SYNTHETIC METHODS, PROPERTIES AND APPLICATION OF CONDENSATION PRODUCTS OF 1,8-NAPHTHALIC ANHYDRIDES WITH 1,2-DIAMINES (A REVIEW)

N. Fed’ko
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Abstract

The literary data concerning preparation methods and spectral properties of cyclocondensation products of 1,8-naphthalic anhydrides with aromatic and aliphatic 1,2-diamines and their use as luminescent materials have been summarized. The reaction of 1,8-naphthalic anhydrides with ortho -phenylenediamine results in the formation of 1,8-naphthoylene-1’,2’-benzimidazoles, which are widely used as materials for luminescent flaw detection, for synthesis of polymers with luminescent color, in organic light emitting diodes, as luminescent sensors for cations of various metals. Moreover, their cytotoxic activity is studied in relation to cells of various tumors. Acenaphthoquinone or 8-formyl-1-naphthoic acid can also be used as starting materials for synthesis of 1,8-naphthoylene-1’,2’-benzimidazoles. The spectral properties of 1,8-naphthoylene-1’,2’-benzimidazoles can be varied by the substituent introduction to naphthalene or/and phenyl moieties leading to luminescent materials with blue, green-yellow or red luminescence. Reaction of 4-substituted naphthalic anhydrides with o -phenylenediamine results in mixture of two constitutional isomers due to nonequivalence of two carbonyl groups in starting anhydride. The isomer ratio remains unchanged provided that syntheses are carried out under the same conditions, therefore the luminescent properties of such isomer mixtures are constant. 1,8-Naphthoylene-1’,2’-benzimidazoles with electron donating groups in positions 4 or 5 of naphthalene ring can be successfully obtained by nucleophilic aromatic substitution of halogen by amine or alcoholate. The introduction of electron donating substituents to positions 4 or 5 of naphthalene ring results in bathochromic shift of absorption and emission maxima compared to unsubstituted 1,8-naphthoylene-1’,2’-benzimidazole, corresponding shift is 10-20 nm larger for 5-isomer than for 4-isomer. There are few examples of applying amines other than o -phenylenediamine for cyclocondensation with naphthalic anhydrides, for instance naphthalene-2,3-diamine and ethylenediamine were used as starting materials.
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1,8-萘酸酐与1,2-二胺缩合产物的合成方法、性质及应用综述
综述了1,8-萘酸酐与芳香族和脂肪族1,2-二胺环缩合产物的制备方法、光谱性质及其作为发光材料的研究进展。1,8-萘酸酐与邻苯二胺反应生成1,8-萘-1′,2′-苯并咪唑,广泛用作发光探伤材料,用于合成具有发光颜色的聚合物,在有机发光二极管中用作各种金属阳离子的发光传感器。此外,还研究了它们与各种肿瘤细胞的细胞毒性活性。苊醌或8-甲酰基-1-萘酸也可作为合成1,8-萘-1′,2′-苯并咪唑的起始原料。1,8-萘-1′,2′-苯并咪唑的光谱性质可以通过引入萘或/和苯基取代基而改变,从而产生具有蓝色,黄绿色或红色发光的发光材料。4-取代萘酸酐与邻苯二胺反应,由于起始酸酐的两个羰基不相等,生成了两个构分异构体。如果在相同的条件下进行合成,则异构体的比例保持不变,因此这种异构体混合物的发光性质是恒定的。用胺或醇取代卤素可制备出在萘环4或5位具有给电子基团的1,8-萘-1′,2′-苯并咪唑。在萘环的4或5位引入给电子取代基,与未取代的1,8-萘-1′,2′-苯并咪唑相比,吸收和发射最大值发生了色移,5-异构体的相应位移比4-异构体大10-20 nm。除邻苯二胺以外的其他胺与萘酸酐进行环缩合的例子很少,例如以萘-2,3-二胺和乙二胺为起始原料。
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