Synthesis of electroactive nickel hydroxide using nickel tetrafluoroborate as novel metal precursor and structure directing agent in different solvents for energy storage application

บทความในวารสาร


ผู้เขียน/บรรณาธิการ


กลุ่มสาขาการวิจัยเชิงกลยุทธ์


รายละเอียดสำหรับงานพิมพ์

รายชื่อผู้แต่งYou X.-Y.; Lee P.-Y.; Wang S.-C.; Kongvarhodom C.; Saukani M.; Yougbaré S.; Chen H.-M.; Ho K.-C.; Wu Y.-F.; Lin L.-Y.

ผู้เผยแพร่Elsevier

ปีที่เผยแพร่ (ค.ศ.)2025

Volume number109

นอก2352-152X

eISSN2352-1538

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85213516708&doi=10.1016%2fj.est.2024.115135&partnerID=40&md5=d75bb8893e74701006d45638d5fe369b

ภาษาEnglish-Great Britain (EN-GB)


ดูบนเว็บไซต์ของสำนักพิมพ์


บทคัดย่อ

Nickel hydroxide (Ni(OH)2) is widely applied as the electroactive material for energy storage, due to its large theoretical capacitance and high stability in alkaline electrolytes. Morphology of electroactive material plays an important role in energy storage. Structure directing agent (SDA) is incorporated to design favorable morphology of electroactive materials. Ammonium fluoroborate has been reported as efficient SDA to design ZIF-67 derivatives for energy storage. The BF4− ion acts as steric obstacles for regulating material growth. In this study, nickel tetrafluoroborate (Ni(BF4)2) is firstly applied as the nickel precursor and SDA to synthesize Ni(OH)2 as the electroactive material for energy storage. To mimic the environment for synthesizing ZIF-67 derivatives, 2-methylimidazole is incorporated to control the pH value to induce precipitations. The solvent effects based on ethanol, methanol and deionized water are investigated due to the novel combination of precursors. The Ni(OH)2 electrode synthesized using ethanol shows a specific capacitance (CF) of 1404.0 F/g at 20 mV/s, due to the largest electrochemical surface area and the pure alpha phase. An asymmetric supercapacitor composed of optimal Ni(OH)2 obtains a maximum energy density of 63.1 Wh/kg at 700.0 W/kg. The CF retention of 93.1% and Coulombic efficiency of 96.3% after 7000 cycles are also attained. © 2024 Elsevier Ltd


คำสำคัญ

ไม่พบข้อมูลที่เกี่ยวข้อง


อัพเดทล่าสุด 2025-01-09 ถึง 12:00