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  1. Scholars Hub of the Academia Sinica
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Browsing by Author Wang, Y. -L.


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0-9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Showing results 1 to 17 of 17
Issue DateTitleAuthor(s)RelationscopusWOSFulltext/Archive link
2013A novel vertical fan-out platform based on an array of curved anodic alumina nanochannelsKuo, P. -C.; Chen, I. -H.; Chen, C. -T.; Lee, K. -P.; Chen, C. -W.; Lin, C. -C.; Chiu, S. W. -Y.; Hsieh, Y. -F.; Wang, Y. -L.; Shiue, J.NANOTECHNOLOGY24, 055306
2010Anomalously enhanced Raman scattering from longitudinal optical phonons on Ag-nanoparticle-covered GaN and ZnOLiu, C. Y.; Dvoynenko, M. M.; Lai, M. Y.; Chan, T. H.; Lee, Y. R.; Wang, J. -K.; Wang, Y. -L.APPLIED PHYSICS LETTERS 96,033109-1~033109-3
2004Effect of HIV-1 Env cytoplasmic tail elongation on virus replicationChan, W. -E.; Wang, Y. -L.; Lin, H. -H.; Chen, S. S. -L.
-Enhanced Raman scattering on arrays of silver nanoparticles with sub-10 nm gaps: Effect of collective plasmon couplingWang, H. -H.; Liu, C. -Y.; Wang, J. -K.; Wang, Y. -L.
2009Femtosecond Pulse Shaping by Ag Nanoparticle Arrays: Plasmon-Enhanced Absorption SaturationCheng, T. -Y.; Tsai, K. -T.; Lee, J. -H.; He, J. -H.; Wang, Y. -L.; Wang, J. -K.
2006Highly Raman Enhancing Substrates Made of Ag- Nanoparticle Array with Tunable Sub-10 nm GapsWang, H. -H.; Liu, C. -Y.; Wu, S. -B.; Liu, N. -W.; Peng, C. -Y.; Chan, T. -S.; Hsu, C. -F.; Wang, J. -K.; Wang, Y. -L.Advanced Materials 18, 491-495
2006Highly Raman Enhancing Substrates Made of Ag-Nanoparticle Array with Tunable Sub-10 nm GapsWang, H. -H.; Liu, C. -Y.; Wu, S. -B.; Liu, N. -W.; Peng, C. -Y.; Chan, T. -H.; Hsu, C. -F.; Wang, J. -K.; Wang, Y. -L.ADVANCED MATERIALS 18,491-495
2003Molecular cloning of carboxylesterase gene and biochemical characterization of the encoded protein from Pseudomonas citronellolis ATCC 13674Chao, Y. P.; Fu, H. Y.; Wang, Y. -L.; Huang, W. -B.; Wang, J. Y.Res Microbiol 154, 521-526
2013On-chip thin film Zernike phase plate for in-focus transmission electron microscopy imaging of organic materialsKuo, P. -C.; Chen, I. -H.; Chen, C. -T.; Lee, K. -P.; Chen, C. -W.; Lin, C. -C.; Chiu, S. W. -Y.; Hsieh, Y. -F.; Wang, Y. -L.; Shiue, J.ACS Nano7(1), 465-470
-Plasmonic coupling in arrays of silver nanorods with sub-10 nm gapsBiring, S.; Wang, H. -H.; Chang, Y. -C.; Wang, J. -K.; Wang, Y. -L.
2009Plasmonic Coupling of Ag Nanoparticle Arrays with sub-10 nm Gaps: Near-Field OriginsLin, B. -Y.; Hsu, H. -C.; Teng, C. -H.; Chang, H. -C.; Wang, Y. -L.; Wang, J. -K.
2009Plasmonic Coupling of Silver Nanoparticle Arrays with sub-10 nm Gaps: Experiments and SimulationBiring, S.; Lin, B. -Y.; Hsu, H. -C.; Wang, H. -H.; Teng, C. -H.; Chang, H. -C.; Wang, Y. -L.; Wang, J. -K.
2009Plasmonic Coupling of Silver Nanoparticle Arrays with sub-10 nm Gaps: Implication for Surface-Enhanced Raman ScatteringBiring, S.; Lin, B. -Y.; Hsu, H. -C.; Wang, H. -H.; Teng, C. -H.; Chang, H. -C.; Wang, Y. -L.; Wang, J. -K.
2013Species Identification and Drug resistance Determination of Mycobacteria Using Raman SpectroscopyCheng, W. -C.; Chen, Y.; Deng, Y. -M.; Jan, T. K.; Lian, W. N.; Wang, H. H.; Lin, C. -H.; Wang, Y. -L.; Wang, J. -K.; Wang, D. -W.; Twu, J.; Jou, R.
-Surface-enhanced Raman scattering of wurtzite-type GaN(0001) and ZnO(0001)Liu, C. -Y.; Dvoynenko, M. M.; Chan, T. -S.; Wang, J. -K.; Wang, Y. -L.
-Surface-enhanced Raman scattering substrates based on anodic alumina with uniform “hot spots”Wang, H. -H.; Liu, C. -Y.; Huang, Y-C.; Liu, T. -T.; Lin, C. -H.; Wang, J. -K.; Wang, Y. -L.
-Surface-enhanced Raman scattering substrates based on anodic alumina with uniform “hot spots”Wang, H. -H.; Liu, C. -Y.; Huang, Y-C.; Liu, T. -T.; Lin, C. -H.; Wang, J. -K.; Wang, Y. -L.
Showing results 1 to 17 of 17
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