Dubal Deepak P, Ballesteros Belén, Mohite Ashwini A, Gómez-Romero Pedro
Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC and The Barcelona Institute of Science and Technology, Campus UAB, Bellaterra, 08193, Barcelona, Spain.
ChemSusChem. 2017 Feb 22;10(4):731-737. doi: 10.1002/cssc.201601610. Epub 2017 Jan 23.
Hybrid materials are very attractive for the fabrication of high-performance supercapacitors. Here, we have explored organic-inorganic hybrid materials based on open-end porous 1 D polypyrrole nanopipes (PPy-NPipes) and heteropolyoxometalates (phosphotungstate ([PW O ] , PW ) or phosphomolybdate ([PMo O ] , PMo )) that display excellent areal capacitances. Two different hybrid materials (PMo @PPy and PW @PPy) were effectively synthesized and used for symmetric supercapacitors. The anchoring of the inorganic nanoclusters onto the conducting polymer nanopipes led to electrodes that stood up to our best expectations exhibiting outstanding areal capacitances that are almost 1.5 to 2 fold higher than that of pristine PPy-NPipes. In addition, symmetric cells based on PMo @PPy and PW @PPy hybrid electrodes were fabricated and showed significant improvement in cell performance with very high volumetric capacitances in the range of 6.3-6.8 F cm (considering the volume of whole device). Indeed, they provide extended potential windows in acidic electrolytes (up to 1.5 V) which led to ultrahigh energy densities of 1.5 and 2.2 mWh cm for PMo @PPy and PW @PPy cells, respectively. Thus, these unique organic-inorganic hybrid symmetric cells displayed extraordinary electrochemical performances far exceeding those of more complex asymmetric systems.
杂化材料对于高性能超级电容器的制造极具吸引力。在此,我们探索了基于开口端多孔一维聚吡咯纳米管(PPy-NPipes)和杂多金属氧酸盐(磷钨酸盐([PW O ],PW )或磷钼酸盐([PMo O ],PMo ))的有机-无机杂化材料,这些材料展现出优异的面积电容。两种不同的杂化材料(PMo @PPy和PW @PPy)被有效合成并用于对称超级电容器。无机纳米团簇锚定在导电聚合物纳米管上,使得电极达到了我们的最佳预期,展现出出色的面积电容,几乎比原始PPy-NPipes高出1.5至2倍。此外,基于PMo @PPy和PW @PPy杂化电极的对称电池被制造出来,并且在电池性能方面有显著提升,具有6.3 - 6.8 F cm 的非常高的体积电容(考虑整个器件的体积)。实际上,它们在酸性电解质中提供了扩展的电位窗口(高达1.5 V),这分别导致PMo @PPy和PW @PPy电池的超高能量密度为1.5和2.2 mWh cm 。因此,这些独特的有机-无机杂化对称电池展现出非凡的电化学性能,远远超过了更复杂的非对称系统。