聚二乙炔
拉曼光谱
拉曼散射
聚合
吸光度
材料科学
聚合物
共轭体系
散射
X射线拉曼散射
光化学
分析化学(期刊)
化学
光学
有机化学
色谱法
复合材料
物理
作者
Mingming Yin,Liyuan Zhao,Sujuan Liu,Sidan Tian,Fanling Meng,Liang Luo
标识
DOI:10.1002/marc.202300412
摘要
Abstract Polydiacetylenes, as a class of conjugated polymers with alternating conjugated C═C and C≡C bonds, have emerged as a promising probe material for biomedical Raman imaging, given their ultrastrong Raman scattering intensity. However, the relationship between the structure, especially the molecular length of polydiacetylenes, and their Raman scattering intensity remains unclear. In this work, a series of water‐soluble polydiacetylenes, namely poly(deca‐4,6‐diynedioic acid) (PDDA) with different molecular weights (MWs), is prepared through controlled polymerization and degradation. The ultraviolet–visible (UV–vis) absorption spectroscopic and Raman spectroscopic studies on these polymers reveal that the Raman scattering intensity of PDDA increases nonlinearly with the MW. The MW‐Raman scattering intensity relationship in the polymerization process is completely different from that in the degradation process. In contrast, the Raman scattering intensity increases more linearly with the maximal absorbance of the polymer, and the relationship between the Raman scattering intensity and the maximal absorbance of PDDA in the polymerization process is consistent with that in the degradation process. The Raman scattering intensity of PDDA hence exhibits a better dependence on the effective conjugation length of the polymer, which should guide the future design of conjugated polymers for Raman imaging applications.
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