成果快讯|2019-05-28
In summary, we have constructed a novel near-infrared fluorescent probe for SO2 derivatives with multiple fluorescence emission by incorporating triphenylamine group in Rh-TPA.The probe showed near infrared fluorescence emission peaks at 740 nm and 810 nm; after interacting with SO2 derivatives, two emission peaks emerged in the visible light region. The probe could detect SO2 derivatives with both colorimetric and ratiometric characteristics and excellent selectivity in solution. As indicated by biological experiments, Rh-TPA could detect SO2 derivatives efficiently in HeLa cells and zebrafish with remarkable fluorescence changes in both red and green channels. As indicated by the photophysical and biological experiments, the probe exhibited excellent near infrared emission properties and good biocompatibility; thus, it can potentially be applied as a novel unit in many fields such as organic photovoltaic materials, optical materials and drug delivery areas in the future.
职称:副教授
研究方向:新型荧光染料的构建及生物应用;荧光探针的设计合成及生物应用、生物成像等;新型生物质分子组装材料的设计及应用
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木质化生物质资源特性及其应用
木质纤维绿色分离
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