光热治疗
硫辛酸
材料科学
光电子学
纳米技术
光热效应
有机化学
化学
抗氧化剂
硫辛酸
作者
Ang Li,Jin‐Meng Zhang,Q. B. Yi,Yi‐Cong Wang,Yixian Wu
标识
DOI:10.1002/adom.202501148
摘要
Abstract The hybrid co‐networks (PTA‐Fe) of poly(thioctic acid) (PTA) coordinated with Fe 3+ having PTA polymers with the number‐average molecular weight ( M n ) of 1–60 kg mol −1 and molar Fe 3+ content ( C Fe ) of 0%–31% have been successfully in situ synthesized. The PTA‐Fe film shows high transmittance of 97% with 6.9% ≤ C Fe ≤ 16.1% and M n ≥ 12.5 kg mol −1 . The PTA‐Fe film reveals self‐focusing phenomenon especially under 808 nm irradiation, due to the nonlinear refraction caused by the polarized charge transfer complex (CTC) in hybrids excited photons. Meanwhile, the refractive index at 589 nm ( n D ) of PTA‐Fe hybrid increases from 1.54 to 1.68 with incremental C Fe for the disulfides and CTC structures. The Abbe number ( ν D ) of PTA‐Fe hybrids slightly decreases (47–45) due to their self‐focusing behavior. The PTA‐Fe materials show adjustable photothermal conversion under 808 nm irradiation by mediating C Fe or NIR intensity ( I 808 ). The photothermal conversion efficiency (PCE) of PTA‐Fe hybrid can reach 98% even at low I 808 of 50 mW cm −2 , for the PTA‐Fe hybrid with self‐focusing character can converge the light into a point inside the materials. The multifunctional PTA‐Fe hybrid co‐networks with high performance in optical transparency, focusing, and photothermal conversion would have potential applications in advanced optical materials.
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