Browse "Dept. of Materials Science and Engineering(신소재공학과)" by Author Chan, Emory M.

Showing results 1 to 7 of 7

1
A Generalized Approach to Photon Avalanche Upconversion in Luminescent Nanocrystals

Skripka, Artiom; Lee, Minji; Qi, Xiao; Pan, Jia-Ahn; Yang, Haoran; Lee, Changhwan; Schuck, P. James; et al, Nano Letters, v.23, no.15, pp.7100 - 7106, 2023-08

2
Giant nonlinear optical responses from photon-avalanching nanoparticles

Lee, Changhwan; Xu, Emma Z.; Liu, Yawei; Teitelboim, Ayelet; Yao, Kaiyuan; Fernandez-Bravo, Angel; Kotulska, Agata M.; et al, Nature, v.589, no.7841, pp.230 - 235, 2021-01

3
Indefinite and bidirectional near-infrared nanocrystal photoswitching

Lee, Changhwan; Xu, Emma Z.; Kwock, Kevin W. C.; Teitelboim, Ayelet; Liu, Yawei; Park, Hye Sun; Ursprung, Benedikt; et al, Nature, v.618, no.7967, pp.951 - 958, 2023-06

4
Infrared-to-ultraviolet upconverting nanoparticles for COVID-19-related disinfection applications

Xu, Emma Z.; Lee, Changhwan; Pritzl, Stefanie D.; Chen, Allen S.; Lohmueller, Theobald; Cohen, Bruce E.; Chan, Emory M.; et al, Optical Materials: X, v.12, 2021-12

5
Ligand-Assisted Direct Lithography of Upconverting and Avalanching Nanoparticles for Nonlinear Photonics

Pan Jia-Ahn; Skripka, Artiom; Lee, Changhwan; Qi, Xiao; Pham, Anne L.; Woods, Joshua J.; Aberge,l Rebecca J.; et al, JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, v.146, no.11, pp.7487 - 7497, 2024-03

6
Predicting the impact of temperature dependent multi-phonon relaxation processes on the photon avalanche behavior in Tm3+: NaYF4 nanoparticles

Szalkowski, Marcin; Dudek, Magdalena; Korczak, Zuzanna; Lee, Changhwan; Marciniak, Łukasz; Chan, Emory M.; Schuck, P. James; et al, Optical Materials: X, v.12, 2021-12

7
Surface-sensitive photon avalanche behavior revealed by single-avalanching-nanoparticle imaging

Kwock, Kevin W. C.; Lee, Changhwan; Teitelboim, Ayelet; Liu, Yawei; Yao, Kaiyuan; Alam, Sardar B.; Cohen, Bruce E.; et al, Journal of Physical Chemistry C, v.125, no.43, pp.23976 - 23982, 2021-11

rss_1.0 rss_2.0 atom_1.0