Synthesis and characterization of organic 2-(cyano 3-(4-diphenylamino) phenyl) prop 2-enoic acid dye for electrochemical cell applications

Kotteswaran Shanmugam, M. S. Pandian, P. Ramasamy
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Abstract

Phenyl-conjugated Oligoene dye 2-(Cyano 3-(4-diphenylamino) phenyl) prop 2-enoic acid was synthesized by chemical method. The structure of the synthesized dye was confirmed by 1H NMR and 13C NMR spectrum. From the UV-Visible NIR spectrum the absorption maximum (λmax) was analyzed and from the λmax value the molar extinction coefficient was calculated. From the cyclic-voltammograms the details about the reversibility of electron transfer processes is obtained. Cathodic and anodic redox potentials were used to determine the HOMO-LUMO values. The cyclic voltammetry of the dye was taken using Ag/AgCl as reference electrode, glassy carbon as working electrode and platinum (Pt) as counter electrode with the scan rate 100 mVs-1 and the used temperature is 20°C. The DSSC was made using commercial P25 TiO2 material as photoanode, 2-cyano 3-(4-diphenylaminophenyl) prop 2-enoic acid dye as sensitizer, I-/I3- as electrolyte and Platinum (Pt) used as counter electrode. The solar cell efficiency of the synthesized dye is 1.7 % with Voc=0.67 V, Jsc=4.6 mA/m2 and fill factor (FF) =56 %.Phenyl-conjugated Oligoene dye 2-(Cyano 3-(4-diphenylamino) phenyl) prop 2-enoic acid was synthesized by chemical method. The structure of the synthesized dye was confirmed by 1H NMR and 13C NMR spectrum. From the UV-Visible NIR spectrum the absorption maximum (λmax) was analyzed and from the λmax value the molar extinction coefficient was calculated. From the cyclic-voltammograms the details about the reversibility of electron transfer processes is obtained. Cathodic and anodic redox potentials were used to determine the HOMO-LUMO values. The cyclic voltammetry of the dye was taken using Ag/AgCl as reference electrode, glassy carbon as working electrode and platinum (Pt) as counter electrode with the scan rate 100 mVs-1 and the used temperature is 20°C. The DSSC was made using commercial P25 TiO2 material as photoanode, 2-cyano 3-(4-diphenylaminophenyl) prop 2-enoic acid dye as sensitizer, I-/I3- as electrolyte and Platinum (Pt) used as counter electrode. The solar cell efficiency of the synthesized dye ...
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电化学电池用有机2-(氰基3-(4-二苯基氨基)苯基)丙二烯酸染料的合成与表征
采用化学方法合成了苯基偶联寡烯染料2-(氰基3-(4-二苯基氨基)苯基)丙烯酸。合成染料的结构经1H NMR和13C NMR确证。从紫外-可见近红外光谱分析了吸收最大值(λmax),并从λmax值计算了摩尔消光系数。从循环伏安图中可以得到电子转移过程可逆性的细节。用阴极和阳极氧化还原电位测定HOMO-LUMO值。以Ag/AgCl为参比电极,玻碳为工作电极,铂(Pt)为反电极,扫描速率为100 mVs-1,使用温度为20℃,对染料进行循环伏安法测定。以P25 TiO2为光阳极,2-氰基3-(4-二苯基氨基苯基)2-烯酸染料为敏化剂,I-/I3-为电解质,铂(Pt)为对电极制备DSSC。合成染料的太阳能电池效率为1.7%,Voc=0.67 V, Jsc=4.6 mA/m2,填充系数(FF) = 56%。采用化学方法合成了苯基偶联寡烯染料2-(氰基3-(4-二苯基氨基)苯基)丙烯酸。合成染料的结构经1H NMR和13C NMR确证。从紫外-可见近红外光谱分析了吸收最大值(λmax),并从λmax值计算了摩尔消光系数。从循环伏安图中可以得到电子转移过程可逆性的细节。用阴极和阳极氧化还原电位测定HOMO-LUMO值。以Ag/AgCl为参比电极,玻碳为工作电极,铂(Pt)为反电极,扫描速率为100 mVs-1,使用温度为20℃,对染料进行循环伏安法测定。以P25 TiO2为光阳极,2-氰基3-(4-二苯基氨基苯基)2-烯酸染料为敏化剂,I-/I3-为电解质,铂(Pt)为对电极制备DSSC。合成染料的太阳能电池效率…
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