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7-二芳氨基香豆素类光敏染料的合成及光谱性能 被引量:3
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作者 韩亮 赵金鸽 +1 位作者 刘阳 高建荣 《精细化工》 EI CAS CSCD 北大核心 2016年第10期1165-1170,共6页
以7-二芳氨基香豆素为电子给体,联噻吩或联苯噻吩为π桥,氰乙酸为电子受体设计合成了两个"D-π-A"型香豆素类光敏染料(Ⅴ1和Ⅴ2),通过核磁共振氢谱及高分辨质谱测定,确认其化学结构,测定了其紫外-可见吸收光谱、荧光发射光谱... 以7-二芳氨基香豆素为电子给体,联噻吩或联苯噻吩为π桥,氰乙酸为电子受体设计合成了两个"D-π-A"型香豆素类光敏染料(Ⅴ1和Ⅴ2),通过核磁共振氢谱及高分辨质谱测定,确认其化学结构,测定了其紫外-可见吸收光谱、荧光发射光谱。采用密度泛函理论-高斯密度泛函〔DFT-B3LYP/6-31G(d)〕对化合物进行几何优化,并进一步用TD-DFT方法计算得到吸收光谱和发射光谱,分析了构效关系。结果表明,与7-二苯氨基香豆素光敏染料(Ⅴ_3和Ⅴ_4)相比,7-二芴氨基香豆素光敏染料(Ⅴ_1和Ⅴ_2)的基态能级差分别由2.49 eV和2.62 eV减小至2.31 eV和2.49 eV;激发态能级差也相应减小了0.52 eV和0.42 eV;与以联苯噻吩为π桥的光敏染料(Ⅴ_2和Ⅴ_4)相比,以联噻吩为π桥的光敏染料(Ⅴ_1和Ⅴ_3)具有更好的分子平面性,最大吸收波长分别红移4nm和19 nm,发射波长则分别红移9 nm和16 nm。 展开更多
关键词 二芳氨基香豆素 噻吩 联苯噻吩 氰乙酸 紫外-可见吸收光谱 荧光发射光谱 特种染料与颜料
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Isolation and characterization of organic-sulfur degradation bacterial strain 被引量:3
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作者 杨宇 刁梦雪 +3 位作者 师舞阳 历丽 代沁芸 邱冠周 《Journal of Central South University of Technology》 EI 2007年第3期324-329,共6页
A bacterial strain that was capable of degrading organic sulfur (dibenzothiophene) was isolated by enrichment techniques from the petroleum-contaminated soil collected from Zhongyuan Oil Field. The strain is named ZYX... A bacterial strain that was capable of degrading organic sulfur (dibenzothiophene) was isolated by enrichment techniques from the petroleum-contaminated soil collected from Zhongyuan Oil Field. The strain is named ZYX and is gram-positive. This strain undergoes bacilus-coccus morphological change, and forms yellow-pigment glossy circular colonies with 1.5 mm in diameter on average after 2 d incubation on Luria-Bertani(LB) plates. The full-length of 16S rDNA sequence of strain ZYX was determined and analyzed. Strain ZYX is found most relative with the genus of Arthrobacter. The similarity values between ZYX and Arthrobacter sp. P2 is 99.53%. The main morphological, biochemical and physiological features of strain ZYX accord with those of Arthrobacter. It is found that the optimal initial pH for growth is about 7.0, and the optimal concentration of dibenzothiophene(DBT) for growth is 0. 10 gL. Additionally, the results show that the best carbon source and nitrogen source are glycerol and glutamine, respectively. 展开更多
关键词 核糖体 有机硫磺退化 隔离 联苯噻吩
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