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Spectroscopy Letters
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Volume 50, 2017 - Issue 3
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Original Articles

Multiscaling wavelet analysis of infrared and Raman data on polyethylene glycol 1000 aqueous solutions

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Pages 130-136 | Received 17 Nov 2016, Accepted 02 Feb 2017, Published online: 05 May 2017

References

  • Cerveny, S.; Alegría, Á.; Colmenero, J. Universal features of water dynamics in solutions of hydrophilic polymers, biopolymers, and small glass-forming materials. Physical Review E 2008, 77, 031803-1–031803-5.
  • Holmberg, K.; Jonsson, B.; Kronberg, B.; Lindman, B. Surfactants and Polymers in Aqueous Solution; John Wiley & Sons, Ltd.: England, 2002; 193 pp.
  • Barton, A. F.M. Handbook of Solubility Parameters and Other Cohesion Parameters; CRC Press: Boca Raton, FL, Australia, 1991; 369 pp.
  • Billmeyer, Jr, F. W. Textbook of Polymer Science; Wiley: New York, 1984; 151 pp.
  • Brandrup, J.; Immergut, E. Polymer Handbook; Wiley: New York, 1975; 1315 pp.
  • Flory, P. J. Principles of Polymer Chemistry; Cornell University Press: Ithaca, New York, 1953; 399 pp.
  • Li, W.; Kim, Y.; Lia, J.; Lee, M. Dynamic self-assembly of coordination polymers in aqueous solution. Soft Matter 2014, 10, 5231–5242.
  • Apicella, A.; Cappello, B.; Del Nobile, M. A.; La Rotonda, M. I.; Mensitieri, G.; Nicolais, L. Poly (ethylene oxide) (PEO) and different molecular weight PEO blends monolithic devices for drug release. Biomaterials 1993, 14, 83–90.
  • Cappello, B.; Del Nobile, A. M.; La Rotonda, M. I.; Mensitieri, G.;Miro, A.; Nicolais, L. Water soluble drug delivery system based on a non-biological bioadhesive polymeric system. II Farmaco 1994, 49, 809–818.
  • Chen, J.; Spear, S. K.; Huddleston, J. G.; Rogers, R. D. Polyethylene glycol and solutions of polyethylene glycol as green reaction media. Green Chemistry 2005, 7, 64–82.
  • Gonzalez-Tello, P.; Camacho, F.; Blazquez, G. Density and viscosity of concentrated aqueous solutions of polyethylene glycol. Journal of Chemical & Engineering Data 1994, 39, 611–614.
  • Harris, J. M.; Chess, R. B. Effect of pegylation on pharmaceuticals. Nature Reviews Drug Discovery 2003, 2, 214–221.
  • Viossat, B.; Greenaway, F. T.; Morgant, G.; Daran, J. C.; Dung, N. H.; Sorenson, J. R.J. J. Low-temperature (180 K) crystal structures of tetrakis-mu-(niflumato)di(aqua)dicopper(II) N,N-dimethylformamide and N,N-dimethylacetamide solvates, their EPR properties, and anticonvulsant activities of these and other ternary binuclear copper(II)niflumate complexes. Journal of Inorganic Biochemistry 2005, 99, 355–367.
  • Lascombe, M. B.; Milat, M. L.; Blein, J. P.; Panabieres, F.; Ponchet, M.; Prange, T. Crystallization and preliminary X-ray studies of oligandrin, a sterol-carrier elicitor from Pythium oligandrum. Acta Crystallographica Section D 2000, 56, 1498–1500.
  • Berejnov, V., Husseini, N. S.; Alsaied, O. A.; Thorne, R. E. Effects of cryoprotectant concentration and cooling rate on vitrification of aqueous solutions. Journal of Applied Crystallography 2006, 39, 244–251.
  • Acharya, S. A.; Acharya, V. N.; Kanika, N. D.; Tsai, A. G.M.; Intaglietta, B.; Manjula, N. Non-hypertensive tetraPEGylated canine haemoglobin: correlation between PEGylation, O-2 affinity and tissue oxygenation. Biochemical Journal 2007, 405, 503–511.
  • Braun, P. C.; Stenger, H. E.; Warriner, J. A.; Zasadzinski, K. W.; Lu, H.; Taeusch, W. A freeze-fracture transmission electron microscopy and small angle X-ray diffraction study of the effects of albumin, serum, and polymers on clinical lung surfactant microstructure. Biophysical Journal 2007, 93, 123–139.
  • Hu, T., Manjula, B. N.; Li, D. X.; Brenowitz, M.; Acharya, S. A. Influence of intramolecular cross-links on the molecular, structural and functional properties of PEGylated haemoglobin. Biochemical Journal 2007, 402, 143–151.
  • Zimmerberg, J., Parsegian, V. A. Polymer inaccessible volume changes during opening and closing of a voltage-dependent ionic channel. Nature 1986, 323, 36–39.
  • Arumugam, V.; Akalya, A.; Rajasekaran, J. F.; Balakrishnan, B. Ultrasonic studies on PEG in benzene. Journal of Polymer Materials 2000, 17, 371–376.
  • Decad, G. M.; Nikaido, H. Outer membrane of gram-negative bacteria. XII. molecular-sieving function of cell-wall. Journal of Bacteriology 1976, 128, 325–336.
  • Smith, G. D.; Bedrov, D.; Borodin, O. Conformations and chain dimensions of poly(ethylene oxide) in aqueous solution: a molecular dynamics simulation study. Journal of the American Chemical Society 2000, 122, 9548–9549.
  • Robertson, J. W.F.; Rodrigues, C. G.; Stanford, V. M.; Rubinson, K. A.; Krasilnikov, O. V.; Kasianowicz, J. J. Single-molecule mass spectrometry in solution using a solitary nanopore. Proceedings of the National Academy of Sciences USA 2007, 104, 8207–8211.
  • Krasilnikov, O. V.; Sabirov, R. Z.; Ternovsky, V. I.; Merzliak, P. G.; Muratkhodjaev, J. N. A simple method for the determination of the pore radius of ion channels in planar lipid bilayer-membranes. FEMS Microbiology and Immunology 1992, 105, 93–100.
  • Rostovtseva, T. K.; Nestorovich, E. M.; Bezrukov, S. M. Partitioning of differently sized poly(ethylene glycol)s into OmpFporin. Biophysical Journal 2002, 82, 160–169.
  • Merzlyak, P. G.; Yuldasheva, L. N.; Rodrigues, C. G.; Carneiro, C. M.M.; Krasilnikov, O. V.; Bezrukov, S. M. Polymeric nonelectrolytes to probe pore geometry: application to the a-toxin transmembrane channel. Biophysical Journal 1999, 77, 3023–3033.
  • Gibson, I. P.; Dore, J. C. Molecular Physics 1983, 48, 1019–1030.
  • Frank, H. S.; Wen, W. Y. Structural aspects of ion-solvent interaction in aqueous solutions: a suggested picture of water structure. Discussions of the Faraday Society 1957, 24, 133–140.
  • Bernal, J. D.; Fowler, R. M. A Theory of water and ionic solution, with particular reference to hydrogen and hydroxyl ions. The Journal of Chemical Physics 1993, 1, 515–548.
  • Venkatramanan, K. A Study on the molecular interaction of PEG 1000 and its blend in toluene using ultrasonic technique. International Review of Chemical Engineering 2011, 3, 308–311.
  • Pagnotta, S. E.; Ricci, M. A.; Bruni, F.; McLain, S.; Magazù, S. Water structure around trehalose. Chemical Physics 2008, 345, 159–163.
  • Efentakis, M.; Vlachou, M. Evaluation of high molecular weight polyox polymer: studies of flow properties and release rates of furosamide and captopril from controlled release hard gelatin capsules. Pharmaceutical Development and Technology 2000, 5, 339–346.
  • Devanand, K.; Selser, J. C. Asymptotic-behavior and long-range interactions in aqueous-solutions of poly(ethylene oxide). Macromolecules 1991, 24, 5943–5947.
  • Lokotosh, T. V.; Magazù, S.; Maisano, G.; Malomuzh, N. P. Nature of self-diffusion and viscosity in supercoooled liquid water. Physical Review E 2000, 62, 3572–3580.
  • Solc, K. Shape of a random-flight chain. The Journal of Chemical Physics 1971, 55, 335–344.
  • Rudnick, J.; Gaspari, G. The asphericity of random-walks. Journal of Physics A: Mathematical and General 1986, 19, L191–L193.
  • Rudnick, J.; Gaspari, G. The shapes of random-walks. Science 1987, 237, 384–389.
  • Triantafillou, M.; Kamien, R. D. Polymer shape anisotropy and the depletion interaction. Physical Review E 1999, 59, 5621–5624.
  • Haber, C.; Ruiz, S. A.; Wirtz, D. Shape anisotropy of a single random-walk polymer. Proceedings of the National Academy of Sciences USA 2002, 97, 10792–10795.
  • Doi, M.; Edwards, S. F. The Theory of Polymer Dynamics; Clarendon Press: Oxford, 1986; 105 pp.
  • Branca, C.; Magazù, S.; Maisano, G.; Migliardo, F.; Migliardo, P.; Romeo, G. Hydration study of PEG/water mixtures by quasi elastic light scattering, acoustic and rheological measurements. Journal of Physical Chemistry B 2002, 106, 10272–10276.
  • Branca, C.; Magazù, S.; Maisano, G.; Migliardo, P.; Villari, V. Conformational distribution of poly(ethylene oxide) in molten phase and in aqueous solution by quasi-elastic and inelastic light scattering. Journal of Physics: Condensed Matter 1998, 10, 10141–10157.
  • Moroni, A.; Ghebresellassie, I. Application of poly (oxyethylene) homopolymers in sustained- release solid formulations. Drug Development and Industrial Pharmacy 1995, 21, 1411–1428.
  • Faraone, A.; Magazù, S.; Maisano, G.; Ponterio, R.; Villari, V. Experimental evidence of slow dynamics in semidilute polymer solutions. Macromolecules 1999, 32, 1128–1133.
  • Walrafen, G. Raman and infrared spectral investigations of water structure. In Water: A Comprehensive Treatise; Frank, F. Ed.; Plenum: London, 1972; 67 pp.
  • Rull, F.; de Saja, J. A. Effect of electrolyte concentration on the Raman spectra of water in aqueous solutions. Journal of Raman Spectroscopy 1986, 17, 167–172.
  • Rull, F.; Prieto, C.; Sobrón, F. Polarized Raman spectra of aqueous solutions and band component analysis. Journal of Molecular Structure 1986, 143, 305–308.
  • Mundy, W. C.; Gutierrez, I.; Speeding, F. H. Raman intensities of the uncoupled OD oscillators in liquid water. The Journal of Chemical Physics 1973, 59, 2173–2182.
  • Savatinova, I.; Anachkova, E.; Nikolaeva, R. Raman scattering of H2O/D2O solutions. Spectroscopy Letters 1986, 19, 167–178.
  • Koenig, J. L. Chemical Microstrucutre of Polymer Chains; Wiley: New York, 1992; 530 pp.
  • Painter, P. C.; Coleman, M. M.; Koenig, J. L. The theory of Vibrational Spectroscopy and Its Application to Polymeric Materials; Wiley: New York, 1982, 530 pp.
  • Siesler, H. W.; Holland-Moritz, K. Infrared and Raman Spectroscopy of Polymers; Dekker: New York, 1980; 389 pp.
  • Branca, C.; Magazù, S.; Maisano, G.; Migliardo, F. Vibrational and relaxational contributions in disaccharide/H2O glass formers. Physical Review B 2001, 64, 224204-1–224204-8.
  • Caccamo, M. T.; Magazù, S. Tagging the oligomer-to-polymer crossover on EG and PEGs by infrared and Raman spectroscopies and by wavelet cross-correlation spectral analysis. Vibrational Spectroscopy 2016, 85, 222–227.
  • Grinsted, A.; Moore, J. C.; Jevrejeva, S. Application of the cross wavelet transform and wavelet coherence to geophysical time series. Nonlinear Processes in Geophysics 2004, 11, 561–566.
  • Li, H., Nozaki, T. Wavelet analysis for the plane turbulent jet (analysis of large Eddy structure). International Journal Series B Fluids and Thermal Engineering 1997, 40, 58–66.
  • Bower, D. I.; Maddams, W. F. The Vibrational Spectroscopy of Polymers; Cambridge University Press: New York, 1989; 38 pp.
  • Branca, C.; Magazù, S.; Maisano, G.;Villari, V.; Sokolov, A. P. The fragile character and structure-breaker role of alpha, alpha trehalose: viscosity and Raman scattering findings. Journal of Physics: Condensed Matter 1999, 11, 3823–3832.
  • Colemann, M. M.; Graf, J. F.; Painter, P. C. Specific Interactions and the Miscibility of Polymer Blends; Technomic: Lancaster, PA, 1991; 221 pp.
  • Kienberger, F.; Pastushenko, V. P.; Kada, G.; Gruber, H. J.; Riener, C.; Schindler, H.; Hinterdorfer, P. Static and dynamical properties of single poly(ethylene glycol) molecules investigated by force spectroscopy. Single Molecules 2000, 2, 123–128.
  • Migliardo, F.; Magazù, S.; Caccamo, M. T. Infrared, Raman and INS studies of poly-ethylene oxide oligomers. Journal of Molecular Structure 2013, 1048, 261–266.
  • Magazù. NMR, static and dynamic light and neutron scattering investigations on polymeric aqueous solutions. S. Journal of Molecular Structure 2000, 523, 47–59.
  • Magazù, S. IQENS –Dynamic light scattering complementary on hydrogenous systems. Physica B 1996, 226, 92–106.
  • Hager, S. L.; Macrury, T. B. Investigation of phase behavior and water binding in poly(alkylene oxide) solutions. Journal of Applied Polymer Science 1980, 25, 1559–1571.
  • Giguére, P. A.; Pigeon-Gosselin, M. Journal of Raman Spectroscopy 1986, 17, 341–344.
  • Wood, D. W. Computer Simulations of Water and Aqueous Solutions. In Water: A Comprehensive Treatise; Frank, F. Ed., Plenum: London, 1979; 65 pp.
  • Hudgins, L.; Friehe, C. A.; Mayer, M. E. Wavelet transforms and atmospheric turbulence. Physical Review Letters 1993, 71, 3279–3282.
  • Magazù, S.; Migliardo, F.; Vertessy, B. G.; Caccamo, M. T. Investigations of homologous disaccharides by elastic incoherent neutron scattering and wavelet multiresolution analysis. Chemical Physics 2013, 424, 56–61.
  • Migliardo, F.; Caccamo, M. T.; Magazù, S. Elastic incoherent neutron scatterings wavevector and thermal analysis on glass-forming homologous disaccharides. Journal of Non Crystalline Solids 2013, 378, 144–151.
  • Migliardo, F.; Caccamo, M. T.; Magazù, S. Thermal analysis on bioprotectant disaccharides by elastic incoherent neutron scattering. Food Biophysics 2014, 9, 99–104.
  • Magazù, S.; Migliardo, F.; Caccamo, M. T. Innovative wavelet protocols in analysing elastic incoherent neutron scattering. The Journal of Physical Chemistry B 2012, 116, 9417–9423.
  • Sifuzzaman, M.; Islam, M. R.; Ali, M. Z. Application of wavelet transform and its advantages compared to Fourier transform. Journal of Physical Sciences 2009, 13, 121–134.
  • Mallat, S. A wavelet Tour of Signal Processing; Academic Press: New York, 1999; 47 pp.
  • Jenkins, G. M.; Watts, D. G. Spectral Analysis and Its Applications; Holden-Day: Canada, 1968; 89 pp.
  • Torrence, C.; Compo, G. P. A practical guide to wavelet analysis. Bulletin of the American Meteorological Society 1998, 79, 61–78.
  • Tang, B.; Liu, G. P.; Song, T. Wind turbine fault diagnosis based on Morlet wavelet transformation and Wigner-Ville distribution. Renewable Energy 2010, 35, 2862–2866.
  • Kasiviswanathan, K. S.; He, J.; Sudheer, K. P.; Joo-Hwa Tay, T. J. Potential application of wavelet neural network ensemble to forecast streamflow for flood management. Hydrology 2016, 536, 161–173.
  • Yi, H.; Shu, H. The improvement of the Morlet wavelet for multi-period analysis of climate data. Comptes Rendus Geoscience 2012, 344, 483–497.
  • Graener, H.; Ye, T. Q.; Laubereau, A. Ultrafast dynamics of hydrogen bonds directly observed by time‐resolved infrared spectroscopy. The Journal of Chemical Physics 1989, 90, 3413–3416.
  • Graener, H.; Ye, T. Q.; Laubereau, A. Ultrafast vibrational predissociation of hydrogen bonds: mode selective infrared photochemistry in liquids. The Journal of Chemical Physics 1989, 91, 1043–1046.
  • Malenkov, G. G.; Tytik, D. L.; Zheligovskaya, E. A. Hydrogen bonds in computer-simulated water. Journal of Molecular Liquid 1999, 82, 27–38.
  • Rahman, A.; Stillinger, F. H. Molecular dynamics study of liquid water. Journal of Chemical Physics 1971, 55, 3336–3359.
  • Davis, C. M.; Litovitz, T. A. Two‐state theory of the structure of water. Journal of Chemical Physics 1965, 42(7), 2563–2576.
  • Tanaka, H. Simple physical model of liquid water. The Journal of Chemical Physics 2000, 112, 799–809.
  • Wiafe-Aketen, J.; Bansil, R. Intermolecular coupling in HOD solutions. The Journal of Chemical Physics 1983, 78, 7132–7137.
  • Stillinger, F. H.; Rahman, A. Improved simulation of liquid water by molecular dynamics. Journal of Chemical Physics 1974, 60, 1545–1557.
  • Pangali, C.; Rao, M.; Berne, B. A Monte Carlo study of structural and thermodynamic properties of water: dependence on the system size and on the boundary conditions. Journal of Molecular Physics 1980, 49, 661–680.

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