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Utilization of Dissociation Constant (p#a) Value Perspective of -CH Acid in Electrochemical Synthesis of 4H-Chromene and its Derivatives

机译:在4H-铬的电化学合成中的-CH酸的解离常数(P#A)值透视,及其衍生物

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Activation of acidic-H in C-H chemistry through imposition of proper electrode potential is a matter of concern among synthetic research community. In this study, our main aim is to get deeper insight into the dissociation constant (pK) value perspective of -CH acid and its utilization in electro-catalytic transformation. Herein, a platinum cathode was being used to attract a covalently bonded electrons that exist between C and active-H of CH-acid (dimedone) toward itself i.e. cathodic part to form acidic-H and thus, form in-situ tautomeric enol form that acts as electro-generated base. Utilization of this notability has been accomplished by electrochemical synthesis of 4H-chromene and its derivatives by performing cathodic reduction. Due to acidic property of dimedone, cathodic platinum electrode draw the potential switched to lower side that is being recorded through the potential-cum-galvanostat which facilitates the faster transfer of electrons from -CH acid to form enolate ion of dimedone that act as electro-generated base for the reaction media which simultaneously undergoes cascade reaction (Michael addition/cyclization) on activated alkene (α-cyanocinnamonitrile derivatives). This approach offers several advantages such as good yield, mild reaction condition, easy accessible, simple work-up procedure and controlled potential selectivity at cathode. Use of no base is pivotal section of this methodology. Electro-generated base is used instead of chemical toxic bases, so the present protocol is green as electrons that acts as intrinsically sole reagent for the reaction media which is renewable, hence sustainable for the safe future.
机译:通过施加适当的电极潜力在C-H化学中激活酸性-H是合成研究界的关注问题。在这项研究中,我们的主要目的是深入了解-CH酸的解离常数(PK)值视角及其在电催化转化中的利用。在此,使用铂阴极来吸引在Ch-酸(DiMedone)的C和活性H之间存在的共价键合电子,以形成酸性-H,从而形成原位互变异构烯形式充当电生成的基础。通过进行阴极还原,通过电化学合成4H-铬烯及其衍生物来实现这种可测量。由于DimeDONE的酸性特性,阴极铂电极将电位切换到通过电位 - 芦vvanostAT记录的下侧,这有利于从-CH酸转移电子,以形成充当电力的DimeDone的烯醇物离子为反应介质产生的碱,其在活化烯烃(α-氰基纳米腈衍生物)上同时经历级联反应(Michael添加/环化)。这种方法提供了诸如良好的产量,温和的反应条件,易于访问,简单的处理程序和阴极上控制的电位选择性等优点。使用No Base是该方法的枢轴部分。使用电生碱代替化学毒性碱基,因此本方案是绿色的,作为电子作为可再生的反应介质的本质上唯一试剂,因此可持续安全。

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