纳米碳nanodotsWO3 Z-scheme广谱下复合材料光催化性能显著提高:(Carbon nanodotsWO3 nanorods Z-scheme composites Remarkably enhanced photocatalytic performance under broad spectrum).pdfVIP
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Applied Catalysis B: Environmental 209 (2017) 253–264
Contents lists available at ScienceDirect
Applied Catalysis B: Environmental
j o u r na l h o m e p ag e: w w w. elsev /locate/apc atb
Carbon nanodots/WO3 nanorods Z-scheme composites: Remarkably
enhanced photocatalytic performance under broad spectrum
Jun Zhang a , Yue Ma a , Yilin Du a , Huizhong Jiang a , Dandan Zhou b , Shuangshi Dong a,∗
a Key Laboratory of Groundwater Resources and Environment, Ministry of Education, Jilin University, Changchun, 130021,Jilin, China
b School of Environment, Northeast Normal University, Changchun 1l30117,Jilin, China
a r t i c l e i n f o a b s t r a c t
Article history: The search for low-cost, earth-abundant and environmentally friendly photocatalysts that can efficiently
Received 7 January 2017 function over the entire UV–vis–NIR spectrum remains one of the most pressing challenges in the
Received in revised form 28 February 2017 photocatalytic elimination of pollutants from water. Herein, we accurately designed and fabricated a
Accepted 2 March 2017 direct Z-scheme carbon nanodots/WO3 nanorods composite (CDots/WO3 ) with highly enhanced photo-
Available online 6 March 2017
response and broad-spectrum photocatalytic activity. Under ultraviolet, visible, near-infrared (UV, Vis,
NIR) irradiation, respectively, the removal efficiencies of rhodamine B (RhB) always decreased in the order
Keywords:
CDots/WO
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