MXene Jacketed Amorphous Ga2O3 Nanofibers Modulate the Fiber Surface-Rich Electron for Boosted Electrocatalytic
Bingbing Liu1, Wenkun Chen2, Siyu Qiang1
1State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Textiles, Donghua University, Shanghai 201620, China.
Abstract:
Nitrogen (N2) activation and the hydrogen evolution reaction pose significant limitations on the electrocatalytic nitrogen reduction reaction (NRR) performance. The exclusive electronic structure of the main group elements has the advantage of inhibiting hydrogen generation in electrochemical NRR. However, the poor conductivity and activity remain the obstacles to its application. Herein, we report a combination strategy of cation-induced amorphous Ga2O3 nanofibers and heterostructure engineering, thereby effectively enhancing electrocatalytic performance. The amorphization of Ga2O3 nanofibers generates more oxygen vacancies that enhance the N2 activation and electron transfer ability. Additionally, by constructing heterogeneous structures to drive the charge transfer, we enrich electronics on the surface of a-Ga2O3 nanofibers and increase their catalytic activity. Thus, the a-Ga2O3/MXene nanofibers deliver the NH3 yield of 50.00 μg h-1 mg-1 and FE of 19.13% at -0.35 V. We anticipate that these findings will offer a new reference value for further ammonia synthesis research on Ga2O3 materials.


