Description
This dataset results from a study that introduced a novel gel adhesive composed of chemically unmodified high-amylose starch (G70, with 68% amylose content) with a minimal proportion of urea-formaldehyde (UF) (UF/starch = 1:10, w/w). This G70/UF gel demonstrates remarkable adhesive capabilities for wooden boards under both dry conditions (with a shear stress of 4.13 ± 0.12 MPa) and wet conditions (with a shear strength of 0.93 ± 0.07 MPa after 2 hours of water soaking).
The dataset contains Origin (Unicode) Project files used to generate the plots shown in the associated paper, "High-amylose starch-based gel as green adhesive for plywood: Adhesive property, water-resistance, and flame-retardancy". It also contains scanning electron microscopy (SEM) images for NCS/UF, G70/UF, and G50/UF gel samples, which are not shown in the paper; and raw X-ray photoelectron spectroscopy (XPS) data for NCS/UF and G70/UF gel samples, visualised in Figure S1 in the paper's supplementary material.
The dataset contains Origin (Unicode) Project files used to generate the plots shown in the associated paper, "High-amylose starch-based gel as green adhesive for plywood: Adhesive property, water-resistance, and flame-retardancy". It also contains scanning electron microscopy (SEM) images for NCS/UF, G70/UF, and G50/UF gel samples, which are not shown in the paper; and raw X-ray photoelectron spectroscopy (XPS) data for NCS/UF and G70/UF gel samples, visualised in Figure S1 in the paper's supplementary material.
| Date made available | 4 Sept 2024 |
|---|---|
| Publisher | University of Bath |
Research output
- 1 Article
-
High-amylose starch-based gel as green adhesive for plywood: Adhesive property, water-resistance, and flame-retardancy
Chen, Y., Rao, Y., Liu, P., Wu, L., Zhang, G., Zhang, J. & Xie, F., 1 Sept 2024, In: Carbohydrate Polymers. 339, 122247.Research output: Contribution to journal › Article › peer-review
Open AccessFile33 Link opens in a new tab Citations (SciVal)275 Downloads (Pure)
Projects
- 1 Finished
-
Breaking FROntiers for advanced engineering of bespoke, functional Biopolymer COmposite materials
Xie, D. F. (PI)
Engineering and Physical Sciences Research Council
1/12/23 → 31/12/25
Project: Research council
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