Files
wl-hydrophilic-polymer/task1/task1-chunks/ao4c03563_si_001.json
2025-05-08 11:49:00 +08:00

12 lines
2.8 KiB
JSON
Raw Blame History

This file contains ambiguous Unicode characters

This file contains Unicode characters that might be confused with other characters. If you think that this is intentional, you can safely ignore this warning. Use the Escape button to reveal them.

[
{
"id": 1,
"chunk": "Supporting Information",
"category": " References"
},
{
"id": 2,
"chunk": "# Preparation of Antifog Hard Coatings Based on CarboxyFunctionalized Polyhedral Oligomeric Silsesquioxane Crosslinked with Oligo(ethylene glycol)s \n\nJun Nakagawa, Seiya Morinaga, and Yoshiro Kaneko\\* \n\nGraduate School of Science and Engineering, Kagoshima University, Kagoshima 890-0065, Japan \n\n\\*Corresponding author, E-mail: ykaneko@eng.kagoshima-u.ac.jp (Y. Kaneko) \n\n![](images/a623f7e192f5ea2d04ade73675ae826b2d6e3b8eadd9c1d43e6c90742ad3b7a7.jpg) \nFigure S1. $\\mathrm{^{1}H}$ NMR spectrum of POSS-C in DMSO- $\\cdot d_{6}$ . The chemical shifts were referenced to DMSO (δ 2.5). \n\n![](images/8d9edb5995a44e3fee95231d763fc832fcd565d23869530e2c2341440722211f.jpg) \nFigure S2. $^{29}\\mathrm{Si}$ NMR spectrum of POSS-C in DMSO- $.d_{6}$ at $40^{\\circ}\\mathrm{C}$ . A small amount Cr(acac)3 was added as a relaxation agent. The chemical shifts were referenced to TMS (δ 0.0). \n\n<html><body><table><tr><td>HO H n</td><td>n=1</td><td>n=2</td><td>n=3</td><td>n=4</td><td>n=5</td><td>n=6</td></tr><tr><td>COOH OH (POSS-C) (OEG) 5 1</td><td>goshima University goshima University goshima University</td><td>goshima University goshima Universil goshima University</td><td>ima University ima University</td><td>shima University shima University shima University</td><td>shima University shima University shima University</td><td>oshima University oshima University oshima University</td></tr><tr><td>COOH OH (POSS-C) (OEG) 2 1</td><td>Kagoshima Univer Kagoshima Univ agoshima Unive</td><td>Kagoshima Univ Kagoshima Uni</td><td>Universi</td><td>oshima shima University shima Univers</td><td>goshima Universit goshin goshimaUniver</td><td>agoshima Univers agoshima Univers agoshima Univers</td></tr><tr><td>COOH OH (POSS-C) (OEG) 1 1</td><td>Kagoshima Unive agoshima Univer Kagoshima Unive</td><td>agoshima Univ agoshima Uni agoshima Unive</td><td>agoshima Univer agoskima Univers</td><td>goshima Unive 0</td><td>hima Univ</td><td>Kagoshima Univ Kagoshima Univ</td></tr></table></body></html> \n\n![](images/e90f5889a03a5d963ac9bf14212c7b24110fdf938bf479c953e898e488da9e8c.jpg) \nFigure S3. Appearance of POSS-C/OEG coatings. \nFigure S4. UV-Vis spectra of a glass substrate and POSS-C/OEG coating $(n=4$ , $\\mathrm{COOH}{\\mathrm{:OH}}=2{:}1\\$ ). \n\n![](images/574f1c663d94875dab0e942126a18b17caacb78034479429c9b40c1a74d05638.jpg) \nFigure S5. (a) SEM image and (b) EDX pattern of POSS-C/OEG coating $(n=4$ , $\\mathrm{COOH}{\\mathrm{:OH}}=2{:}1$ ). \n\n![](images/eee1544f23012fb89597507b45a36d666a6c61af011a8877c1c50e54c07ddab4.jpg) \nFigure S6. Photo of the equipment used for antifogging evaluation.",
"category": " Materials and methods"
}
]