4.8 Article

Laser-Printed In-Plane Micro-Supercapacitors: From Symmetric to Asymmetric Structure

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 10, Issue 1, Pages 723-732

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.7b15922

Keywords

micro-supercapacitors; asymmetric supercapacitors; in-plane supercapacitors; laser printing; paper-based

Funding

  1. National Natural Science Foundation of China [51503213, 11372312, 51373187, 11572321, 51573200]
  2. Sino-Tech Tenonscience & Technology Development Ltd. [2014110031009434]

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Here, we propose and demonstrate a complete solution for efficiently fabricating in-plane micro-supercapacitors (MSCs) from a symmetric to asymmetric structure. By using an original laser printing process, symmetric MSC with reduced graphene oxide (rGO)/silver nanowire (Ag-NW) hybrid electrodes was facilely fabricated and a high areal capacitance of 5.5 mF cm(-2) was achieved, which reaches the best reports on graphene-based MSCs. More importantly, a print-and-fold method has been creatively proposed that enabled the rapid manufacturing of asymmetric in-plane MSCs beyond the traditional cumbersome technologies. alpha-Ni(OH)(2) particles with high tapping density were successfully synthesized and employed as the pseudocapacitive material. Consequently, an improved supply voltage of 1.5 V was obtained and an areal capacitance as high as 8.6 mF cm(-2) has been realized. Moreover, a demonstration of a miniaturized MSC pack was performed by multiply-folding the serial Ag-NW-connected MSC units. As a result, a compact MSC pack with a high supply voltage of 3 V was obtained, which can be utilized to power a light-emitting diode light. These presented technologies may pave the way for the efficiently producing high performance in-plane MSCs, meanwhile offering a solution for the achievement of practical power supply packs integrated in limited spaces.

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