化学
降级(电信)
电化学
激素
化学工程
电极
无机化学
水溶液
生物化学
生物物理学
作者
Juliana de Almeida,Ana Carolina Ribeiro Felix,Gabriela Maria Previde,Rodnei Bertazzoli,Georgia Christina Labuto Araújo,Christiane de Arruda Rodrigues
标识
DOI:10.1021/acsanm.5c04113
摘要
High Resolution Image Download MS PowerPoint Slide Combining adsorbents with photocatalysts is promising for treating waters containing trace pollutants, but typical adsorbents have low photoactivity and can shade the catalyst when unevenly dispersed. We report a copper-based metal–organic framework (Cu-MOF) grown electrochemically from Cu nanoparticles uniformly anchored on Ti–O–W nanotubular oxides (TWNT@Cu-MOF(ED)). These electrodes were evaluated for the photoelectrochemical degradation of the endocrine disruptors estrone (E1) and 17α-ethinylestradiol (EE2) and compared to spray-coated electrodes prepared with solvothermal Cu-MOF particles (TWNT@Cu-MOF(SC)). TWNT@Cu-MOF(ED) achieved higher degradation efficiencies for both targets, attributable to conformal MOF coverage that minimizes light-blocking and enhances photon utilization. Residual copper-oxide species formed during electrosynthesis further suppressed electron–hole recombination, boosting the formation of reactive oxygen species ( • O 2 –, • OH). Under continuous operation, TWNT@Cu-MOF(ED) maintained stable performance without adsorbent saturation or the need for regeneration, whereas TWNT@Cu-MOF(SC) showed a transient efficiency loss due to contaminant buildup in MOF cavities; activity was fully restored by a brief chronoamperometric regeneration. These findings establish electrochemical deposition as an effective route to integrate MOFs on conductive supports with controlled growth and uniform dispersion, enabling sustained pollutant removal.
科研通智能强力驱动
Strongly Powered by AbleSci AI