Maji Suman, Natarajan Ramalingam
Organic and Medicinal Chemistry, CSIR-Indian Institute of Chemical Biology, 4 Raja S C Mullick Road, Kolkata, 700032, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
Small. 2023 Nov;19(44):e2302902. doi: 10.1002/smll.202302902. Epub 2023 Jul 2.
There is a strong and urgent need for efficient materials that can capture radioactive iodine atoms from nuclear waste. This work presents a novel strategy to develop porous materials for iodine capture by employing halogen bonding, mechanochemistry and crystal engineering. 3D halogen-bonded organic frameworks (XOFs) with guest-accessible permanent pores are exciting targets in crystal engineering for developing functional materials, and this work reports the first example of such a structure. The new-found XOF, namely TIEPE-DABCO, exhibits enhanced emission in the solid state and turn-off emission sensing of acid vapors and explosives like picric acid in nanomolar quantity. TIEPE-DABCO captures iodine from the gas phase (3.23 g g at 75 °C and 1.40 g g at rt), organic solvents (2.1 g g ), and aqueous solutions (1.8 g g in the pH range of 3-8); the latter with fast kinetics. The captured iodine can be retained for more than 7 days without any leaching, but readily released using methanol, when required. TIEPE-DABCO can be recycled for iodine capture several times without any loss of storage capacity. The results presented in this work demonstrate the potential of mechanochemical cocrystal engineering with halogen bonding as an approach to develop porous materials for iodine capture and sensing.
迫切需要高效的材料来从核废料中捕获放射性碘原子。这项工作提出了一种新策略,通过利用卤键、机械化学和晶体工程来开发用于捕获碘的多孔材料。具有客体可及永久孔的三维卤键有机骨架(XOFs)是晶体工程中开发功能材料的令人兴奋的目标,这项工作报道了这种结构的首个实例。新发现的XOF,即TIEPE-DABCO,在固态下表现出增强的发射以及对酸蒸气和纳摩尔量苦味酸等炸药的猝灭发射传感。TIEPE-DABCO从气相(75°C时为3.23 gg,室温时为1.40 gg)、有机溶剂(2.1 gg)和水溶液(pH值为3 - 8时为1.8 gg)中捕获碘;后者具有快速动力学。捕获的碘可以保留7天以上而无任何浸出,但在需要时可使用甲醇轻松释放。TIEPE-DABCO可以多次循环用于碘捕获而不会损失任何存储容量。这项工作展示的结果表明,以卤键为手段的机械化学共晶工程作为一种开发用于碘捕获和传感的多孔材料的方法具有潜力。