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Nonlinear Optical Investigations in Nine-Atom Silver Quantum Clusters and Graphitic Carbon Nitride Nanosheets

Authors
Sridharan, KishoreSreekanth, PerumbilavilPark, Tae JooPhilip, Reji
Issue Date
Jul-2015
Publisher
American Chemical Society
Keywords
VISIBLE-LIGHT; NONEQUILIBRIUM ELECTRON; LIMITING PROPERTIES; GOLD NANOPARTICLES; AG NANOPARTICLES; SIZE; AU; PHOTOCATALYST; NANOCLUSTERS; NANOCRYSTALS
Citation
Journal of Physical Chemistry C, v.119, no.28, pp.16314 - 16320
Indexed
SCIE
SCOPUS
Journal Title
Journal of Physical Chemistry C
Volume
119
Number
28
Start Page
16314
End Page
16320
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/17495
DOI
10.1021/acs.jpcc.5b02372
ISSN
1932-7447
Abstract
Absorption Saturation due to surface plasmon resonance affects the optical limiting efficiency of metal nanopartides (NPs) by raising the limiting threshold to higher laser fluences. It has been shown that in gold, compared to the larger NPs, smaller quantum clusters (QCs) exhibit better optical limiting with lower limiting thresholds clue to the absence of absorption saturation. Here we report optical limiting properties of two novel materials, namely, nine-atom silver (Ag-9) QCs and graphitic carbon nitride (GCN) nanosheets. The relatively large nonlinear absorption of Ag-9 QCs compared to Ag NPs is revealed from open-aperture Z-Scan measurements carried out using 532 nm, 5 ns laser pulses. Optical nonlinearity in the QCs arises mostly from free carrier absorption and a relatively weak saturable absorption. The superior limiting efficiency of Ag-9 QCs is complemented by excellent chemical stability, which makes silver quantum clusters ideal candidates for optical limiting applications. The two-dimensional sheet-like structure of GCN is ideal for grafting metals and semiconductors, and we show that even though the nonlinearity of pristine GCN is low it can be improved substantially by grafting lightly with Ag-9 QCs.
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Park, Tae Joo
ERICA 공학대학 (DEPARTMENT OF MATERIALS SCIENCE AND CHEMICAL ENGINEERING)
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