Login / Signup

Porous crystalline conjugated macrocyclic materials and their energy storage applications.

Yiwen YangXiaoman YaoZhe XuanXuanxu ChenYuluan ZhangTaoping HuangMingjin ShiYifa ChenYa-Qian Lan
Published in: Materials horizons (2024)
Porous crystalline conjugated macrocyclic materials (CMMs) possess high porosity, tunable structure/function and efficient charge transport ability owing to their planar macrocyclic conjugated π-electron system, which make them promising candidates for applications in energy storage. In this review, we thoroughly summarize the timely development of porous crystalline CMMs in energy storage related fields. Specifically, we summarize and discuss their structures and properties. In addition, their energy storage applications, such as lithium ion batteries, lithium sulfur batteries, sodium ion batteries, potassium ion batteries, Li-CO 2 batteries, Li-O 2 batteries, Zn-air batteries, supercapacitors and triboelectric nanogenerators, are also discussed. Finally, we present the existing challenges and future prospects. We hope this review will inspire the development of advanced energy storage materials based on porous crystalline CMMs.
Keyphrases
  • ion batteries
  • solid state
  • room temperature
  • highly efficient
  • current status
  • tissue engineering
  • heavy metals
  • gold nanoparticles
  • electron microscopy
  • energy transfer