Versatile Hyper-Cross-Linked Polymer Derived Porous Carbon Nanotubes with Tailored Selectivity for Oxygen Reduction Reaction

23 Pages Posted: 12 Sep 2022

See all articles by Qinping Qian

Qinping Qian

Jiangnan University

Hongyin Hu

Jiangnan University

Shaoda Huang

Jiangnan University

Yang Li

affiliation not provided to SSRN

LiangLiang Lin

Jiangnan University

Fang Duan

Jiangnan University

Han Zhu

Jiangnan University

Mingliang Du

Jiangnan University

Shuanglong Lu

Jiangnan University

Abstract

Exploring metal-free, highly active and durable electrocatalysts with tunable selectivity toward oxygen reduction reaction (ORR) still remains a standing challenge. Herein, porous carbon nanotubes derived from a self-supporting hyper-cross-linked polymer with tailored selectivity for efficient ORR are reported. The sulfur-containing tubular polymer provides a versatile platform to fabricate diverse heteroatom doped porous carbon nanotubes. Attributed to the porous tubular morphology, abundant dopants and defects, the N-doped porous carbon nanotubes through pyrolysis under Ar-NH 3 show excellent 4e - ORR performance with a half-wave potential ( E 1/2 ) of 0.85 V. It also has superior stability and methanol tolerance. Meanwhile, the O, S co-doped porous carbon nanotubes through oxygen plasma treatment show enhanced 2e - ORR performance with a selectivity up to 85.4%, which is probably ascribed to the more C=O and COOH species introduced in the carbon matrix. This work not only provides a useful strategy to design and prepare efficient ORR catalysts, but also paves the avenue for the facile tailoring of selectivity in ORR process.

Keywords: Oxygen reduction reaction, hyper-cross-linked polymer, porous carbon nanotube, selectivity, heteroatom doping

Suggested Citation

Qian, Qinping and Hu, Hongyin and Huang, Shaoda and Li, Yang and Lin, LiangLiang and Duan, Fang and Zhu, Han and Du, Mingliang and Lu, Shuanglong, Versatile Hyper-Cross-Linked Polymer Derived Porous Carbon Nanotubes with Tailored Selectivity for Oxygen Reduction Reaction. Available at SSRN: https://ssrn.com/abstract=4216307 or http://dx.doi.org/10.2139/ssrn.4216307

Qinping Qian

Jiangnan University ( email )

1800 Lihu Ave.
Wuxi, 214122
China

Hongyin Hu

Jiangnan University ( email )

1800 Lihu Ave.
Wuxi, 214122
China

Shaoda Huang

Jiangnan University ( email )

1800 Lihu Ave.
Wuxi, 214122
China

Yang Li

affiliation not provided to SSRN ( email )

No Address Available

LiangLiang Lin

Jiangnan University ( email )

1800 Lihu Ave.
Wuxi, 214122
China

Fang Duan

Jiangnan University ( email )

1800 Lihu Ave.
Wuxi, 214122
China

Han Zhu

Jiangnan University ( email )

1800 Lihu Ave.
Wuxi, 214122
China

Mingliang Du

Jiangnan University ( email )

1800 Lihu Ave.
Wuxi, 214122
China

Shuanglong Lu (Contact Author)

Jiangnan University ( email )

1800 Lihu Ave.
Wuxi, 214122
China

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