Improved assignment of vibrational modes in sum-frequency spectra in the CH stretch region for surface-bound C18 alkylsilanes
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[1] Brent A. Horn,et al. Role of nonresonant sum-frequency generation in the investigation of model liquid chromatography systems. , 2012, Analytical chemistry.
[2] M. Asplund,et al. Use of Variable Time-Delay Sum-Frequency Generation for Improved Spectroscopic Analysis , 2011 .
[3] S. Burt,et al. Limitations in the Analysis of Vibrational Sum-Frequency Spectra Arising from the Nonresonant Contribution , 2011 .
[4] K. R. Daghastanli,et al. Interaction of 10-(octyloxy) decyl-2-(trimethylammonium) ethyl phosphate with mimetic membranes and cytotoxic effect on leukemic cells. , 2010, Biochimica et biophysica acta.
[5] Tjerk P. Straatsma,et al. NWChem: A comprehensive and scalable open-source solution for large scale molecular simulations , 2010, Comput. Phys. Commun..
[6] J. Patterson,et al. Understanding the Role of Nonresonant Sum-Frequency Generation from Polystyrene Thin Films , 2010 .
[7] Lei Liu,et al. Cyclization reactions through DDQ-mediated vinyl oxazolidinone oxidation. , 2009, Organic letters.
[8] Brent A. Horn,et al. Characterization of Carbon Dioxide Mobile Phase Density Profiles in Packed Capillary Columns by Raman Microscopy , 2009, Applied spectroscopy.
[9] Yoichi Kita,et al. Synthetic studies on (+)-manzamine A: stereoselective synthesis of the tetracyclic core framework. , 2008, Organic letters.
[10] Z. Liao,et al. Structure-function relationships in high-density docosylsilane bonded stationary phases by Raman spectroscopy and comparison to octadecylsilane bonded stationary phases: effects of common solvents. , 2008, Analytical chemistry.
[11] D. Dlott,et al. Nonresonant Background Suppression in Broadband Vibrational Sum-Frequency Generation Spectroscopy , 2007 .
[12] D. Coowar,et al. Improved synthesis of tocopherol fatty alcohols and analogs: microglial activation modulators , 2006 .
[13] C. Orendorff,et al. Effect of Pressurized Solvent Environments on the Alkyl Chain Order of Octadecylsilane Stationary Phases by Raman Spectroscopy , 2006 .
[14] Matthew C. Henry,et al. Sum-frequency observation of solvent structure at model chromatographic interfaces: acetonitrile-water and methanol-water systems. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[15] C. Orendorff,et al. Structure-function relationships in high-density octadecylsilane stationary phases by Raman spectroscopy. 4. Effects of neutral and basic aromatic compounds. , 2003, Analytical chemistry.
[16] C. Orendorff,et al. Structure-function relationships in high-density octadecylsilane stationary phases by Raman spectroscopy. 3. Effects of self-associating solvents. , 2003, Analytical Chemistry.
[17] M. Linford,et al. Alkyl monolayers on silica surfaces prepared using neat, heated dimethylmonochlorosilanes with low vapor pressures , 2003 .
[18] A. Wolf,et al. In Situ Examination of the Structure of Model Reversed-Phase Chromatographic Interfaces by Sum-Frequency Generation Spectroscopy , 2003 .
[19] Xiao-qin Li,et al. Comparison of model monomeric and polymeric alkyl stationary phases on silica using sum-frequency spectroscopy. , 2003, Journal of chromatography. A.
[20] D. Hobara,et al. Chain-length-dependent change in the structure of self-assembled monolayers of n-alkanethiols on Au(111) probed by broad-bandwidth sum frequency generation spectroscopy , 2003 .
[21] C. Orendorff,et al. Structure-function relationships in high-density octadecylsilane stationary phases by Raman spectroscopy. 1. Effects of temperature, surface coverage, and preparation procedure. , 2002, Analytical Chemistry.
[22] C. Orendorff,et al. Structure-function relationships in high-density octadecylsilane stationary phases by Raman spectroscopy. 2. Effect of common mobile-phase solvents. , 2002, Analytical Chemistry.
[23] T. Furtak,et al. High-resolution sum-frequency generation from alkylsiloxane monolayers , 2002 .
[24] James R. Vyvyan,et al. Total synthesis of gibbilimbols A-D. , 2002, The Journal of organic chemistry.
[25] A. Wolf,et al. A Study of Alkyl Chain Conformational Changes in Self-Assembled n-Octadecyltrichlorosilane Monolayers on Fused Silica Surfaces , 2001 .
[26] T. Vickers,et al. Characterization of C18-bonded liquid chromatographic stationary phases by Raman spectroscopy: the effect of mobile phase composition. , 2000, Journal of chromatography. A.
[27] T. Vickers,et al. Characterization of C18-bonded liquid chromatographic stationary phases by Raman spectroscopy: the effect of temperature. , 2000, Journal of chromatography. A.
[28] F. Ozanam,et al. Fully methylated, atomically flat (111) silicon surface , 2000 .
[29] L. Wolf,et al. Conformational aspects of model chromatographic surfaces studied by sum-frequency generation , 1999 .
[30] J. Stephenson,et al. Vibrationally resolved sum-frequency generation with broad-bandwidth infrared pulses. , 1998, Optics letters.
[31] T. Chuang,et al. SELF-ASSEMBLY OF ALKYLSILOXANE MONOLAYERS ON FUSED SILICA STUDIED BY XPS AND SUM FREQUENCY GENERATION SPECTROSCOPY , 1998 .
[32] T. Chuang,et al. Sum-frequency vibrational spectroscopic study of mixed alkylsiloxane monolayers self-assembled on fused silica surface , 1997 .
[33] T. Vickers,et al. Characterization of liquid chromatographic stationary phases by Raman spectroscopy. Effect of ligand type. , 1997, Journal of chromatography. A.
[34] David L. Allara,et al. Evidence for a Unique Chain Organization in Long Chain Silane Monolayers Deposited on Two Widely Different Solid Substrates , 1995 .
[35] J. Conboy,et al. OBSERVATION OF MOLECULAR ORDERING AT THE LIQUID-LIQUID INTERFACE BY RESONANT SUM FREQUENCY GENERATION , 1995 .
[36] C. Bain. SUM-FREQUENCY VIBRATIONAL SPECTROSCOPY OF THE SOLID/LIQUID INTERFACE , 1995 .
[37] C. Bain,et al. Sum-Frequency Spectroscopy of Surfactants Adsorbed at a Flat Hydrophobic Surface , 1994 .
[38] C. Bain,et al. In-Situ Sum-Frequency Spectroscopy of Sodium Dodecyl Sulfate and Dodecanol Coadsorbed at a Hydrophobic Surface , 1994 .
[39] Wasserman,et al. X-ray specular reflection studies of silicon coated by organic monolayers (alkylsiloxanes). , 1990, Physical review. B, Condensed matter.
[40] R. Superfine,et al. Vibrational spectroscopy of a silane monolayer at air/solid and liquid/solid interfaces using sum-frequency generation , 1988 .
[41] Y. Shen,et al. Surface vibrational spectroscopy by infrared-visible sum frequency generation. , 1986, Physical review. B, Condensed matter.
[42] Krishnan Raghavachari,et al. The structure of n‐alkanes: High precision abinitio calculation and relation to vibrational spectra , 1986 .
[43] R. G. Snyder,et al. Carbon-hydrogen stretching modes and the structure of n-alkyl chains. 2. Long, all-trans chains , 1984 .
[44] R. G. Snyder,et al. C-H stretching modes and the structure of n-alkyl chains. II: Long, all-trans chains , 1984 .
[45] J. Callis,et al. Fourier transform infrared spectrometric determination of alkyl chain conformation on chemically bonded reversed-phase liquid chromatography packings , 1983 .
[46] R. G. Snyder,et al. Carbon-hydrogen stretching modes and the structure of n-alkyl chains. 1. Long, disordered chains , 1982 .
[47] W. Kaiser,et al. Vibrational lifetime and Fermi resonance in polyatomic molecules , 1981 .
[48] Samuel Krimm,et al. Vibrational spectra in the CH stretching region and the structure of the polymethylene chain , 1978 .
[49] D. C. Mckean. CHD2 spectra and Fermi resonance effects in the CH3 and CD3 stretching regions. Symmetrical CH3 groups , 1973 .
[50] N. Sheppard,et al. Anharmonicity of CH3 deformation vibrations and Fermi resonance between the symmetrical CH3 stretching mode and overtones of CH3 deformation vibrations , 1972 .
[51] Takehiko Shimanouchi,et al. Tables of molecular vibrational frequencies. Consolidated volume II , 1972 .
[52] F. Chang,et al. Reactions of Potassium t-Butoxide in Dimethyl Sulfoxide. IV.1 With Primary Tosylates and Halides* , 1965 .