A series of chloro-substituted Salamo-type bisoxime compounds 4,4,6,6-tetrachloro-2.2-[(1,7-heptanediyldioxy)bis(nitrilomethylidyne)] diphenol (H2L1), 4,4,6,6-tetrachloro-2.2-[(1,8-octanediyldioxy)bis(nitrilomethylidyne)]diphenol (H2L2), 4,4,6,6-tetrachloro-2.2-[(1,9-nonanediyldioxy)bis(nitrilomethylidyne)]diphenol (H2L3) and 4,4,6,6-tetrachloro-2.2-[(1,10-decanediyldioxy)bis(nitrilomethylidyne)]diphenol (H2L4) have been synthesized and characterized by elemental analyses, IR spectra, UV-visible and 1H NMR spectroscopy. The chloro-group substitutied salamo-type bisoxime compounds H2L1-H2L4 may be a promising units for the construction of supramolecular complexes.
一系列
氯代萨拉莫型双
肟化合物 4,4,6,6-tetrachloro-2.2-[(1,7-heptanediyldioxy)bis(nitrilomethidyne)] diphenol (H2L1)、4,4,6,6-tetrachloro-2.2-[(1,8-辛二基二氧基)双(次氮基亚甲基)]二
苯酚 (H2
L2)、4,4,6,6-四
氯-2.合成了 2-[(1,9-壬二氧基)双(次氮基亚甲基)]二
苯酚 (H2L3) 和 4,4,6,6-四
氯-2.2-[(1,10-癸二氧基)双(次氮基亚甲基)]二
苯酚 (H2L4),并通过元素分析、红外光谱、紫外可见光和 1H NMR 光谱进行了表征。
氯基取代的
水杨醛型双
肟化合物 H2L1-H2L4 可能是构建超分子复合物的理想单元。