Segui
Xiangeng Meng (孟宪赓)
Xiangeng Meng (孟宪赓)
Electrical & Computer Engineering, Purdue University
Email verificata su purdue.edu - Home page
Titolo
Citata da
Citata da
Anno
Near infrared broadband emission of bismuth-doped aluminophosphate glass
X Meng, J Qiu, M Peng, D Chen, Q Zhao, X Jiang, C Zhu
Optics Express 13 (5), 1628-1634, 2005
4202005
Broadband hot‐electron collection for solar water splitting with plasmonic titanium nitride
A Naldoni, U Guler, Z Wang, M Marelli, F Malara, X Meng, LV Besteiro, ...
Advanced Optical Materials 5 (15), 1601031, 2017
3282017
Bismuth-and aluminum-codoped germanium oxide glasses for super-broadband optical amplification
M Peng, J Qiu, D Chen, X Meng, I Yang, X Jiang, C Zhu
Optics letters 29 (17), 1998-2000, 2004
3202004
Infrared broadband emission of bismuth-doped barium-aluminum-borate glasses
X Meng, J Qiu, M Peng, D Chen, Q Zhao, X Jiang, C Zhu
Optics Express 13 (5), 1635-1642, 2005
2942005
Superbroadband 1310 nm emission from bismuth and tantalum codoped germanium oxide glasses
M Peng, J Qiu, D Chen, X Meng, C Zhu
Optics letters 30 (18), 2433-2435, 2005
2812005
Co4N nanoparticles encapsulated in N-doped carbon box as tri-functional catalyst for Zn-air battery and overall water splitting
H Ge, G Li, J Shen, W Ma, X Meng, L Xu
Applied Catalysis B: Environmental 275, 119104, 2020
2042020
Wavelength-tunable spasing in the visible
X Meng, AV Kildishev, K Fujita, K Tanaka, VM Shalaev
Nano letters 13 (9), 4106-4112, 2013
1982013
Random lasers with coherent feedback from highly transparent polymer films embedded with silver nanoparticles
X Meng, K Fujita, Y Zong, S Murai, K Tanaka
Applied Physics Letters 92 (20), 2008
1672008
Gram‐scale synthesis of 41% efficient single‐component white‐light‐emissive carbonized polymer dots with hybrid fluorescence/phosphorescence for white light‐emitting diodes
Z Wang, Y Liu, S Zhen, X Li, W Zhang, X Sun, B Xu, X Wang, Z Gao, ...
Advanced Science 7 (4), 1902688, 2020
1652020
Plasmonically controlled lasing resonance with metallic− dielectric core− shell nanoparticles
X Meng, K Fujita, S Murai, T Matoba, K Tanaka
Nano letters 11 (3), 1374-1378, 2011
1462011
Coherent random lasers in weakly scattering polymer films containing silver nanoparticles
X Meng, K Fujita, S Murai, K Tanaka
Physical Review A—Atomic, Molecular, and Optical Physics 79 (5), 053817, 2009
1442009
Broadband infrared luminescence from Li2O-Al2O3-ZnO-SiO2 glasses doped with Bi2O3
M Peng, J Qiu, D Chen, X Meng, C Zhu
Optics Express 13 (18), 6892-6898, 2005
1352005
Suppressing phase disproportionation in quasi-2D perovskite light-emitting diodes
K Wang, ZY Lin, Z Zhang, L Jin, K Ma, AH Coffey, HR Atapattu, Y Gao, ...
Nature communications 14 (1), 397, 2023
1162023
Highly directional spaser array for the red wavelength region
X Meng, J Liu, AV Kildishev, VM Shalaev
Laser & Photonics Reviews 8 (6), 896-903, 2014
1112014
Spatially Responsive Multicolor Lanthanide‐MOF Heterostructures for Covert Photonic Barcodes
Z Gao, B Xu, T Zhang, Z Liu, W Zhang, X Sun, Y Liu, X Wang, Z Wang, ...
Angewandte Chemie 132 (43), 19222-19226, 2020
982020
Nanolasers enabled by metallic nanoparticles: from spasers to random lasers
Z Wang, X Meng, AV Kildishev, A Boltasseva, VM Shalaev
Laser & Photonics Reviews 11 (6), 1700212, 2017
912017
Controlling random lasing with three-dimensional plasmonic nanorod metamaterials
Z Wang, X Meng, SH Choi, S Knitter, YL Kim, H Cao, VM Shalaev, ...
Nano letters 16 (4), 2471-2477, 2016
832016
Lasing action with gold nanorod hyperbolic metamaterials
R Chandrasekar, Z Wang, X Meng, SI Azzam, MY Shalaginov, ...
Acs Photonics 4 (3), 674-680, 2017
772017
Metal–dielectric core–shell nanoparticles: advanced plasmonic architectures towards multiple control of random lasers
X Meng, K Fujita, Y Moriguchi, Y Zong, K Tanaka
Advanced optical materials 1 (8), 573-580, 2013
752013
GeO2: Bi, M (M= Ga, B) glasses with super-wide infrared luminescence
M Peng, X Meng, J Qiu, Q Zhao, C Zhu
Chemical physics letters 403 (4-6), 410-414, 2005
732005
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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