Related Experiment Video
Updated: Aug 24, 2025

A Dual-Functional Electroactive Filter Towards Simultaneously SbIII Oxidation and Sequestration
Published on: December 5, 2019
Interfacial Charge-Modulated Multifunctional MoS2/Ti3C2T Penetrating Electrode for High-Efficiency Freshwater
Hantong Qie1, Meng Liu1, Xinping Fu1
1College of Chemical Engineering, Beijing University of Chemical Technology, Beijing100029, People's Republic of China.
Abstract:
Freshwater production is critical in terms of solving the global water shortage. Aiming at improving freshwater production capability and ensuring its quality, an interfacial charge-modulated MoS2/Ti3C2T-modified carbon fiber (CF/MoS2/Ti3C2T) penetrating electrode is designed. To maximize the desalination and degradation efficiencies of CF/MoS2/Ti3C2T, a photocatalytic component is introduced into the membrane capacitive deionization (PMCDI) device. High desalination capability is derived from the lamellar architecture structure of MoS2/Ti3C2T. Meanwhile, excellent degradation performance is due to the formation of two photoelctrocatalytic activity centers, directionally generating singlet oxygen (1O2) and hydroxyl radical (•OH). The intercalated Cl- (desalination) as the electron transfer bridge optimizes the charge distribution of MoS2/Ti3C2T, reinforcing the photoelectrocatalytic activity (degradation). The formation of the electron-deficient (desalination) and electron-rich (regeneration) regions at the terminated O atom of Ti3C2T accelerate the generations of •OH and 1O2, respectively. In perspective, a mutual promotion process of desalination and degradation is achieved for high-efficiency production of high-quality freshwater.
Related Concept Videos
Interfacial Electrochemical Methods: Overview
Potentiometry: Membrane Electrodes

