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Modified KBBF-like Material for Energy Storage Applications: ZnNiBO 3 (OH) with Enhanced Cycle Life.

Iftikhar HussainTanveer HussainMuhammad AhmadXiaoxia MaMuhammad Sufyan JavedCharmaine LamielYatu ChenRajeev AhujaKaili Zhang
Published in: ACS applied materials & interfaces (2022)
Not only are new and novel materials sought for electrode material development, but safe and nontoxic materials are also highly being intensively investigated. Herein, we prepare ZnNiBO 3 (OH) (ZNBH), a modified and Be-free KBe 2 BO 3 F 2 (KBBF) family member as an effective electrode material. The novel ZNBH resembles the KBBF structure but with reinforced structure and bonding, in addition to well-incorporated conductive metals benefiting supercapacitor applications. The enhanced electronic properties of ZNBH are further studied by means of density functional theory calculations. The as-prepared ZNBH electrode material exhibits a specific capacity of 746 C g -1 at a current density of 1 A g -1 . A hybrid supercapacitor (HSC) device is fabricated and successfully illuminated multiple color LEDs. Interestingly, even after being subjected to long charge-discharge for 10 000 cycles, the ZNBH//AC HSC device retains 97.2% of its maximum capacity, indicating the practicality of ZNBH as an electrode material.
Keyphrases
  • density functional theory
  • solid state
  • molecular dynamics
  • reduced graphene oxide
  • carbon nanotubes
  • gold nanoparticles
  • human health
  • molecular dynamics simulations