<p>As a class of functional crystalline porous materials, metal-organic frameworks (MOFs) gained rapid development in the past three decades and a large number of MOFs with ordered structures, high surface areas, and functionalized channels have been investigated. MOFs and MOF-derived/composite materials show great potential in many application fields. In this review, we discussed the main applications of MOFs and MOF-derived/composite materials in small molecule storage, separation, luminescence, sensing, multitype catalysis, and energy storage. In addition, challenges and problems in the future research of MOFs-related fields are also discussed.</p>

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Recent progress in metal-organic frameworks (Part II—material application)

  • Jiandong Pang,
  • Wentao Jiang,
  • Xue-Wen Zhang,
  • Hao-Long Zhou,
  • Yuxiu Sun,
  • Wei Gong,
  • Bin Wang,
  • Fuyin Ma,
  • Linwei He,
  • Long Chen,
  • Qiang Chen,
  • He-Qi Zheng,
  • Yuanjing Cui,
  • Wen-Jie Shi,
  • Chao Zhang,
  • Mei Wang,
  • Yue-Biao Zhang,
  • Jie-Peng Zhang,
  • Chongli Zhong,
  • Yong Cui,
  • Shuao Wang,
  • Jian-Rong Li,
  • Guodong Qian,
  • Tong-Bu Lu,
  • Huan Pang,
  • Xian-He Bu

摘要

As a class of functional crystalline porous materials, metal-organic frameworks (MOFs) gained rapid development in the past three decades and a large number of MOFs with ordered structures, high surface areas, and functionalized channels have been investigated. MOFs and MOF-derived/composite materials show great potential in many application fields. In this review, we discussed the main applications of MOFs and MOF-derived/composite materials in small molecule storage, separation, luminescence, sensing, multitype catalysis, and energy storage. In addition, challenges and problems in the future research of MOFs-related fields are also discussed.