Biomimetic Synthesis of PANI/Graphitic Oxidized Carbon Nitride for Supercapacitor Applications

被引:9
作者
Eduardo Martinez-Cartagena, Manuel [1 ]
Bernal-Martinez, Juan [2 ]
Banda-Villanueva, Arnulfo [1 ]
Enriquez-Medrano, Javier [1 ]
Lechuga-Islas, Victor D. [1 ]
Magana, Ilse [1 ]
Cordova, Teresa [1 ]
Morales-Acosta, Diana [1 ]
Luis Olivares-Romero, Jose [3 ]
Diaz-de-Leon, Ramon [1 ]
机构
[1] Res Ctr Appl Chem CIQA, Enrique Reyna Hermosillo 140, Saltillo 25294, Coahuila, Mexico
[2] Canada Honda, Lab Biomed & Nanotechnol, 129 Ojo Caliente, Aguascalientes 20196, Aguascalientes, Mexico
[3] Inst Ecol AC, Cluster Cient & Tecnol BioMim, Red Estudios Mol Avanzados, Campus 3,Carretera Antigua Coatepec 351, Xalapa 91070, Veracruz, Mexico
关键词
polyaniline; graphitic carbon nitride; supercapacitor; conductive polymer; biomimetic synthesis; CONDUCTING MOLECULAR-COMPLEX; HYDROGEN-PEROXIDE; POLYANILINE; POLYMERIZATION; HEMIN; NANOCOMPOSITES; COMPOSITES; NANOSHEETS; ANILINE; CAPACITANCE;
D O I
10.3390/polym14183913
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Polyaniline (PANI) composites have gained momentum as supercapacitive materials due to their high energy density and power density. However, some drawbacks in their performance remain, such as the low stability after hundreds of charge-discharge cycles and limitations in the synthesis scalability. Herein, we report for the first time PANI-Graphitic oxidized carbon nitride composites as potential supercapacitor material. The biomimetic polymerization of aniline assisted by hematin, supported by phosphorous and oxygen-modified carbon nitrides (g-POCN and g-OCN, respectively), achieved up to 89% yield. The obtained PAI/g-POCN and PANI/g-OCN show enhanced electrochemical properties, such as conductivity of up to 0.0375 S/cm, specific capacitances (C-s) of up to 294 F/g (at high current densities, 5 A/g) and a stable operation after 500 charge-discharge cycles (at 3 A/g). In contrast, the biomimetic synthesis of Free PANI, assisted by stabilized hematin in cosolvents, exhibited lower performance properties (65%). Due to their structural differences, the electrochemical properties of Free PANI (conductivity of 0.0045 S/cm and C-s of up to 82 F/g at 5 A/g) were lower than those of nanostructured PANI/g-POCN and g-OCN supports, which provide stability and improve the properties of biomimetically synthesized PANI. This work reveals the biomimetic synthesis of PANI, assisted by hematin supported by modified carbon nitrides, as a promising strategy to produce nanostructured supercapacitors with high performance.
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页数:20
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