Novel Multivalent Rechargeable Ion Battery: An Organic Nickel Ion Battery with Li 3 V 2 (Po 4 ) 3  Cathode

34 Pages Posted: 16 Feb 2022

See all articles by Siyuan Chen

Siyuan Chen

South China University of Technology

Ni Wen

South China University of Technology

Chunmao Huang

South China University of Technology

Youzhong Dong

South China University of Technology

Quan Kuang

South China University of Technology

Qinghua Fan

South China University of Technology

Yanming Zhao

South China University of Technology

Abstract

Organic nickel ion battery using Ni 2+  as a charge carrier has yet to be explored due to the lack of workable electrolytes and high-performing Ni 2+  storage cathode materials to couple with the nickel metal anode. Herein, a feasible rechargeable organic nickel ion battery with an ether base electrolyte is demonstrated for the first time, in which Li 3 V 2 (PO 4 ) 3  and nickel foam as cathode and anode materials, respectively. The Li 3 V 2 (PO 4 ) 3  can demonstrate a high reversible specific capacity of 124 mAh g −1  at the rate of 1C and a stable cycle performance with 84% capacity retention after 50 cycles. In addition, a reversible insertion and extraction of Ni 2+  ions into the cathode structure is confirmed by XRD, XPS, and EDX studies. Finally, using in-situ X-ray diffraction technology and Rietveld refinement, the reaction mechanism and structural changes during the cycle process are analyzed in detail. Therefore, the results provide an avenue to explore the organic nickel ion battery as a novel energy storage technique for renewable energies.

Keywords: nickel ion batteries, organic electrolyte, Cathode materials, lithium vanadium phosphate

Suggested Citation

Chen, Siyuan and Wen, Ni and Huang, Chunmao and Dong, Youzhong and Kuang, Quan and Fan, Qinghua and Zhao, Yanming, Novel Multivalent Rechargeable Ion Battery: An Organic Nickel Ion Battery with Li 3 V 2 (Po 4 ) 3  Cathode. Available at SSRN: https://ssrn.com/abstract=3985158 or http://dx.doi.org/10.2139/ssrn.3985158

Siyuan Chen

South China University of Technology ( email )

Wushan
Guangzhou, AR 510640
China

Ni Wen

South China University of Technology ( email )

Wushan
Guangzhou, AR 510640
China

Chunmao Huang

South China University of Technology ( email )

Wushan
Guangzhou, AR 510640
China

Youzhong Dong

South China University of Technology ( email )

Wushan
Guangzhou, AR 510640
China

Quan Kuang

South China University of Technology ( email )

Wushan
Guangzhou, AR 510640
China

Qinghua Fan

South China University of Technology ( email )

Wushan
Guangzhou, AR 510640
China

Yanming Zhao (Contact Author)

South China University of Technology ( email )

Wushan
Guangzhou, AR 510640
China

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