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Original Articles

Characterizing Molecular Structure of Water Adsorbed by Cellulose Nanofiber Film Using in situ Micro-FTIR Spectroscopy

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REFERENCES

  • Balea, A.; Merayo, N.; Fuente, E.; Delgado-Aguilar, M.; Mutje, P.; Blanco, A.; Negro, C. Valorization of corn stalk by the production of cellulose nanofibers to improve recycled paper properties. Bioresources 2016, 11, 3416–3431.
  • Yue, Y.; Zhou, C.; French, A.D.; Xia, G.; Han, G.; Wang, Q.; Wu, Q. Comparative properties of cellulose nano-crystals from native and mercerized cotton fibers. Cellulose 2012, 19, 1173–1187.
  • Zhang, L.Y.; Tsuzuki, T.; Wang, X.G. In preparation and characterization on cellulose nanofiber Film. Materials Science Forum 2010, 1760–1763.
  • Matsumoto, C. Mechanical effect of acetic acid lignin adsorption on honeycomb-patterned cellulosic films. Journal of Wood Chemistry and Technology 2010, 30, 348–359.
  • Vogt, B.D.; Soles, C.L.; Lee, H.J.; Lin, E.K.; Wu, W.L. Moisture absorption into ultrathin hydrophilic polymer films on different substrate surfaces. Polymer 2005, 46, 1635–1642.
  • Isa, A.; Minamino, J.; Mizuno, H.; Suzuki, S.; Kojima, Y.; Ito, H.; Makise, R.; Okamoto, M.; Hasegawa, T. Increased water resistance of bamboo flour/polyethylene composites. Journal of Wood Chemistry and Technology 2013, 33, 208–216.
  • Lequin, S.; Chassagne, D.; Karbowiak, T.; Gougeon, R.; Brachais, L.; Bellat, J. Adsorption equilibria of water vapor on cork. Journal of Agricultural and Food Chemistry 2010, 58, 3438–3445.
  • Hill, C.A.S.; Norton, A.; Newman, G. The water vapor sorption behavior of natural fibers. Journal of Applied Polymer Science 2009, 112, 1524–1537.
  • Gouanvé, F.; Marais, S.; Bessadok, A.; Langevin, D.; Morvan, C.; Métayer, M. Study of water sorption in modified flax fibers. Journal of Applied Polymer Science 2006, 101, 4281–4289.
  • Zografi, G.; Kontny, M.J.; Yang, A.Y.S.; Brenner, G.S. Surface area and water vapor sorption of macrocrystalline cellulose. International Journal of Pharmaceutics 1984, 18, 99–116.
  • Vogt, B.D.; Soles, C.L.; Lee, H.; Lin, E.K.; Wu, W. Moisture absorption and absorption kinetics in polyelectrolyte films: influence of film thickness. Langmuir 2004, 20, 1453–1458.
  • Sugimoto, H.; Miki, T.; Kanayama, K.; Norimoto, M. Dielectric relaxation of water adsorbed on cellulose. Journal of Non-Crystalline Solids 2008, 354, 3220–3224.
  • Hatakeyama, H.; Hatakeyama, T. Interaction between water and hydrophilic polymers. Thermochimica Acta 1998, 308, 3–22.
  • Grunin, Y.B.; Grunin, L.Y.; Masas, D.S.; Talantsev, V.I.; Sheveleva, N.N. Proton magnetic relaxation study of the thermodynamic characteristics of water adsorbed by cellulose fibers. Russian Journal of Physical Chemistry A 2016, 90, 2249–2253.
  • Newman, R.H.; Davidson, T.C. Molecular conformations at the cellulose-water interface. Cellulose 2004, 11, 23–32.
  • Hartley, I.; Avramidis, S.; MacKay, A. H-NMR studies of water interactions in sitka spruce and western hemlock: moisture content determination and second moments. Wood Science and Technology 1996, 30, 141–148.
  • Belbekhouche, S.; Bras, J.; Siqueira, G.; Chappey, C.; Lebrun, L.; Khelifi, B.; Marais, S.; Dufresne, A. Water sorption behavior and gas barrier properties of cellulose whiskers and microfibrils films. Carbohydrate Polymers 2011, 83, 1740–1748.
  • Xie, Y.; Hill, C.A.S.; Jalaludin, Z.; Sun, D. The water vapour sorption behaviour of three celluloses: analysis using parallel exponential kinetics and interpretation using the Kelvin-Voigt viscoelastic model. Cellulose 2011, 18, 517–530.
  • Célino, A.; Goncalves, O.; Jacquemin, F.; Freour, S. Qualitative and quantitative assessment of water sorption in natural fibres using ATR-FTIR spectroscopy. Carbohydrate Polymers 2014, 101, 163–170.
  • Hofstetter, K.; Hinterstoisser, B.; Salmén, L. Moisture uptake in native cellulose-the roles of different hydrogen bonds: a dynamic FT-IR study using deuterium exchange. Cellulose 2006, 13, 131–145.
  • Wehbe, K.; Filik, J.; Frogley, M.; Cinque, G. The effect of optical substrates on micro-FTIR analysis of single mammalian cells. Analytical and Bioanalytical Chemistry 2013, 405, 1311–1324.
  • Olsson, A.; Salmen, L. The association of water to cellulose and hemicellulose in paper examined by FTIR spectroscopy. Carbohydrate Research 2004, 339, 813–818.
  • Ping, Z.H.; Nguyen, Q.T.; Chen, S.M.; Zhou, J.Q.; Ding, Y.D. States of water in different hydrophilic polymers-DSC and FTIR studies. Polymer 2001, 42, 8461–8467.
  • Haxaire, K.; Maréchal, Y.; Milas, M.; Rinaudo, M. Hydration of polysaccharide hyaluronan observed by IR spectrometry. I. Preliminary experiments and band assignments. Biopolymers 2003, 72, 10–20.
  • Kachrimanis, K.; Noisternig, M.F.; Griesser, U.J.; Malamataris, S. Dynamic moisture sorption and desorption of standard and silicified microcrystalline cellulose. European Journal of Pharmaceutics and Biopharmaceutics 2006, 64, 307–315.
  • Berthold, J.; Olsson, R.O.; Salmén, L. Water sorption to hydroxyl and carboxylic acid groups in carboxymethylcellulose (CMC) studied with NIR-spectroscopy. Cellulose 1998, 5, 281–298.
  • Rautkari, L.; Hill, C.A.S.; Curling, S.; Jalaludin, Z.; Ormondroyd, G. What is the role of the accessibility of wood hydroxyl groups in controlling moisture content? Journal of Materials Science 2013, 48, 6352–6356.
  • Han, J.; Zhou, C.; Wu, Y.; Liu, F.; Wu, Q. Self-assembling behavior of cellulose nanoparticles during freeze-drying: effect of suspension concentration, particle size, crystal structure, and surface charge. Biomacromolecules 2013, 14, 1529–1540.
  • Liu, Y.; Yang, Z.; Desyaterik, Y.; Gassman, P.L.; Wang, H.; Laskin, A. Hygroscopic behavior of substrate-deposited particles studied by micro-FT-IR spectroscopy and complementary methods of particle analysis. Analytical Chemistry 2008, 80, 633–642.
  • Wang, F.; Zhao, L.J.; Zhang, Y.H. Crystallization dynamics of supersaturated NaClO4 aerosols studied by high-speed photography. Science Bulletin 2008, 53, 2139–2144.
  • Guo, J.; Song, K.; Salmen, L.; Yin, Y., Changes of wood cell walls in response to hygro-mechanical steam treatment. Carbohydrate Polymers 2015, 115, 207–214.
  • Zhao, N.; Lamichhane, H.P.; Hastings, G. Comparison of calculated and experimental isotope edited FTIR difference spectra for purple bacterial photosynthetic reaction centers with different quinones incorporated into the Q(A) binding site. Frontiers in Plant Science 2013, 4, 328.
  • Guo, X.; Shou, J.J.; Zhang, Y.H.; Reid, J.P. Micro-Raman analysis of association equilibria in supersaturated NaClO4 droplets. Analyst 2010, 135, 495–502.
  • Guo, X.; Qing, Y.; Wu, Y.; Wu, Q. Molecular association of adsorbed water with lignocellulosic materials examined by micro-FTIR spectroscopy. International Journal of Biological Macromolecules 2015, 83, 117–125.
  • Guo, X.; Tan, S.; Pang, S.; Zhang, Y., Measurement of the association constants through micro-Raman spectra of supersaturated lithium perchlorate droplets. Science China Chemistry 2013, 56, 1633–1640.
  • Wandlowski, T.; Ataka, K.; Pronkin, S.; Diesing, D., Surface enhanced infrared spectroscopy—Au(1 1 1–20 nm)/sulphuric acid—new aspects and challenges. Electrochimica Acta 2004, 49, 1233–1247.
  • Oh, S.Y.; Yoo, D.I.; Shin, Y.; Kim, H.C.; Kim, H.Y.; Chung, Y.S.; Park, W.H.; Youk, J.H. Crystalline structure analysis of cellulose treated with sodium hydroxide and carbon dioxide by means of X-ray diffraction and FTIR spectroscopy. Carbohydrate Research 2005, 340, 2376–2391.
  • Tashiro, K.; Kobayashi, M. Theoretical evaluation of three-dimensional elastic constants of native and regenerated celluloses: role of hydrogen bonds. Polymer 1991, 32, 1516–1526.
  • Lin, S.Y.; Wang, S.L.; Wei, Y.S.; Li, M.J. Temperature effect on water desorption from methylcellulose films studied by thermal FT-IR microspectroscopy. Surface Science 2007, 601, 781–785.
  • Smedley, S.B.; Chang, Y.; Bae, C.; Hickner, M.A. Measuring water hydrogen bonding distributions in proton exchange membranes using linear Fourier Transform Infrared spectroscopy. Solid State Ionics 2015, 275, 66–70.
  • Scherer, J.R.; Go, M.K.; Kint, S. Raman spectra and structure of water from −10 to 90.deg. Journal of Physical Chemistry 1974, 78, 1304–1313.
  • Wei, Z.F.; Zhang, Y.H.; Zhao, L.J.; Junhua Liu, A.; Li, X.H. Observation of the first hydration layer of isolated cations and anions through the FTIR-ATR difference spectra. The Journal of Physical Chemistry A 2005, 109, 1337–1342.
  • Carey, D.M.; Korenowski, G.M. Measurement of the Raman spectrum of liquid water. The Journal of Chemical Physics 1998, 108, 2669–2675.
  • Dong, J. L.; Li, X.H.; Zhao, L.J.; Xiao, H.S.; Wang, F.; Guo, X.; Zhang, Y.H. Raman observation of the interactions between NH4+, SO42−, and H2O in supersaturated (NH4)2SO4 droplets. The Journal of Physical Chemistry B 2007, 111, 12170–12176.

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