Heterojunction composites with intima.e interfa.es ca. shorten the diffusion dista.ce,which lea.s to a.shorter pa.h for photogenera.ed ca.riers,thereby increa.ing photoca.a.ytic ***,we reportthe fa.rica.ion of ti_(3)...
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Heterojunction composites with intima.e interfa.es ca. shorten the diffusion dista.ce,which lea.s to a.shorter pa.h for photogenera.ed ca.riers,thereby increa.ing photoca.a.ytic ***,we report the fa.rica.ion of ti_(3)C_(2)-Bi_(2)WO_(6)(tC-BW)heterojunctions hinged by Bi_(2)ti_(2)O_(7)joints via.a. in situ hydrotherma. rea.tion of ti_(3)C_(2)in the presence of Na.(2)WO_(4)a.d Bi(NO_(3))_(3).the tC-BW wa. cha.a.terized using X-ra. diffra.tion(XRD),sca.ning tra.smission electron microscopy(StEM),a.d Ra.a. ***-BW showed superior photoca.a.ytic a.tivity(productivity over 15tC-WB rea.hes up to 5.0 mmolrea.ted Ba.gca..^(−1)·h^(−1))in the oxida.ion of benzyl a.cohol using light-emitting diode(LED)light,a.ising from the surfa.e defects a.d intima.e heterojunction interfa.e between the ti_(3)C_(2)MXene a.d Bi_(2)WO_(6)***-BW heterojunctions provide a. enha.ced sepa.a.ion efficiency of photogenera.ed cha.ges,which in turn yields superior photoca.a.ytic ***,it is well substa.tia.ed by density functiona. theory(DFt)*** summa.y,this study elucida.es the prepa.a.ion of heterojunction composites with intima.e interfa.es for highly efficient photooxida.ion.
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