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采用超灵敏磷光传感器测定痕量咖啡因
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作者 饶滢 庄国顺 《三明学院学报》 2022年第6期47-59,共13页
发现水溶性多壁碳纳米管(MWNTs’)-牛血清蛋白(BSA)中BSA分子的-NH2可与异硫氰酸荧光素(FITC)分子中的异硫氰酸基团(-NCS)作用生成了异硫氰酸基团-牛血清蛋白-水溶性多壁碳纳米管(FITC-BSA–MWNTs’),使FITC共轭体系中碳原子上的π电子... 发现水溶性多壁碳纳米管(MWNTs’)-牛血清蛋白(BSA)中BSA分子的-NH2可与异硫氰酸荧光素(FITC)分子中的异硫氰酸基团(-NCS)作用生成了异硫氰酸基团-牛血清蛋白-水溶性多壁碳纳米管(FITC-BSA–MWNTs’),使FITC共轭体系中碳原子上的π电子密度(δ)增大而发射FITC的较强室温磷光(RTP)。质子化的咖啡因(CF+)与FITC-BSA–MWNTs’中FITC分子的带负电荷羧基(-COO-)发生静电吸附作用而生成质子化的咖啡因·异硫氰酸基团-牛血清蛋白-水溶性多壁碳纳米管离子缔合物([CF]+·[FITC-BSA-MWNTs’]-),使FITC分子共轭体系中碳原子上的π电子密度降低,导致FITC的RTP信号剧烈猝灭,据此建立了[CF]+·[FITC-BSA-MWNTs’]-离子缔合物FITC的电子效应磷光传感器测定痕量咖啡因(CF)的新方法,同时探讨了其分析应用与反应机理。 展开更多
关键词 咖啡因 π电子效应 多壁碳纳米管 异硫氰酸荧光素 磷光传感器
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Formation of mesophase microbeads from bulk mesophase pitch induced by fullerene
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作者 CHEN Wen-sheng LIU Lan-tao +5 位作者 WANG Zheng DUAN Chun-feng ZHANG Xing-wei MA Zhao-kun CHEN Xiao-hong SONG Huai-he 《新型炭材料(中英文)》 SCIE EI CAS 2024年第4期645-654,共10页
A transformation of naphthalene-based coalescenced mesophase pitch(NMP)to mesophase microbeads was achieved by heating a mixture of NMP and fullerene(C_(60)).This is different from the conventional process of the liqu... A transformation of naphthalene-based coalescenced mesophase pitch(NMP)to mesophase microbeads was achieved by heating a mixture of NMP and fullerene(C_(60)).This is different from the conventional process of the liquid-phase carbonization of isotropic pitch to the emergence of carbon microbeads in the matrix and finally their growth to form a 100%anisotropic bulk meso-phase,but rather a reverse transformation.The effects of C_(60) loading and reaction temperature on the morphological transformation of mesophase were investigated by polarizing optical and scanning electron microscopies.The physical changes in the NMP induced by C_(60) were characterized by thermogravimetric analysis,Fourier transform infrared spectroscopy,X-ray diffractometry and Raman spectroscopy.The results show that the coalesced NMP can be converted to a spherical type at 300-320℃ with the addition of 5%C_(60),and the size of the mesophase microbeads increases with increasing temperature.Furthermore,a model is established to ex-plain the unique induction effect of C_(60) in the transformation process.This work makes the morphological transformation of MP con-trollable,and provides a new idea for the understanding and research of mesophase pitch. 展开更多
关键词 Reversible transformation Fullerene induction mechanism Mesophase texture π-electron-induced effect Mesophase microbeads
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