Synchrotron X-Ray Diffraction Studies on Crystalline Domains in Urea–Formaldehyde Resins at Low Molar Ratio
Author:
Funder
National Research Foundation of Korea
Publisher
The Korean Society of Wood Science Technology
Subject
Industrial and Manufacturing Engineering,Materials Science (miscellaneous)
Link
http://www.woodj.org/download/download_pdf?doi=10.5658/WOOD.2022.50.5.353
Reference45 articles.
1. Baruchel, J., Di Michiel, M., Lafford, T., Lhuissier, P., Meyssonnier, J., Nguyen-Thi, H., Philip, A., Pernot, P., Salvo, L., Scheel, M. 2013. Synchrotron X-ray imaging for crystal growth studies. Comptes Rendus Physique 14(2-3): 208-220. 10.1016/j.crhy.2012.10.010
2. Despres, A., Pizzi, A. 2006. Colloidal aggregation of aminoplastic polycondensation resins: Urea–formaldehyde versus melamine–formaldehyde and melamine–urea–formaldehyde resins. Journal of Applied Polymer Science 100(2): 1406-1412. 10.1002/app.23230
3. Drnovšek, N., Kocen, R., Gantar, A., Drobnič-Košorok, M., Leonardi, A., Križaj, I., Rečnik, A., Novak, S. 2016. Size of silk fibroin β-sheet domains affected by Ca2+. Journal of Materials Chemistry B 4(40): 6597-6608. 10.1039/C6TB01101B 32263703
4. Ferg, E.E., Pizzi, A., Levendis, D.C. 1993. 13C NMR analysis method for urea–formaldehyde resin strength and formaldehyde emission. Journal of Applied Polymer Science 50(5): 907-915. 10.1002/app.1993.070500519
5. Han, H., Lee, S., Yang, S., Choi, C., Kang, S. 2019. Evaluation of formaldehyde emission from wood-based panels using accelerated collection method. Journal of the Korean Wood Science and Technology 47(2): 129-144. 10.5658/WOOD.2019.47.2.129
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