Rational Design of Porous N-Ti3C2 MXene@CNT Microspheres for High Cycling Stability in Li–S Battery

Abstract Herein, N-Ti3C2@CNT microspheres are successfully synthesized by the simple spray drying method. In the preparation process, HCl-treated melamine (HTM) is selected as the sources of carbon and nitrogen. It not only realizes in situ growth of CNTs on the surface of MXene nanosheets with the...

Full description

Bibliographic Details
Main Authors: Jianli Wang, Zhao Zhang, Xufeng Yan, Shunlong Zhang, Zihao Wu, Zhihong Zhuang, Wei-Qiang Han
Format: Article
Language:English
Published: SpringerOpen 2019-12-01
Series:Nano-Micro Letters
Subjects:
Online Access:https://doi.org/10.1007/s40820-019-0341-6
id doaj-866f0a2a5a61455b988be470283c7582
record_format Article
spelling doaj-866f0a2a5a61455b988be470283c75822020-12-13T12:38:39ZengSpringerOpenNano-Micro Letters2311-67062150-55512019-12-0112111410.1007/s40820-019-0341-6Rational Design of Porous N-Ti3C2 MXene@CNT Microspheres for High Cycling Stability in Li–S BatteryJianli Wang0Zhao Zhang1Xufeng Yan2Shunlong Zhang3Zihao Wu4Zhihong Zhuang5Wei-Qiang Han6School of Materials Science and Engineering, Zhejiang UniversitySchool of Materials Science and Engineering, Zhejiang UniversitySchool of Materials Science and Engineering, Zhejiang UniversitySchool of Materials Science and Engineering, Zhejiang UniversitySchool of Materials Science and Engineering, Zhejiang UniversitySchool of Materials Science and Engineering, Zhejiang UniversitySchool of Materials Science and Engineering, Zhejiang UniversityAbstract Herein, N-Ti3C2@CNT microspheres are successfully synthesized by the simple spray drying method. In the preparation process, HCl-treated melamine (HTM) is selected as the sources of carbon and nitrogen. It not only realizes in situ growth of CNTs on the surface of MXene nanosheets with the catalysis of Ni, but also introduces efficient N-doping in both MXene and CNTs. Within the microsphere, MXene nanosheets interconnect with CNTs to form porous and conductive network. In addition, N-doped MXene and CNTs can provide strong chemical immobilization for polysulfides and effectively entrap them within the porous microspheres. Above-mentioned merits enable N-Ti3C2@CNT microspheres to be ideal sulfur host. When used in lithium–sulfur (Li–S) battery, the N-Ti3C2@CNT microspheres/S cathode delivers initial specific capacity of 927 mAh g−1 at 1 C and retains high capacity of 775 mAh g−1 after 1000 cycles with extremely low fading rate (FR) of 0.016% per cycle. Furthermore, the cathode still shows high cycling stability at high C-rate of 4 C (capacity of 647 mAh g−1 after 650 cycles, FR 0.027%) and high sulfur loading of 3 and 6 mg cm−2 for Li–S batteries.https://doi.org/10.1007/s40820-019-0341-6Spray drying methodN-Ti3C2 MXene@CNT microspheresNitrogen-dopingHigh cycling stabilityLithium–sulfur battery
collection DOAJ
language English
format Article
sources DOAJ
author Jianli Wang
Zhao Zhang
Xufeng Yan
Shunlong Zhang
Zihao Wu
Zhihong Zhuang
Wei-Qiang Han
spellingShingle Jianli Wang
Zhao Zhang
Xufeng Yan
Shunlong Zhang
Zihao Wu
Zhihong Zhuang
Wei-Qiang Han
Rational Design of Porous N-Ti3C2 MXene@CNT Microspheres for High Cycling Stability in Li–S Battery
Nano-Micro Letters
Spray drying method
N-Ti3C2 MXene@CNT microspheres
Nitrogen-doping
High cycling stability
Lithium–sulfur battery
author_facet Jianli Wang
Zhao Zhang
Xufeng Yan
Shunlong Zhang
Zihao Wu
Zhihong Zhuang
Wei-Qiang Han
author_sort Jianli Wang
title Rational Design of Porous N-Ti3C2 MXene@CNT Microspheres for High Cycling Stability in Li–S Battery
title_short Rational Design of Porous N-Ti3C2 MXene@CNT Microspheres for High Cycling Stability in Li–S Battery
title_full Rational Design of Porous N-Ti3C2 MXene@CNT Microspheres for High Cycling Stability in Li–S Battery
title_fullStr Rational Design of Porous N-Ti3C2 MXene@CNT Microspheres for High Cycling Stability in Li–S Battery
title_full_unstemmed Rational Design of Porous N-Ti3C2 MXene@CNT Microspheres for High Cycling Stability in Li–S Battery
title_sort rational design of porous n-ti3c2 mxene@cnt microspheres for high cycling stability in li–s battery
publisher SpringerOpen
series Nano-Micro Letters
issn 2311-6706
2150-5551
publishDate 2019-12-01
description Abstract Herein, N-Ti3C2@CNT microspheres are successfully synthesized by the simple spray drying method. In the preparation process, HCl-treated melamine (HTM) is selected as the sources of carbon and nitrogen. It not only realizes in situ growth of CNTs on the surface of MXene nanosheets with the catalysis of Ni, but also introduces efficient N-doping in both MXene and CNTs. Within the microsphere, MXene nanosheets interconnect with CNTs to form porous and conductive network. In addition, N-doped MXene and CNTs can provide strong chemical immobilization for polysulfides and effectively entrap them within the porous microspheres. Above-mentioned merits enable N-Ti3C2@CNT microspheres to be ideal sulfur host. When used in lithium–sulfur (Li–S) battery, the N-Ti3C2@CNT microspheres/S cathode delivers initial specific capacity of 927 mAh g−1 at 1 C and retains high capacity of 775 mAh g−1 after 1000 cycles with extremely low fading rate (FR) of 0.016% per cycle. Furthermore, the cathode still shows high cycling stability at high C-rate of 4 C (capacity of 647 mAh g−1 after 650 cycles, FR 0.027%) and high sulfur loading of 3 and 6 mg cm−2 for Li–S batteries.
topic Spray drying method
N-Ti3C2 MXene@CNT microspheres
Nitrogen-doping
High cycling stability
Lithium–sulfur battery
url https://doi.org/10.1007/s40820-019-0341-6
work_keys_str_mv AT jianliwang rationaldesignofporousnti3c2mxenecntmicrospheresforhighcyclingstabilityinlisbattery
AT zhaozhang rationaldesignofporousnti3c2mxenecntmicrospheresforhighcyclingstabilityinlisbattery
AT xufengyan rationaldesignofporousnti3c2mxenecntmicrospheresforhighcyclingstabilityinlisbattery
AT shunlongzhang rationaldesignofporousnti3c2mxenecntmicrospheresforhighcyclingstabilityinlisbattery
AT zihaowu rationaldesignofporousnti3c2mxenecntmicrospheresforhighcyclingstabilityinlisbattery
AT zhihongzhuang rationaldesignofporousnti3c2mxenecntmicrospheresforhighcyclingstabilityinlisbattery
AT weiqianghan rationaldesignofporousnti3c2mxenecntmicrospheresforhighcyclingstabilityinlisbattery
_version_ 1724384424986935296