结晶度
群(周期表)
羰基
聚乙烯
高分子化学
化学
高分子科学
有机化学
结晶学
药物化学
作者
Afiq Anuar,Arman Edalat,Lea Ringelhan,Qiang Yu,Maximilian Baur,Albrecht Petzold,Thomas Thurn‐Albrecht,Stefan Mecking,Kay Saalwächter
标识
DOI:10.26434/chemrxiv-2025-5hddm
摘要
Ketone-functionalization of polyethylene via copolymerization with carbon monoxide offers a promising route to introducing reactive carbonyl moieties while preserving the advantageous bulk properties of high-density polyethylene (HDPE). Here, we systematically investigate the influence of low-level (0.6--1.6,mol-%) keto incorporation on the thermal properties, semicrystalline morphology, crystallization, and chain dynamics of HDPE. Differential scanning calorimetry and small-angle X-ray scattering reveal only minor reductions in melting temperature and lamellar thickness. Complementarily, 1H NMR FID measurements reveal that KetoPE samples exhibit crystallinity-temperature profiles comparable to HDPE, indicating that the semicrystalline morphology is mainly preserved upon keto incorporation up to a few percent. Importantly, 13C T1 relaxation quantitatively confirms that intracrystalline chain diffusion coefficients are essentially unchanged. Notably, 1H spin-diffusion NMR confirms that presumably the isolated carbonyl moieties predominantly reside in the interphase. Thus, low-level ketone incorporation imparts additional reactivity or adhesion potential without compromising HDPE's mechanical or thermal integrity.
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