Scaling of capacitance of PEDOT:PSS: volumevs.area

被引:61
作者
Bianchi, Michele [1 ]
Carli, Stefano [1 ]
Di Lauro, Michele [1 ]
Prato, Mirko [2 ]
Murgia, Mauro [1 ,3 ]
Fadiga, Luciano [1 ,4 ]
Biscarini, Fabio [1 ,5 ]
机构
[1] Italian Inst Technol, Ctr Translat Neurophysiol Speech & Commun, I-44121 Ferrara, Italy
[2] Italian Inst Technol, Mat Characterizat Facil, I-16163 Genoa, Italy
[3] CNR, Inst Nanostruct Mat ISMN, I-40129 Bologna, Italy
[4] Univ Ferrara, Dipartimento Sci Biomed & Chirurg Specialist, I-44121 Ferrara, Italy
[5] Univ Modena & Reggio Emilia, Life Sci Dept, I-41125 Modena, Italy
关键词
ELECTROCHEMICAL IMPEDANCE; ELECTRODES; SPECTROSCOPY; FILMS; POLY(3,4-ETHYLENEDIOXYTHIOPHENE); PERFORMANCE; BEHAVIOR; AREA; PSS;
D O I
10.1039/d0tc00992j
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Poly(3,4-ethylentedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) is one of the most studied materials for organic bioelectronics, supercapacitors and organic photovoltaics. Its low impedance is ascribed to the so-called volumetric capacitance, a property that phenomenologically correlates the capacitive coupling/charge storage in devices to the PEDOT:PSS volume/thickness. Here we investigate the correlation between the capacitance and the electroactive surface area (ESA) for large-volume spin-cast PEDOT:PSS electrodes. We measure the capacitance with cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS), and characterize the surface morphology by atomic force microscopy and X-ray photoelectron spectroscopy. Capacitance of PEDOT:PSS films scales with volume up to similar to 5 x 10(6)mu m(3)but is saturated at larger volumes. This scaling behavior is paralleled by the scaling of the ESA, hence the ratio between the effective capacitance and ESA remains constant across the whole data set, thus showing that the specific areal capacitance is indeed the relevant material property of PEDOT:PSS. EIS data fit supports the experimental evidence obtained by CV, further revealing that the diffusion time constant is also saturated at high volumes. This supports the scenario where the effective capacitance relates to the ion accessible ESA, and shows that the saturation of the capacitance arises from a change of ion penetration from a diffusive (at small volumes) to a non-diffusive regime at large volumes.
引用
收藏
页码:11252 / 11262
页数:11
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