TY - JOUR
T1 - Recent progress in iodine capture by macrocycles and cages
AU - Zhou, Weinan
AU - Lavendomme, Roy
AU - Zhang, Dawei
N1 - Publisher Copyright:
© 2024 The Royal Society of Chemistry.
PY - 2023/12/13
Y1 - 2023/12/13
N2 - The effective capture of radioiodine is vital to the development of the nuclear industry and ecological environmental protection. There is, therefore, a continuously growing research exploration in various types of solid-state materials for iodine capture. During the last decade, the potential of using macrocycle and cage-based supramolecular materials in effective uptake and separation of radioactive iodine has been demonstrated. Interest in the application of these materials in iodine capture originates from their diversified porous characteristics, abundant host-guest chemistry, high iodine affinity and adsorption capacity, high stability in various environments, facile modification and functionalization, and intrinsic structural flexibility, among other attributes. Herein, recent progress in macrocycle and cage-based solid-state materials, including pure discrete macrocycles and cages, and their polymeric forms, for iodine capture is summarized and discussed with an emphasis on iodine capture capacities, mechanisms, and design strategies.
AB - The effective capture of radioiodine is vital to the development of the nuclear industry and ecological environmental protection. There is, therefore, a continuously growing research exploration in various types of solid-state materials for iodine capture. During the last decade, the potential of using macrocycle and cage-based supramolecular materials in effective uptake and separation of radioactive iodine has been demonstrated. Interest in the application of these materials in iodine capture originates from their diversified porous characteristics, abundant host-guest chemistry, high iodine affinity and adsorption capacity, high stability in various environments, facile modification and functionalization, and intrinsic structural flexibility, among other attributes. Herein, recent progress in macrocycle and cage-based solid-state materials, including pure discrete macrocycles and cages, and their polymeric forms, for iodine capture is summarized and discussed with an emphasis on iodine capture capacities, mechanisms, and design strategies.
UR - https://www.scopus.com/pages/publications/85180598799
U2 - 10.1039/d3cc05337g
DO - 10.1039/d3cc05337g
M3 - 文献综述
C2 - 38126398
AN - SCOPUS:85180598799
SN - 1359-7345
VL - 60
SP - 779
EP - 792
JO - Chemical Communications
JF - Chemical Communications
IS - 7
ER -