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Author:Wu, H.

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Desai, S.R.; Wu, H.; Wang, L.-S., Vibrationally Resolved Photoelectron Spectroscopy of AlO- and AlO2-, Int. J. Mass Spectrom. Ion Proc., 1996, 159, 1-3, 75, https://doi.org/10.1016/S0168-1176(96)04443-6 . [all data]

Wu, H.; Desai, R.; Wang, L.-S., Observation and Photoelectron Spectroscopic Study of Novel Mono- and Di-iron Oxide Molecules: FeOy- (y=1-4) and Fe2Oy- (y=1-5), J. Am. Chem. Soc., 1996, 118, 22, 5296, https://doi.org/10.1021/ja954153b . [all data]

Nicholas, J.B.; Fan, J.; Wu, H.; Colson, S.D.; Wang, L., A Combined DFT and Photoelectron Spectroscopic Study of Ge2O2, J. Chem. Phys., 1995, 102, 20, 8277, https://doi.org/10.1063/1.468959 . [all data]

Wu, H.; Desai, S.R.; Wang, L., Two Isomers of CuO2: The CU(O2) complex and the Copper Dioxide, J. Chem. Phys., 1995, 103, 10, 4363, https://doi.org/10.1063/1.470676 . [all data]

Desai, S.R.; Wu, H.; Rohlfing, C.M.; Wang, L.-S., A Study of the Structure and Bonding of Small Aluminum Oxide Clusters by Photoelectron Spectroscopy: AlxOy- (x=1-2, y=1-5), J. Chem. Phys., 1997, 106, 4, 1309, https://doi.org/10.1063/1.474085 . [all data]

Wu, H.; Wang, L.-S., A Study of Nickel Monoxide (NiO), Nickel Dioxide (NiO2) and Ni(O2) Complex by Anion Photoelectron Spectroscopy, J. Chem. Phys., 1997, 107, 1, 16, https://doi.org/10.1063/1.474362 . [all data]

Wu, H.; Li, X.; Wang, X.-B.; Ding, C.-F.; Wang, L.-S., Al3Oy (y=0-5) Clusters: Sequential Oxidation, Metal-to-oxide Transformation, and Photoisomerization., J. Chem. Phys., 1998, 109, 2, 449, https://doi.org/10.1063/1.476583 . [all data]

Wang, L.S.; Wu, H.; Desai, S.L.; Fan, J.; Colson, S.D., A Photoelectron Spectroscopic Study of Small Silicon Oxide Clusters: SiO2, Si2O3, and Si2O4, J. Phys. Chem., 1996, 100, 21, 8697, https://doi.org/10.1021/jp9602538 . [all data]

Wu, H.; Desai, S.R.; Wang, L., Chemical Bonding between Cu and Oxygen - Copper Oxides versus O2 Complexes: A Study of CuOx(x=0-6) Species by Anion Photoelectron Spectroscopy, J. Phys. Chem., 1997, 101, 11, 2103, https://doi.org/10.1021/jp9631442 . [all data]

Wu, H.; Wang, L.-S., Electronic Structures of Titanium Oxide Clusters: TiOy (y=1-3) and (TiO2)n (n=1-4), J. Phys. Chem., 1997, 107, 20, 8221, https://doi.org/10.1063/1.475026 . [all data]

Wu, H.; Wang, L.-S., A Photoelectron Spectroscopic Study of Monovanadium Oxide Anions (VOx-, x=1-4), J. Phys. Chem., 1998, 108, 13, 5310, https://doi.org/10.1063/1.475966 . [all data]

Wang, L.S.; Wu, H.; Desai, S.R.; Lou, L., Electronic Structure of Small Copper Oxide Clusters: From Cu2O to Cu2O4, Phys. Rev. B: Cond. Matt., 1996, 53, 12, 8028, https://doi.org/10.1103/PhysRevB.53.8028 . [all data]

Wang, L.S.; Wu, H.; Cheng, H., Photoelectron Spectroscopy of Small Chromium Clusters: Observation of Even-Odd Alternation and Theoretical Interpretation, Phys. Rev. B: Cond. Matt., 1997, 55, 19, 12884, https://doi.org/10.1103/PhysRevB.55.12884 . [all data]

Wang, L.S.; Wu, H.; Desai, S.R., Sequential Oxygen Atom Chemisorption on Surfaces of Small Iron Clusters, Phys. Rev. Lett., 1996, 76, 25, 4853, https://doi.org/10.1103/PhysRevLett.76.4853 . [all data]

Wang, L.S.; Nicholas, J.B.; Dupuis, M.; Wu, H.; Colson, S.D., Si3Oy(y=1-6) Clusters: Models for Oxidation of Silicon Surfaces and Defect Sites in Bulk Oxide Materials, Phys. Rev. Lett., 1997, 78, 23, 4450, https://doi.org/10.1103/PhysRevLett.78.4450 . [all data]

Li, X.; Wu, H.; Wang, X.; Wang, L., s-p Hybridization and Electron Shell Structures in Aluminum Clusters: A photoelectron Spectroscopy Study, Phys. Rev. Lett., 1998, 81, 9, 1909, https://doi.org/10.1103/PhysRevLett.81.1909 . [all data]

Wu, H.; Desai, S.R.; Wang, L., Electronic Structure of Small Titanium Clusters: Emergence and Evolution of the 3d Band, Phys. Rev. Lett. (1996), 1996, 76, 2, 212, https://doi.org/10.1103/PhysRevLett.76.212 . [all data]

Wu, H.; Desai, S.R.; Wang, L., Evolution of the Electronic Structure of Small Vanadium Clusters from Molecular to Bulklike, Phys. Rev. Lett. (1996), 1996, 77, 12, 2436, https://doi.org/10.1103/PhysRevLett.77.2436 . [all data]

Wu, H.; Wang, L.-S., Photoelectron Spectroscopy and Electronic Structure of ScO, J. Phys. Chem. A, 1998, 102, 46, 9129, https://doi.org/10.1021/jp982588q . [all data]

Shen, M.; Xiang, P.; Wu, H.; Shen, B.; Huang, Z., Detection of antidepressant and antipsychotic drugs in human hair, Forensic Sci. Int., 2002, 126, 2, 153-161, https://doi.org/10.1016/S0379-0738(02)00051-8 . [all data]

Li, C.; Wu, H.; Yang, L.; ren, Y., Study of the composition of ginger oil from Laifeng, Flavour Fragr. Cosmetics, 2002, 5, 15-17. [all data]

Yang, H.; Zhao, C.; Wang, X.; Liang, Y.; Zeng, Y.; Wu, H.; Xu, H.; Lu, H., Chromatographic fingerprint investigation for quality control evaluation and control of Shengui hair-growth tincture, Planta Med., 2010, 76, 04, 372-377, https://doi.org/10.1055/s-0029-1186140 . [all data]

Chen, C.-C.; Wu, H.-C.; Tseng, C.-M.; Yang, Y.-H.; Chen, Y.-T., One- and two-photon excitation vibronic spectra of 2-methylallyl radical at 4.6--5.6 eV, J. Chem. Phys., 2003, 119, 1, 241, https://doi.org/10.1063/1.1576381 . [all data]

Wu, H.B.; Wang, L.S., Photoelectron spectroscopy and electronic structure of ScOn- (n = 1-4) and YOn- (n = 1-5): Strong electron correlation effects in ScO- and YO-, J. Phys. Chem. A, 1998, 102, 46, 9129-9135, https://doi.org/10.1021/jp982588q . [all data]

Wu, H.H.; Shemansky, D.E., Electronic transition moment of the N2+(A2Πu-X2Σg+) system, J. Chem. Phys., 1976, 64, 1134. [all data]

Wu, H.L.; Benesch, W., Evidence for the 3Δu → B3Πg transition in N2, Phys. Rev., 1968, 172, 31. [all data]

Wu, H.S.; Hagewiesche, D.; Sandler, S.I., Liquid-vapor equilibrium. N,N-dimethylmethanamide - 2-propanol system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1992, No. 1, 4-6. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Isothermal Vapor-Liquid Equil. of Binary Mixtures Containing Morpholine morpholine, J. Chem. Eng. Data, 1991, 36, 127. [all data]

Wu, H.S.; Pividal, K.A.; Sandler, S.I., Vapor-liquid equilibria of hydrocarbons and fuel oxygenates, J. Chem. Eng. Data, 1991, 36, 418-21. [all data]

Wu, H.S.; Plvldal, K.A.; Sandler, S.I., Vapor-liquid equilibria of hydrocarbons and fuel oxygenates., J. Chem. Eng. Data, 1991, 36, 418. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Pyrrolidine-cyclohexane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 2, 111. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Pyrrolidine-cyclohexane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 2, 112. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Pyrrolidine-oxolane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 2, 114. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Pyrrolidine-oxolane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 2, 115. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Pyrrolidine-ethanol system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 2, 117. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Pyrrolidine-ethanol system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 2, 118. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Excess Gibbs energy. Pyrrolidine-cyclohexane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 2, 113. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Excess Gibbs energy. Pyrrolidine-oxolane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 2, 116. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Excess Gibbs energy. Pyrrolidine-ethanol system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 2, 119. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Morpholine-octane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 3, 207. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Morpholine-octane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 3, 208. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Morpholine-cyclooctane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 3, 210. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Morpholine-cyclooctane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 3, 211. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Morpholine - 1-butanol system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 3, 213. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Liquid-vapor equilibrium. Morpholine - 1-butanol system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 3, 214. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Excess Gibbs energy. Morpholine-octane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 3, 209. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Excess Gibbs energy. Morpholine-cyclooctane system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 3, 212. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Excess Gibbs energy. Morpholine - 1-butanol system, Int. DATA Ser., Sel. Data Mixtures, Ser. A, 1990, No. 3, 215. [all data]

Wu, H.S.; Locke, W.E.; Sandler, S.I., Isothermal Vapor-Liquid Equilibrium of Binary Mixt. Containing Pyrrolidine, J. Chem. Eng. Data, 1990, 35, 169. [all data]

Wu, H.S.; Sandler, S.I., Vapor-Liquid Equilibrium of 1,3-dioxolane Systems, J. Chem. Eng. Data, 1989, 34, 209. [all data]

Wu, H.S.; Hagewiesche, D.; Sandler, S.I., Vapor-liquid equilibria of 2-propanol + water + N,N-dimethyl formamide, Fluid Phase Equilib., 1988, 43, 77. [all data]

Wu, H.S.; Sandler, S.I., Vapor-Liquid Equilibria of Tetrahydrofuran Systems, J. Chem. Eng. Data, 1988, 33, 157. [all data]

Wu, H.S.; Sandler, S.I., Vapor-Liquid Equilibria for Binary Mistures of Butyl Ether with 2-Furaldehyde and with 2-, 3-, and 4-Heptanone, J. Chem. Eng. Data, 1988, 33, 316. [all data]

Hauschild, T.; Wu, H.S.; Sandler, S.I., Vapor-Liquid Equilibrium of the Mixtures 2-Furaldehyde/1-Butanol and 2-Furaldehyde/4-methyl-2-pentanone, J. Chem. Eng. Data, 1987, 32, 226. [all data]

Wu, H.Y.; Wahlbeck, P.G., Vapor pressures of TiO(g) in equilibrium with Ti2O3(s) Ti3O5(s, β); dissociation energy of TiO(g), J. Chem. Phys., 1972, 56, 4534. [all data]