Publisher:American Chemical Society
Place of publishing:Washington
Publication type:Article
Language:English
Year of first publication:2016
Publication year:2016
Release date:2020/03/22
Volume:120
Number of pages:6
First page:28894
Last Page:28899
Funding institution:DFG via the graduate school SALSA; DFG [BA 2281/8-1, KO 1387/14-1]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Chemie
Peer review:Referiert
Accept ✔
This website uses technically necessary session cookies. By continuing to use the website, you agree to this. You can find our privacy policy here.