Related Experiment Video
Updated: Jul 15, 2026

Solvothermal Synthesis of MIL-96 and UiO-66-NH2 on Atomic Layer Deposited Metal Oxide Coatings on Fiber Mats
Published on: June 13, 2018
Bandgap Engineered Hybrid Covalent Organic Framework Nanofibrous Aerogels Enable Enhanced Photocatalytic Uranium
Binbin Fan1, Yanni Xia1, Yang Si2
1College of Textiles, Donghua University, Shanghai201620, China.
Abstract:
Covalent organic frameworks (COFs) hold great promise for photocatalytic applications, including uranium extraction from seawater (UES). However, the performance of single-component COF is often limited by the rapid recombination of photogenerated electron-hole pairs. To address this challenge, hybrid nanofibrous aerogels (PCNF-A-x) by integrating two photosensitive COFs with complementary bandgap structures and distinct particle and fiber shapes were constructed. This design promotes effective hybridization of COFs at the interface, leading to a minimized charge transfer resistance and an extended charge carrier lifetime of 7.86 ns. The optimized material achieves a remarkable uranium (U) adsorption capacity of 1023.88 mg/g in U-spiked natural seawater with a high removal rate of 99.99% and excellent photocatalytic stability (∼92.16% efficiency retention after 10 cycles). Moreover, it exhibits an attractive U adsorption amount of 8.60 mg/g from natural seawater after 28 days, coupled with exceptional selectivity (Kd = 1.96 × 106 mL/g) and robust mechanical properties. This work provides a rational design strategy for high-performance photocatalytic adsorbents and demonstrates their significant potential for UES.
