Academic literature on the topic '3-triethoxy'

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Journal articles on the topic "3-triethoxy"

1

Voronkov, M. G., O. S. Stankevich, and �. I. Dubinskaya. "Triethoxy(3-isothiocyanatopropyl)silane." Bulletin of the Russian Academy of Sciences Division of Chemical Science 41, no. 11 (1992): 2126–27. http://dx.doi.org/10.1007/bf00863387.

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2

VORONKOV, M. G., O. S. STANKEVICH, and E. I. DUBINSKAYA. "ChemInform Abstract: Triethoxy(3-isothiocyanatopropyl)silane." ChemInform 25, no. 29 (2010): no. http://dx.doi.org/10.1002/chin.199429229.

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3

Song, Wei, Wenbang Wei, Dandan Wang, and Shuangbao Zhang. "Preparation and properties of new plywood composites made from surface modified veneers and polyvinyl chloride films." BioResources 12, no. 4 (2017): 8320–39. http://dx.doi.org/10.15376/biores.12.4.8320-8339.

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To reduce the formaldehyde emissions of plywood used in furniture and interior decorations, new plywood composites made from surface modified veneers and polyvinyl chloride films were developed. These films were used as formaldehyde-free adhesives, and the veneer surfaces were modified with 3-aminopropyl(triethoxy)silane to enhance the compatibility with the films. Hot-pressing of composites was optimized using a response surface methodology. The effects of 3-aminopropyl(triethoxy)silane modification on various properties of veneers and composites were studied by Fourier transform infrared spectroscopy, contact angle, physico-mechanical, scanning electron microscope, dynamic mechanical, and thermogravimetric analyses. The optimum hot-pressing process for the composites was 183 °C (temperature), 74 s/mm (duration), and 312.5 g/m2 (adhesive). The modification with 3-aminopropyl(triethoxy)silane enhanced the hydrophobicity of veneer surfaces and improved the interfacial adhesion and physico-mechanical properties of composites. Adding 3% 3-aminopropyl(triethoxy)silane resulted in approximately 40% of decrease in water adsorption of composites and 30% increase in wet shear strength. The 3-aminopropyl(triethoxy)silane modification also improved the thermal stability of composites. The physico-mechanical properties of both the unmodified and modified composites met the requirements in Chinese national standard GB/T 9846 (2015) for the water-resistant plywood, indicating the potential of proposed composites as new building materials.
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4

Ju, Honghee, Euisub Jang, Chan Young Park, Won-Ki Lee, Taekyun Kim, and Jae-Hwan Chun. "Effect of 3-Isocaynatopropyl Triethoxy Silane on PU Adhesive." Adhesion and Interface 14, no. 1 (2013): 36–42. http://dx.doi.org/10.17702/jai.2013.14.1.036.

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5

Vandenberg, Elaine T., Lars Bertilsson, Bo Liedberg, et al. "Structure of 3-aminopropyl triethoxy silane on silicon oxide." Journal of Colloid and Interface Science 147, no. 1 (1991): 103–18. http://dx.doi.org/10.1016/0021-9797(91)90139-y.

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6

Chuah, Yon Jin, Shreyas Kuddannaya, Min Hui Adeline Lee, Yilei Zhang, and Yuejun Kang. "The effects of poly(dimethylsiloxane) surface silanization on the mesenchymal stem cell fate." Biomaterials Science 3, no. 2 (2015): 383–90. http://dx.doi.org/10.1039/c4bm00268g.

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7

Vítek, Josef, Markéta Urbanová, Zdeněk Bastl, et al. "Laser induced decomposition of 3-pyridinyl(trimethyl)-and 3-pyridinyl(triethoxy)silane." Journal of Analytical and Applied Pyrolysis 28, no. 2 (1994): 175–82. http://dx.doi.org/10.1016/0165-2370(93)00773-g.

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8

Volikov, Alexander B., Sergei A. Ponomarenko, Alexander Gutsche, Hermann Nirschl, Kirk Hatfield, and Irina V. Perminova. "Targeted design of water-based humic substances-silsesquioxane soft materials for nature-inspired remedial applications." RSC Advances 6, no. 53 (2016): 48222–30. http://dx.doi.org/10.1039/c6ra08636e.

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Water-based humic substances-silsesquioxane (HS-SQ) soft materials are synthesized by hydrolysis of (3-aminopropyl-triethoxy)-silane in the HS solution, ​immobilized onto sand columns, and used for intercepting azo dye from water.
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9

Zhou, Yongxian, Wei Chen, Pengfei Wang та Yimin Zhang. "Dense and thin 13X membranes on porous α-Al2O3 tubes: preparation, structure and deep purification of oxygenated compounds from gaseous olefin flow". RSC Advances 8, № 25 (2018): 13728–38. http://dx.doi.org/10.1039/c7ra12917c.

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Dense and thin 13X molecular sieve membranes on porous α-Al<sub>2</sub>O<sub>3</sub> tubes were successfully fabricated by a combination of 3-aminopropyl triethoxy silane surface modification and vacuum pre-coating sol for purifying trace oxygenated compounds from gaseous olefins.
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10

Vandenberg, Elaine, Hans Elwing, Agneta Askendal, and Ingemar Lundström. "Protein immobilization of 3-aminopropyl triethoxy surfaces: Characterization by detergent washing." Journal of Colloid and Interface Science 143, no. 2 (1991): 327–35. http://dx.doi.org/10.1016/0021-9797(91)90266-b.

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