Combinatorial Approach to Organelle-Targeted Fluorescent Library Based on the Styryl Scaffold
摘要:
The first fluorescent styryl dye library with a broad color range was synthesized by combinatorial condensation of various aldehydes and methyl pyridinium compounds, and their applications as organelle specific staining probes were demonstrated.
Supramolecular host–guest coordination systems: [(G+)(Me3E)3MII(CN)6]∞ as ion exchangers, where (G+=Me3E, Et4N or stp), (E=Sn or Pb) and (M=Fe or Ru)
作者:Amany M.A. Ibrahim
DOI:10.1016/s0277-5387(99)00176-x
日期:1999.9
6 ] building blocks and (Me 3 E) connecting units, have been prepared and characterized by X-ray powder diffraction and different spectroscopic methods. 1-Methyl-4-(4′- R -styryl) or (2′- R -styryl) pyridinium cations (stp) have been successfully encapsulated within the expandable wide channels of the 3D-coordination polymers by tribochemical or ion exchange reactions producing novel molecular composites
摘要制备了许多由[d M(CN)6]构件和(Me 3 E)连接单元构成的3D配位聚合物,并通过X射线粉末衍射和不同的光谱学方法对其进行了表征。1-甲基-4-(4'-R-苯乙烯基)或(2'-R-苯乙烯基)吡啶鎓阳离子(stp)已通过摩擦化学或离子交换反应成功地封装在3D配位聚合物的可扩展宽通道内新型分子复合材料。除具有热致变色行为的[6,[(4'-OCH 3 -stp)(Me 3 Sn)3 Fe II(CN)6 -MeOH]∞外,分子复合物[(stp)x(Me 3 E)3 Fe III 1– x Fe II x(CN)6]∞,1 – 12是混合价态材料,在混合价态铁之间表现出局部相互作用。结果表明客体stp-阳离子和主体基质之间存在离子电荷转移相互作用。分子复合物[(stp)(Me 3 E)3 M II(CN)6]∞,13 – 18是由于配位聚合物[(Me 3 E)4 M(CN)6]∞和[(Et
Combinatorial Approach to Organelle-Targeted Fluorescent Library Based on the Styryl Scaffold
作者:Gustavo R. Rosania、Jae Wook Lee、Liang Ding、Hai-Shin Yoon、Young-Tae Chang
DOI:10.1021/ja027587x
日期:2003.2.1
The first fluorescent styryl dye library with a broad color range was synthesized by combinatorial condensation of various aldehydes and methyl pyridinium compounds, and their applications as organelle specific staining probes were demonstrated.
Shunmugasundaram, A.; Chellamani, A.; Raj, M. Joseph, Indian Journal of Chemistry, Section A: Inorganic, Physical, Theoretical and Analytical, 1986, vol. 25, # 10, p. 899 - 901
作者:Shunmugasundaram, A.、Chellamani, A.、Raj, M. Joseph