Emory Chan
Emory Chan
Staff Scientist, The Molecular Foundry, Lawrence Berkeley National Laboratory
Verified email at - Homepage
Cited by
Cited by
Engineering bright sub-10-nm upconverting nanocrystals for single-molecule imaging
DJ Gargas, EM Chan, AD Ostrowski, S Aloni, MVP Altoe, ES Barnard, ...
Nature nanotechnology 9 (4), 300-305, 2014
Size-controlled growth of CdSe nanocrystals in microfluidic reactors
EM Chan, RA Mathies, AP Alivisatos
Nano Letters 3 (2), 199-201, 2003
Direct evidence for coupled surface and concentration quenching dynamics in lanthanide-doped nanocrystals
NJJ Johnson, S He, S Diao, EM Chan, H Dai, A Almutairi
Journal of the American Chemical Society 139 (8), 3275-3282, 2017
High-temperature microfluidic synthesis of CdSe nanocrystals in nanoliter droplets
EM Chan, AP Alivisatos, RA Mathies
Journal of the American Chemical Society 127 (40), 13854-13861, 2005
Dye-sensitized core/active shell upconversion nanoparticles for optogenetics and bioimaging applications
X Wu, Y Zhang, K Takle, O Bilsel, Z Li, H Lee, Z Zhang, D Li, W Fan, ...
ACS nano 10 (1), 1060-1066, 2016
Directed growth of free-standing single-walled carbon nanotubes
AM Cassell, NR Franklin, TW Tombler, EM Chan, J Han, H Dai
Journal of the American Chemical Society 121 (34), 7975-7976, 1999
Facile transformation of imine covalent organic frameworks into ultrastable crystalline porous aromatic frameworks
X Li, C Zhang, S Cai, X Lei, V Altoe, F Hong, JJ Urban, J Ciston, EM Chan, ...
Nature communications 9 (1), 2998, 2018
Controlled synthesis and single-particle imaging of bright, sub-10 nm lanthanide-doped upconverting nanocrystals
AD Ostrowski, EM Chan, DJ Gargas, EM Katz, G Han, PJ Schuck, ...
ACS nano 6 (3), 2686-2692, 2012
Precise tuning of surface quenching for luminescence enhancement in core–shell lanthanide-doped nanocrystals
S Fischer, ND Bronstein, JK Swabeck, EM Chan, AP Alivisatos
Nano letters 16 (11), 7241-7247, 2016
The making and breaking of lead-free double perovskite nanocrystals of cesium silver–bismuth halide compositions
Y Bekenstein, JC Dahl, J Huang, WT Osowiecki, JK Swabeck, EM Chan, ...
Nano letters 18 (6), 3502-3508, 2018
Amplifying the red-emission of upconverting nanoparticles for biocompatible clinically used prodrug-induced photodynamic therapy
A Punjabi, X Wu, A Tokatli-Apollon, M El-Rifai, H Lee, Y Zhang, C Wang, ...
ACS nano 8 (10), 10621-10630, 2014
Cross-linkable polymers based on dialkylfluorenes
G Klärner, JI Lee, VY Lee, E Chan, JP Chen, A Nelson, D Markiewicz, ...
Chemistry of materials 11 (7), 1800-1805, 1999
The concept of delayed nucleation in nanocrystal growth demonstrated for the case of iron oxide nanodisks
MF Casula, Y Jun, DJ Zaziski, EM Chan, A Corrias, AP Alivisatos
Journal of the American Chemical Society 128 (5), 1675-1682, 2006
Precursor Conversion Kinetics and the Nucleation of Cadmium Selenide Nanocrystals
JS Owen, EM Chan, H Liu, AP Alivisatos
Journal of the American Chemical Society, 2010
Combinatorial discovery of lanthanide-doped nanocrystals with spectrally pure upconverted emission
EM Chan, G Han, JD Goldberg, DJ Gargas, AD Ostrowski, PJ Schuck, ...
Nano letters 12 (7), 3839-3845, 2012
Reproducible, high-throughput synthesis of colloidal nanocrystals for optimization in multidimensional parameter space
EM Chan, C Xu, AW Mao, G Han, JS Owen, BE Cohen, DJ Milliron
Nano letters 10 (5), 1874-1885, 2010
Continuous-wave upconverting nanoparticle microlasers
A Fernandez-Bravo, K Yao, ES Barnard, NJ Borys, ES Levy, B Tian, ...
Nature nanotechnology 13 (7), 572-577, 2018
Enrichment of molecular antenna triplets amplifies upconverting nanoparticle emission
DJ Garfield, NJ Borys, SM Hamed, NA Torquato, CA Tajon, B Tian, ...
Nature Photonics 12 (7), 402-407, 2018
Combinatorial approaches for developing upconverting nanomaterials: high-throughput screening, modeling, and applications
EM Chan
Chemical Society Reviews 44 (6), 1653-1679, 2015
Giant nonlinear optical responses from photon-avalanching nanoparticles
C Lee, EZ Xu, Y Liu, A Teitelboim, K Yao, A Fernandez-Bravo, ...
Nature 589 (7841), 230-235, 2021
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