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BiOCl composite with enhanced visible-light photocatalytic activity. Catal Commun
16:229–233
103. Kong L, Jiang Z, Lai H-H, Nicholls R-J, Xiao T-C, Jones M-O, Edwards P-P (2012) Unusual
reactivity of visible-light-responsive AgBr-BiOBr heterojunction photocatalysts. J Catal
293:116–125
104. Wang W-S, Du H, Wang R-X, Wen T, Xu A-W (2013) Heterostructured Ag 3 PO 4 /AgBr/Ag
plasmonic photocatalyst with enhanced photocatalytic activity and stability under visible light.
Nanoscale 5:3315–3321
105. Yang S-B, Xu D-B, Chen B-Y, Luo B-F, Shi W-D (2017) In-situ synthesis of a plasmonic
Ag/AgCl/Ag 2 O heterostructures for degradation of ciprofloxacin. Appl Catal B 204:602–610
106. Sang Y, Kuai L, Chen C-Y, Fang Z, Geng B-Y (2014) Fabrication of a visible-light-driven
plasmonic photocatalyst of AgVO 3 @AgBr@Ag nanobelt heterostructures. ACS Appl Mater
Interfaces 6:5061–5068
107. Zhang A-C, Zhang L-X, Lu H, Chen G-Y, Liu Z-C, Xiang J, Sun L-S (2016) Facile synthesis
of ternary Ag/AgBr-Ag 2 CO 3 hybrids with enhanced photocatalytic removal of elemental
mercury driven by visible light. J Hazar Mater 314:78–87
108. Bao S-Y, Wu Q-F, Chang S-Z, Tian B-Z, Zhang J-L (2017) Z-scheme CdS-Au-BiVO 4 with
enhanced photocatalytic activity for organic contaminant decomposition. Cat Sci Technol
7:124–132
109. Tada H, Mitsui T, Kiyonaga T, Akita T, Tanaka K (2006) All-solid-state Z-scheme in CdS–
Au–TiO 2 three-component nanojunction system. Nat Mater 5:782–786
110. Wang X-W, Liu G, Wang L-Z, Chen Z-G, Lu G-Q, Cheng H-M (2012) ZnO-CdS@Cd
heterostructure for effective photocatalytic hydrogen generation. Adv Energy Mater 2:42–46
111. Zhou P, Yu J-G, Jaroniec M (2014) All-solid-state Z-scheme photocatalytic systems. Adv
Mater 26:4920–4935
112. Iwase A, Ng Y-H, Ishiguro Y, Kudo A, Amal R (2011) Reduced graphene oxide as a solidstate electron mediator in Z-scheme photocatalytic water splitting under visible light. J Am
Chem Soc 133:11054–11057
113. Maeda K (2013) Z-scheme water splitting using two different semiconductor photocatalysts.
ACS Catal 3:1486–1503
114. Li H-Y, Sun Y-J, Cai B, Gan S-Y, Han D-X, Niu L, Wu T-S (2015) Hierarchically Z-scheme
photocatalyst of Ag@AgCl decorated on BiVO 4 (040) with enhancing photoelectrochemical
and photocatalytic performance. Appl Catal B 170À171:206–214
115. Qiao R, Mao M-M, Hu E-L, Zhong Y-J, Ning J-Q, Hu Y (2015) Facile formation of
mesoporous BiVO 4 /Ag/AgCl heterostructured microspheres with enhanced visible-light
photoactivity. Inorg Chem 54:9033–9039
116. Zhang J, Niu C-G, Ke J, Zhou L-F, Zeng G-M (2015) Ag/AgCl/Bi 2 MoO 6 composite
nanosheets: a plasmonic Z-scheme visible light photocatalyst. Catal Commun 59:30–34
117. Hou J-G, Wang Z, Yang C, Zhou W-L, Jiao S-Q, Zhu H-M (2013) Hierarchically plasmonic
Z-scheme photocatalyst of Ag/AgCl nanocrystals decorated mesoporous single-crystalline
metastable Bi 20 TiO 32 nanosheets. J Phys Chem C 117:5132–5141
118. Hou J-G, Yang C, Wang Z, Ji Q-H, Li Y-T, Huang G-C, Jiao S-Q, Zhu H-M (2013) Threedimensional Z-scheme AgCl/Ag/γ-TaON heterostructural hollow spheres for enhanced
visible-light photocatalytic performance. Appl Catal B 142À143:579–589
119. Wang X-F, Li S-F, Ma Y-Q, Yu H-G, Yu J-G (2011) H 2 WO 4 ÁH 2 O/Ag/AgCl composite
nanoplates: a plasmonic Z-scheme visible-light photocatalyst. J Phys Chem C
115:14648–14655
120. Yao X-X, Liu X-H (2014) One-pot synthesis of ternary Ag 2 CO 3 /Ag/AgCl photocatalyst in
natural geothermal water with enhanced photocatalytic activity under visible light irradiation. J
Hazard Mater 280:260–268
References
341
