Atomic Fe-Nx Coupled Open-Mesoporous Carbon Nanofibers for Efficient and Bioadaptable Oxygen Electrode in Mg-Air Batteries

被引:165
作者
Cheng, Chong [1 ]
Li, Shuang [2 ]
Xia, Yi [1 ]
Ma, Lang [3 ]
Nie, Chuanxiong [1 ]
Roth, Christina [1 ]
Thomas, Arne [2 ]
Haag, Rainer [1 ]
机构
[1] Free Univ Berlin, Dept Chem & Biochem, Takustr 3, D-14195 Berlin, Germany
[2] Tech Univ Berlin, Dept Chem, Funct Mat, Hardenbergstr 40, D-10623 Berlin, Germany
[3] Sichuan Univ, West China Hosp, West China Sch Med, Dept Ultrasound, Chengdu 610041, Sichuan, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
atomic Fe-N-x doping; Mg-air batteries; open-mesoporous carbon nanofibers; oxygen electrode; wearable and bio-adaptable power sources; NITROGEN-DOPED CARBON; POROUS CARBONS; REDUCTION; ELECTROCATALYSTS; NANOPARTICLES; NANOMATERIALS; FABRICATION; ROBUST; SITES; THIN;
D O I
10.1002/adma.201802669
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The recently emerging metal-air batteries equipped with advanced oxygen electrodes have provided enormous opportunities to develop the next generation of wearable and bio-adaptable power sources. Theoretically, neutral electrolyte-based Mg-air batteries possess potential advantages in electronics and biomedical applications over the other metal-air counterparts, especially the alkaline-based Zn-air batteries. However, the rational design of advanced oxygen electrode for Mg-air batteries with high discharge voltage and capacity under neutral conditions still remains a major challenge. Inspired by fibrous string structures of bufo-spawn, it is reported here that the scalable synthesis of atomic Fe-N-x coupled open-mesoporous N-doped-carbon nanofibers (OM-NCNF-FeNx) as advanced oxygen electrode for Mg-air batteries. The fabricated OM-NCNF-FeNx electrodes present manifold advantages, including open-mesoporous and interconnected structures, 3D hierarchically porous networks, good bio-adaptability, homogeneously coupled atomic Fe-N-x sites, and high oxygen electrocatalytic performances. Most importantly, the assembled Mg-air batteries with neutral electrolytes reveal high open-circuit voltage, stable discharge voltage plateaus, high capacity, long operating life, and good flexibility. Overall, the discovery on fabricating atomic OM-NCNF-FeNx electrode will not only create new pathways for achieving flexible, wearable, and bio-adaptable power sources, but also take a step towards the scale-up production of advanced nanofibrous carbon electrodes for a broad range of applications.
引用
收藏
页数:10
相关论文
共 58 条
[1]   Brazing techniques for the fabrication of biocompatible carbon-based electronic devices [J].
Apollo, Nicholas V. ;
Lau, Desmond ;
Ahnood, Arman ;
Stacey, Alastair ;
Ganesan, Kumaravelu ;
Lichter, Samantha G. ;
Fox, Kate ;
Foroughi, Javad ;
Meffin, Hamish ;
Wallace, Gordon G. ;
Baughman, Ray ;
Prawer, Steven ;
Garrett, David J. .
CARBON, 2016, 107 :180-189
[2]   Soft, Flexible Freestanding Neural Stimulation and Recording Electrodes Fabricated from Reduced Graphene Oxide [J].
Apollo, Nicholas V. ;
Maturana, Matias I. ;
Tong, Wei ;
Nayagam, David A. X. ;
Shivdasani, Mohit N. ;
Foroughi, Javad ;
Wallace, Gordon G. ;
Prawer, Steven ;
Ibbotson, Michael R. ;
Garrett, David J. .
ADVANCED FUNCTIONAL MATERIALS, 2015, 25 (23) :3551-3559
[3]   Materials Advances for Next-Generation Ingestible Electronic Medical Devices [J].
Bettinger, Christopher J. .
TRENDS IN BIOTECHNOLOGY, 2015, 33 (10) :575-585
[4]   Recent advances in air electrodes for Zn-air batteries: electrocatalysis and structural design [J].
Cai, Xiaoyi ;
Lai, Linfei ;
Lin, Jianyi ;
Shen, Zexiang .
MATERIALS HORIZONS, 2017, 4 (06) :945-976
[5]   Atomically Dispersed Iron-Nitrogen Species as Electrocatalysts for Bifunctional Oxygen Evolution and Reduction Reactions [J].
Chen, Pengzuo ;
Zhou, Tianpei ;
Xing, Lili ;
Xu, Kun ;
Tong, Yun ;
Xie, Hui ;
Zhang, Lidong ;
Yan, Wensheng ;
Chu, Wangsheng ;
Wu, Changzheng ;
Xie, Yi .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2017, 56 (02) :610-614
[6]   A Water-Processable and Bioactive Multivalent Graphene Nanoink for Highly Flexible Bioelectronic Films and Nanofibers [J].
Cheng, Chong ;
Zhang, Jianguang ;
Li, Shuang ;
Xia, Yi ;
Nie, Chuanxiong ;
Shi, Zhenqiang ;
Cuellar-Camacho, Jose Luis ;
Ma, Nan ;
Haag, Rainer .
ADVANCED MATERIALS, 2018, 30 (05)
[7]   Functional Graphene Nanomaterials Based Architectures: Biointeractions, Fabrications, and Emerging Biological Applications [J].
Cheng, Chong ;
Li, Shuang ;
Thomas, Arne ;
Kotov, Nicholas A. ;
Haag, Rainer .
CHEMICAL REVIEWS, 2017, 117 (03) :1826-1914
[8]   Single Cobalt Atom and N Codoped Carbon Nanofibers as Highly Durable Electrocatalyst for Oxygen Reduction Reaction [J].
Cheng, Qingqing ;
Yang, Lijun ;
Zou, Liangliang ;
Zou, Zhiqing ;
Chen, Chi ;
Hu, Zheng ;
Yang, Hui .
ACS CATALYSIS, 2017, 7 (10) :6864-6871
[9]   Recent Advances in Flexible and Stretchable Bio-Electronic Devices Integrated with Nanomaterials [J].
Choi, Suji ;
Lee, Hyunjae ;
Ghaffari, Roozbeh ;
Hyeon, Taeghwan ;
Kim, Dae-Hyeong .
ADVANCED MATERIALS, 2016, 28 (22) :4203-4218
[10]   Mesh Nanoelectronics: Seamless Integration of Electronics with Tissues [J].
Dai, Xiaochuan ;
Hong, Guosong ;
Gao, Teng ;
Lieber, Charles M. .
ACCOUNTS OF CHEMICAL RESEARCH, 2018, 51 (02) :309-318