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Page 16 of 18                        Li et al. J. Mater. Inf. 2025, 5, 29  https://dx.doi.org/10.20517/jmi.2024.103


               DECLARATIONS
               Authors’ contributions
               Made substantial contributions to conception and design of the study and performed data analysis and
               interpretation: Li, W.; Wang, Z.; Yang, R.; Wang, X.
               Carried out all the tests of samples: Zhao, M.
               Prepared samples and carried out aging experiments: Pei, J.; Hu, Y.
               Performed data acquisition and provided administrative, technical, and material support: Yang, R.; Wang,
               X.


               Availability of data and materials
               Both the SR4Real benchmark data and the Aging experiment data, along with their corresponding codes,
               have been uploaded to the author’s GitHub repository, accessible at the following link: https://github.com/
               littlepeachs/SR4Aging.


               Financial support and sponsorship
               This work is supported by the National Key R&D Program of China (No. 2022ZD0117501).


               Conflicts of interest
               Wang, X. serves as an Editorial Board Member of Journal of Materials Informatics but was not involved in
               any aspect of the editorial process for this manuscript, including reviewer selection, manuscript handling, or
               decision-making. The remaining authors declare no conflicts of interest.


               Ethical approval and consent to participate
               Not applicable.


               Consent for publication
               Not applicable.


               Copyright
               © The Author(s) 2025.





               REFERENCES
               1.       Hao, J.; Wilkie, C. A.; Wang, J. An XPS investigation of thermal degradation and charring of cross-linked polyisoprene and
                   polychloroprene. Polym. Degrad. Stab. 2001, 71, 305-15.  DOI
               2.       Wang, J.; Du, J.; Zhu, J.; Wilkie, C. A. An XPS study of the thermal degradation and flame retardant mechanism of polystyrene-clay
                   nanocomposites. Polym. Degrad. Stab. 2002, 77, 249-52.  DOI
               3.       Moo-Tun, N. M.; Valadez-González, A.; Uribe-Calderon, J. A. Thermo-oxidative aging of low density polyethylene blown films in
                   presence of cellulose nanocrystals and a pro-oxidant additive. Polym. Bull. 2018, 75, 3149-69.  DOI
               4.       Cai, G.; Zhang, D.; Jiang, D.; Dong, Z. Degradation of fluorinated polyurethane coating under UVA and salt spray. Part II: Molecular
                   structures and depth profile. Prog. Org. Coat. 2018, 124, 25-32.  DOI
               5.       Goliszek, M.; Podkościelna, B.; Sevastyanova, O.; Fila, K.; Chabros, A.; Pączkowski, P. Investigation of accelerated aging of lignin-
                   containing polymer materials. Int. J. Biol. Macromol. 2019, 123, 910-22.  DOI  PubMed
               6.       Zuo, P.; Tcharkhtchi, A.; Shirinbayan, M.; Fitoussi, J.; Bakir, F. Multiscale physicochemical characterization of a short glass fiber–
                   reinforced polyphenylene sulfide composite under aging and its thermo-oxidative mechanism. Polym. Adv. Technol. 2019, 30, 584-97.
                   DOI
               7.       Tripathy, S. P.; Mishra, R.; Dwivedi, K. K.; Khathing, D. T.; Ghosh, S.; Fink, D. Degradation in polytetrafluoro ethylene by 62 mev
                   protons. Radiat. Eff. Defects. Solids. 2002, 157, 303-10.  DOI
               8.       Khanna, N. D.; Kaur, I.; Bhalla, T. C.; Gautam, N. Effect of biodegradation on thermal and crystalline behavior of polypropylene–
                   gelatin based copolymers. J. Appl. Polym. Sci. 2010, 118, 1476-88.  DOI
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