Ir directamente a la navegación principal Ir directamente a la búsqueda Ir directamente al contenido principal

Dual function organic active materials for nonaqueous redox flow batteries

  • N. Harsha Attanayake
  • , Zhiming Liang
  • , Yilin Wang
  • , Aman Preet Kaur
  • , Sean R. Parkin
  • , Justin K. Mobley
  • , Randy H. Ewoldt
  • , James Landon
  • , Susan A. Odom

Producción científica: Articlerevisión exhaustiva

41 Citas (Scopus)

Resumen

Nonaqueous electrolytes require the inclusion of supporting salts to achieve sufficient conductivity for battery applications. In redox flow batteries (RFBs) wherein solutions contain active species at molar values, the presence of supporting salts can reduce the solubility of organic active materials, limiting battery capacity. Here we sought to design organic materials in which permanently charged substituents keep ionic conductivity high while at the same time increasing the maximum concentration of the charge-storing redox moiety to operate all organic supporting-salt-free full flow cell cycling for the first time. Toward this goal, we synthesized redox-active phenothiazine and viologen derivatives bearing permanent charges. We employed these highly soluble materials as RFB electrolytes without adding supporting salts. Using an anion-selective membrane, a flow cell containing 0.25 M active species cycled stably over 100 cycles (433 h), losing an average of only 0.14% capacity per cycle and 0.75% per day, with post-cycling analysis showing no evidence of decomposition. Further, higher concentration cycling (0.75 M-electron) accessing both reductions of viologen, achieved a cell potential of 1.80 V with 18.3 A h L-1, high volumetric capacity, only losing an average of 0.90% capacity per day. These results show a new avenue to improve two performance aspects with one molecular modification.

Idioma originalEnglish
Páginas (desde-hasta)1390-1401
Número de páginas12
PublicaciónMaterials Advances
Volumen2
N.º4
DOI
EstadoPublished - 2021

Nota bibliográfica

Publisher Copyright:
© The Royal Society of Chemistry.

Financiación

The Ewoldt and Odom groups thank the Department of Energy for funding through the Joint Center for Energy Storage Research. The Odom group thanks the National Science Foundation for support (CBET Award 1805103). Sean Parkin thanks the NSF MRI program, award CHE-1625732. We also thank the group of Fikile Brushett for providing flow cells and advice in cycling experiments. We thank Jeff Babbit for making the H cells used in crossover studies.

FinanciadoresNúmero del financiador
U.S. Department of Energy EPSCoR
Joint Center for Energy Storage Research
National Science Foundation Arctic Social Science Program1805103, CHE-1625732

    ASJC Scopus subject areas

    • Chemistry (miscellaneous)
    • General Materials Science

    Huella

    Profundice en los temas de investigación de 'Dual function organic active materials for nonaqueous redox flow batteries'. En conjunto forman una huella única.

    Citar esto