共轭体系
化学
并五苯
聚合物
带隙
光化学
聚合
组合化学
光热治疗
纳米技术
有机化学
光电子学
材料科学
图层(电子)
薄膜晶体管
作者
Christopher L. Anderson,Tong Zhang,Miao Qi,Ziman Chen,Chongqing Yang,Simon J. Teat,Nicholas S. Settineri,Eric A. Dailing,Andrés Garzón-Ruíz,Amparo Navarro,Yongqin Lv,Yi Liu
摘要
Stable redox-active conjugated molecules with exceptional electron-donating abilities are key components for the design and synthesis of ultralow band gap conjugated polymers. While hallmark electron-rich examples such as pentacene derivatives have been thoroughly explored, their poor air stability has hampered their broad incorporation into conjugated polymers for practical applications. Herein, we describe the synthesis of the electron-rich, fused pentacyclic pyrazino[2,3-b:5,6-b']diindolizine (PDIz) motif and detail its optical and redox behavior. The PDIz ring system exhibits a lower oxidation potential and a reduced optical band gap than the isoelectronic pentacene while retaining greater air stability in both solution and the solid state. The enhanced stability and electron density, together with readily installed solubilizing groups and polymerization handles, allow for the use of the PDIz motif in the synthesis of a series of conjugated polymers with band gaps as small as 0.71 eV. The tunable absorbance throughout the biologically relevant near-infrared I and II regions enables the use of these PDIz-based polymers as efficient photothermal therapeutic reagents for laser ablation of cancer cells.
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