TrAC-Trends Anal. Chem.
J. B. Cui;R. Jiang; S. Y. Xu; G. F. Hu; L. Y. Wang*, Cu7S4 Nanosuperlattices with Greatly Enhanced Photothermal Efficiency. Small 2015, 11, 4183-4190.
X. L. Bai;S. G. Wang; S. Y. Xu; L. Y. Wang*,Luminescent nanocarriers for simultaneous drug/gene delivery and imaging tracking.TrAC-TrendsAnal. Chem. 2015, 73, 54-63.
S. Huang; Q. He; Su Ying Xu; L. Y. Wang*, Polyaniline-Based Photothermal Paper Sensor for Sensitive and Selective Detection of 2,4,6-Trinitrotoluene (TNT). Anal. Chem. 2015, 87, 5451 – 5456.
M. Bai; Shui Na Huang; Su Ying Xu; L. Y. Wang*, Fluorescent Nanosensors via Photoinduced Polymerization ofHydrophobic Inorganic Quantum Dots for the Sensitive and Selective Detection of Nitroaromatics. Anal. Chem. 2015, 87(4), 2383-2388.
S. Y. Xu; S. Huang; Q. He; L. Y. Wang*, Upconversion nanophosphores for bioimaging. TrAC-TrendsAnal. Chem. 2015, 66, 72-79.
Y. X. Ma; S. Y. Xu; S. G. Wang; L. Y. Wang*, Luminescent molecularly imprinted polymer nanocomposites forsensitive detection. TrAC-Trends Anal. Chem. 2015, 67, 209-216.
Y. X. Ma; S. G. Wang; L. Y. Wang*, Nanomaterials for luminescence detection of nitroaromatic explosives. TrAC-Trends Anal. Chem. 2015, 65, 13-21.
S. Huang; S. Peng; Y. B. Li; J. B. Cui; H. L. Chen; L. Y. Wang*,NIR-II Fluorescence Image-Guided and pH-Responsive Nanocapsulesfor Cocktail Drug Delivery. Nano Res. 2015, 8(6): 1932–1943.
M. Bai; X. L. Bai; L. Y. Wang*, Real-Time Fluorescence Tracking of Gene Delivery via Multifunctional Nanocomposites. Anal. Chem. 2014, 86 (22), 11196-11202.
S. G. Wang; L. Y. Wang*, Lanthanide-doped nanomaterials for luminescence detection and imaging. TrAC-Trends Anal. Chem. 2014,62, 123-134.
Y. X. Ma; S. Huang; M. L. Deng; L. Y. Wang*, White Upconversion Luminescence Nanocrystals for the Simultaneous and Selective Detection of 2,4,6-Trinitrotoluene and 2,4,6-Trinitrophenol. ACS Appl.Mater. Interfaces 2014, 6 (10), 7790-7796.
M. L. Deng; L. Y. Wang*, Unexpected luminescence enhancement of upconverting nanocrystalsby cation exchange with well retained small particle size. Nano Res. 2014, 7 (5), 782-793.
S. Huang; M. Bai; L. Y. Wang*,General and Facile Surface Functionalization of Hydrophobic Nanocrystals with Poly(amino acid) for Cell Luminescence Imaging. Sci Rep 2013, 3, 2023 - 2027.
N. N. Tu; L. Y. Wang*, Surface plasmon resonance enhanced upconversion luminescence inaqueous media for TNT selective detection.Chem. Commun. 2013, 49 (56), 6319-6321.
H. Li; L. Y. Wang*, HighlySelective Detection of Polycyclic Aromatic Hydrocarbons Using Multifunctional Magnetic-Luminescent Molecularly Imprinted Polymers. ACS Appl.Mater. Interfaces 2013, 5(21), 10502-10509.
H. Li; H. J. Wang; L. Y. Wang*, Synthesis and sensing application of highly luminescent andwater stable polyaspartate functionalized LaF3 nanocrystals. J. Mater.Chem. C 2013, 1 (6), 1105-1110.
M. Y. An; J. B. Cui; Q.He; L. Y. Wang*, Down-/up-conversion luminescence nanocomposites for dual-modalcell imaging. J. Mat. Chem. B 2013, 1 (9), 1333-1339.
Y. Y. Zhao; Y. X. Ma; H. Li; L. Y. Wang*, Composite QDs@MIP Nanospheres for Specific Recognition and DirectFluorescent Quantification of Pesticides in Aqueous Media. Anal.Chem. 2012,84 (1), 386-395.
Y. X. Ma; H. Li; L. Y. Wang*, Magnetic -luminescent bifunctional nanosensors. J. Mater.Chem. 2012, 22 (36), 18761-18767.
Y. X. Ma; H. Li; S. Peng; L. Y. Wang*, Highly Selective and Sensitive Fluorescent Paper Sensor for Nitroaromatic Explosive Detection. Anal. Chem. 2012, 84 (19), 8415-8421.
M. L. Deng; N. Tu; F. Bai; L. Y. Wang*, Surface Functionalization of Hydrophobic Nanocrystals with One Particle per Micelle for Bioapplications. Chem. Mat. 2012, 24 (13), 2592-2597.
M. L. Deng; Y. X. Ma; S. Huang; G. F. Hu; L. Y. Wang*, Monodisperse upconversion NaYF4 nanocrystals: Syntheses and bioapplications. Nano Res. 2011, 4 (7), 685-694.
L. Y. Wang*; Y. Zhang; Y. Y. Zhu, One-Pot Synthesis and Strong Near-InfraredUpconversion Luminescence of Poly(acrylic acid)-Functionalized YF3:Yb3+/Er3+ Nanocrystals. Nano Res. 2010, 3 (5), 317-325.
L. Y. Wang; P. Li; J.Zhuang; F. Bai; J. Feng; X. Y. Yan; Y. D. Li*, Carboxylic acid enriched nanospheres of semiconductor nanorods for cell imaging. Angew.Chem.-Int. Edit. 2008, 47 (6), 1054-1057.
L. Y. Wang; J. W. Bai; Y.J. Li; Y. Huang*, Multifunctional nanoparticles displaying magnetization and near-IR absorption. Angew.Chem.-Int. Edit. 2008, 47 (13), 2439-2442.
L. Y. Wang; Y. D. Li*,Luminescent nanocrystals for nonenzymatic glucose concentration determination. Chem.-Eur. J. 2007, 13 (15), 4203-4207.
L. Y. Wang; Y. D. Li*,Controlled synthesis and luminescence of lanthanide doped NaYF4nanocrystals. Chem. Mat. 2007, 19 (4), 727-734.
L. Y. Wang; Y. D. Li*,Luminescent coordination compound nanospheres for water determination. Small 2007, 3 (7), 1218-1221.
L. Y. Wang; P. Li; Y. D.Li*, Down- and up-conversion luminescent nanorods. Adv. Mater. 2007,19 (20), 3304-3307.
L. Y. Wang; Y. D. Li*,Green upconversion nanocrystals for DNA detection. Chem. Commun. 2006, (24), 2557-2559.
L. Y. Wang; Y. D. Li*,Na(Y1.5Na0.5)F6 single-crystal nanorods asmulticolor luminescent materials. Nano Lett. 2006, 6 (8), 1645-1649.
L. Y. Wang; J. Bao; L.Wang; F. Zhang; Y. D. Li*, One-pot synthesis and bioapplication ofamine-functionalized magnetite nanoparticles and hollow nanospheres. Chem.-Eur. J. 2006, 12 (24), 6341-6347.
L. Y. Wang; R. X. Yan; Z.Y. Huo; L. Wang; J. H. Zeng; J. Bao; X. Wang; Q. Peng; Y. D. Li*, Fluorescence resonant energy transfer biosensor based on upconversion-luminescent nanoparticles. Angew.Chem.-Int. Edit. 2005,44 (37), 6054-6057.
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