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1)  Rhodamin 3B
罗丹明3B
2)  R6G
罗丹明6G
1.
The Study of Raman Scattering on ZnO Thin Films and R6G Molecules;
氧化锌薄膜和罗丹明6G分子的拉曼散射研究
2.
Surface-enhanced Raman Spectrum(SERS) of R6G obtained by Mapping is studied in this paper.
本文利用罗丹明6G在银胶体粒子聚集点上的表面增强拉曼光谱的强度变化,采用逐点扫描获得拉曼光谱的"Mapping"方法,获得了不同的银胶体粒子聚集点对吸附的R6G表面增强拉曼光谱强度的影响。
3.
The detection of single molecular level of R6G was obtained with the use of surface-enhanced Raman scattering.
以提纯后的银胶为表面增强拉曼散射衬底,研究了超低浓度染料大分子罗丹明6G分子的表面增强拉曼散射,得到浓度分别为10-12mol/L、10-13mol/L和10-14mol/L的罗丹明6G的表面增强拉曼散射光谱,初步实现了罗丹明6G的单分子检测,证明该新型银胶衬底有非常强的表面增强拉曼活性。
3)  rhodamine B
罗丹明B
1.
Spectrophotometric determination of silicon in steel with rhodamine B-hetersilicomolybdic acid system in microemulsion medium;
微乳介质-罗丹明B-硅钼杂多酸体系分光光度法测定钢中硅
2.
Photocatalytic Degradation of Rhodamine B Using Semiconductors Photosensitized by Poly(fluorene-co-thiophene)under Visible Light Irradiation;
芴与噻吩共聚物敏化半导体在可见光下催化降解罗丹明B
3.
Degradation of rhodamine B in water by swirling jet-induced cavitation;
利用涡流空化效应降解水中罗丹明B
4)  Rohdamine 116
罗丹明116
5)  rhodamine 6G
罗丹明6G
1.
Study on floatation separation of bismuth(Ⅲ) by the ammonium sulfate-potassium iodide-rhodamine 6G-water system;
硫酸铵-碘化钾-罗丹明6G-水体系浮选分离铋(Ⅲ)的研究
2.
Study on liquid-solid flotation separation of lead(Ⅱ) by sodium nitrate-ammonium thiocyanate-rhodamine 6G system;
硝酸钠-硫氰酸铵-罗丹明6G液-固体系浮选分离铅(Ⅱ)的研究
3.
Determination of Trace Amount of Iron in Agricultural Products by the Quenching of Fluorescence of Rhodamine 6G;
罗丹明6G荧光猝灭法测定农产品中痕量铁
6)  Rhodamine 123
罗丹明123
1.
Effect of Polyethylene Glycol 400 on the Permeability of Rhodamine 123,a P-gp Substrate across the Intestinal Mucosa in Rats;
聚乙二醇400对P-糖蛋白底物罗丹明123经肠黏膜的透过性研究
2.
Effect of Tween-80 on the permeability of rhodamine 123,a P-gp substrate across rat intestinal membranes in vitro;
吐温-80对p-糖蛋白底物罗丹明123经肠粘膜透过性的影响
3.
Determination of rhodamine 123 in cell lysate by high-performance liquid chromatography with visible wavelength detection;
高效液相色谱法测定细胞内罗丹明123的浓度
补充资料:罗丹明3B
分子式:
CAS号:

性质:红光紫色粉末。在浓硫酸中为绿光黄色,稀释时变为红色。间羟基-N,N-二乙基苯胺与邻苯二甲酸酐缩合、成环,再进行酯化,并与磷钨钼酸作用转变成色淀。用于印刷油墨和文教用品的着色。

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