4.8 Article

Monodisperse Carbon Sphere-Constructed Pomegranate-Like Structures for High-Volumetric-Capacitance Supercapacitors

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 11, Issue 4, Pages 4011-4016

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.8b19901

Keywords

electrical double-layer capacitor; porous carbon; pomegranate-like structure; spray drying; volumetric capacitance

Funding

  1. National Key Research and development program of China [2016YFA0202603]
  2. National Natural Science Foundation of China [21673171]
  3. Programme of Introducing Talents of Discipline to Universities [B17034]
  4. National Natural Science Fund for Distinguished Young Scholars [51425204]
  5. Excellent Dissertation Cultivation Funds of Wuhan University of Technology [2016-YS-003]

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Porous carbons have been extensively studied in supercapacitors. However, it remains a grand challenge for porous carbons to achieve a volumetric capacitance (C-v) of over 200 F cm(-3) because of the low intrinsic density and limited capacitance. Herein, we propose a pomegranate-like carbon microsphere (PCS) constructed by monodisperse, submicron, N-doped microporous carbon spheres for high-volumetric-capacitance supercapacitors. The assembly of submicron carbon spheres into pomegranate-like structures significantly reduces the required binder amount (2.0 wt %) for electrode preparation, diminishes the interparticle resistance, and most importantly, endows the PCS with a high packing density (0.75 g cm(-3)). Benefited from the high surface area (1477 m(2) g(-1)), N-doping (3.0 wt %), and high packing density, the PCS demonstrates a high C-v (254 F cm(-3)), four times that of unassembled monodisperse carbon spheres. This work opens a new avenue to enhance the C-v of porous carbons without compromising the rate capability or cyclability.

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