首页> 外文期刊>The Journal of Organic Chemistry >A NEW FAMILY OF INDOANILINE-DERIVED CALIX[4]ARENES - SYNTHESIS AND OPTICAL RECOGNITION PROPERTIES AS A CHROMOGENIC RECEPTOR
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A NEW FAMILY OF INDOANILINE-DERIVED CALIX[4]ARENES - SYNTHESIS AND OPTICAL RECOGNITION PROPERTIES AS A CHROMOGENIC RECEPTOR

机译:吲哚啉衍生的杯[4]芳烃的一个新家族-作为发色受体的合成和光学识别性质

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A new family of indoaniline-derived catix[4]arenes has been synthesized for the purpose of developing a new chromogenic receptor. A condensing reaction of calix[4]arene (1) with 4-(diethylamino)-2-methylaniline hydrochloride (2) in the presence of an oxidizing agent under alkaline conditions affords mono- (3), 1,2-bis- (4), 1,3-bis- (5), and tetrakisindoaniline-derived (6) calix[4]arenes after careful column chromatography. Compound 3 is crystallized from a CHCl3-MeOH solution, and the crystal structure was determined by X-ray analysis. The crystal is monoclinic, space group P2(1), Z = 4, a = 19.507(6) Angstrom, b = 18.591(6) Angstrom, c = 8.524(2) Angstrom, beta = 94.69(2)degrees. The final R value for 2406 reflections of F-0 > 3 sigma(F-0) is 0.085. A unique intramolecular hydrogen-bonding network involving the carbonyl oxygen of indoaniline for 3 implied that the quinone carbonyl group as an acceptor of the chromophore can easily be subjected to an electrostatic interaction in the lower rim. Indeed, 1,3-bis(indoaniline)-derived 2,4-bis((ethoxycarbonyl)methoxy)calix[4], prepared by the reaction of 5 with ethyl bromoacetate in the presence of NaH, is capable of undergoing an efficient ion-dipole interaction between the binding cation and the two quinone carbonyl groups of the chromaphores, so that a selective Ca2+-induced pronounced color change (wavelength change > 100 nm) occurs with an association constant on the order of 10(6) in 99% EtOH, making 7 of potential use as an optical sensor for Ca2+ detection. The IR and NMR studies have indicated that Ca2+ is encapsulated in the cavity made by the distally located OCH2CO2 groups on the lower rim of the cone-shaped calix[4]arene segment. Interestingly, however, the shape of the cavity in which Ca2+ has been encapsulated does not have a C-2 axis of symmetry, as inferred from the H-1-H-1 COSY experiment. On the other hand, 1,2-bis(indoaniline)-derived analogue 8 shows no response with metal ions, which can be interpreted to mean the absence oi a cavity for encapsulation on the lower rim. [References: 65]
机译:为了开发新的生色受体,已经合成了吲哚苯胺衍生的catix [4]芳烃的新家族。在氧化剂存在下,在碱性条件下,杯[4]亚芳基(1)与4-(二乙氨基)-2-甲基苯胺盐酸盐(2)缩合反应,得到单-(3),1,2-双-(经过仔细的柱色谱分析后,得到4),1,3-双-(5)和四辛二苯胺(6)杯[4]芳烃。化合物3从CHCl 3 -MeOH溶液中结晶,并通过X射线分析确定晶体结构。晶体是单斜晶体,空间群P2(1)/ n,Z = 4,a = 19.507(6)埃,b = 18.591(6)埃,c = 8.524(2)埃,β= 94.69(2)度。 F-0> 3 sigma(F-0)的2406次反射的最终R值为0.085。涉及吲哚苯胺的羰基氧对于3的独特的分子内氢键网络暗示着作为生色团受体的醌羰基很容易在下边缘发生静电相互作用。实际上,在NaH存在下,由5与溴乙酸乙酯反应制得的1,3-双(吲哚苯胺)衍生的2,4-双((乙氧羰基)甲氧基)杯[4]能够经受有效的离子阳离子与发色团的两个醌羰基之间的-偶极相互作用,从而发生选择性Ca2 +诱导的显着颜色变化(波长变化> 100 nm),缔合常数约为10(6),在99% EtOH,有7种可能用作检测Ca2 +的光学传感器。红外和核磁共振研究表明,Ca2 +被封装在圆锥形杯[4]芳烃链段下部边缘上的OCH2CO2基团形成的空腔中。然而,有趣的是,如从H-1-H-1 COZY实验推断出的那样,其中已封装Ca2 +的空腔的形状不具有C-2对称轴。另一方面,源自1,2-双(吲哚苯胺)的类似物8对金属离子没有反应,这可以解释为意味着在下缘上没有用于包封的腔。 [参考:65]

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