25. Tani T (1995) Photographic sensitivity theory and mechanisms. Oxford University Press,
New York
26. Tian B-Z, Zhang J-L (2012) Morphology-controlled synthesis and applications of silver halide
photocatalytic materials. Catal Surv Jpn 16:210–230
27. Tani T (2011) Photographic sensitivity advances in nanoparticles, J-aggregates, dye sensitization, and organic devices. Oxford University Press, Oxford/New York
28. Cox R-J (1973) Photographic sensitivity. Academic Press Inc (London) LT, London
29. Kakuta N, Goto N, Ohkita H, Mizushima T (1999) Silver bromide as a photocatalyst for
hydrogen generation from CH 3 OH/H 2 O solution. J Phys Chem B 103:5917–5919
30. Schürch D, Currao A, Sarkar S, Hodes G, Calzaferri G (2002) The silver chloride photoanode
in photoelectrochemical water splitting. J Phys Chem B 106:12764–12775
31. Pfanner K, Gfeller N, Calzaferri G (1996) Photochemical oxidation of water with thin AgCl
layers. J Photochem Photobiol A 95:175–180
32. Hu C, Lan Y-Q, Qu J-H, Hu X-X, Wang A-M (2006) Ag/AgBr/TiO 2 visible light
photocatalyst for destruction of azodyes and bacteria. J Phys Chem B 110:4066–4072
33. Wang P, Huang B-B, Qin X-Y, Zhang X-Y, Dai Y, Wei J-Y, Whangbo M-H (2008)
Ag@AgCl: a highly efficient and stable photocatalyst active under visible light. Angew
Chem Int Ed 47:7931–7933
34. Wikipedia. www.en.wikipedia.org
35. Tian B-Z, Dong R-F, Zhang J-M, Bao S-Y, Yang F, Zhang J-L (2014) Sandwich-structured
AgCl@Ag@TiO 2 with excellent visible-light photocatalytic activity for organic pollution
degradation and E. coli K12 inactivation. Appl Catal B 158À159:76–84
36. Bao S-Y, Wang Z-Q, Gong X-Q, Zeng C-Y, Wu Q-F, Tian B-Z, Zhang J-L (2016) AgBr
tetradecahedrons with co-exposed {100} and {111} facets: simple fabrication and enhancing
spatial charge separation using facet heterojunction. J Mater Chem A 4:18570–18577
37. Lin H-L, Cao J, Luo B-D, Xu B-Y, Chen S-F (2012) Synthesis of novel Z-scheme AgI/Ag/
AgBr composite with enhanced visible light photocatalytic activity. Catal Commun 21:91–95
38. Tao Q-S, Yang F, Teng F, Wu P-Y, Tian B-Z, Zhang J-L (2015) Study of the factors
influencing the photo-stability of Ag@AgBr plasmonic photocatalyst. Res Chem Intermed
41:7285–7297
39. Zeng C-Y, Guo M, Tian B-Z, Zhang J-L (2013) Reduced graphene oxide modified Ag/AgBr
with enhanced visible light photocatalytic activity for methyl orange degradation. Chem Phys
Lett 575:81–85
40. Zhu J, Li C-J, Teng F, Tian B-Z, Zhang J-L (2015) Recyclable Ag@AgBr-gelatin film with
superior visible-light photocatalytic activity for organic degradation. Res Chem Intermed
41:9715–9730
41. Dong R-F, Tian B-Z, Zeng C-Y, Li T-Y, Wang T-T, Zhang J-L (2013) Ecofriendly synthesis
and photocatalytic activity of uniform cubic Ag@AgCl plasmonic photocatayst. J Phys Chem
C 117:213–220
42. Zeng C-Y, Tian B-Z, Zhang J-L (2013) Silver halide/silver iodide@silver composite with
excellent visible light photocatalytic activity for methyl orange degradation. J Colloid Interface Sci 405:17–21
43. Dong R-F, Tian B-Z, Zhang J-L, Wang T-T, Tao Q-S, Bao S-Y, Yang F, Zeng C-Y (2013)
AgBr@Ag/TiO 2 core-shell composite with excellent visible light photocatalytic activity and
hydrothermal stability. Catal Commun 38:16–20
44. Zhang P, Wu P-Y, Bao S-Y, Wang Z, Tian B-Z, Zhang J-L (2016) Synthesis of sandwichstructured AgBr@Ag@TiO 2 composite photocatalyst and study of its photocatalytic performance for the oxidation of benzyl alcohols to benzaldehydes. Chem Eng J 306:1151–1161
45. Yang F, Tian B-Z, Zhang J-L, Xiong T-Q, Wang T-T (2014) Preparation, characterization, and
photocatalytic activity of porous AgBr@Ag and AgBrI@Ag plasmonic photocatalysts. Appl
Surf Sci 292:256–261
46. Bi Y-P, Ye J-H (2010) Direct conversion of commercial silver foils into high aspect ratio AgBr
nanowires with enhanced photocatalytic properties. Chem Eur J 16:10327–10331
References
337
New York
26. Tian B-Z, Zhang J-L (2012) Morphology-controlled synthesis and applications of silver halide
photocatalytic materials. Catal Surv Jpn 16:210–230
27. Tani T (2011) Photographic sensitivity advances in nanoparticles, J-aggregates, dye sensitization, and organic devices. Oxford University Press, Oxford/New York
28. Cox R-J (1973) Photographic sensitivity. Academic Press Inc (London) LT, London
29. Kakuta N, Goto N, Ohkita H, Mizushima T (1999) Silver bromide as a photocatalyst for
hydrogen generation from CH 3 OH/H 2 O solution. J Phys Chem B 103:5917–5919
30. Schürch D, Currao A, Sarkar S, Hodes G, Calzaferri G (2002) The silver chloride photoanode
in photoelectrochemical water splitting. J Phys Chem B 106:12764–12775
31. Pfanner K, Gfeller N, Calzaferri G (1996) Photochemical oxidation of water with thin AgCl
layers. J Photochem Photobiol A 95:175–180
32. Hu C, Lan Y-Q, Qu J-H, Hu X-X, Wang A-M (2006) Ag/AgBr/TiO 2 visible light
photocatalyst for destruction of azodyes and bacteria. J Phys Chem B 110:4066–4072
33. Wang P, Huang B-B, Qin X-Y, Zhang X-Y, Dai Y, Wei J-Y, Whangbo M-H (2008)
Ag@AgCl: a highly efficient and stable photocatalyst active under visible light. Angew
Chem Int Ed 47:7931–7933
34. Wikipedia. www.en.wikipedia.org
35. Tian B-Z, Dong R-F, Zhang J-M, Bao S-Y, Yang F, Zhang J-L (2014) Sandwich-structured
AgCl@Ag@TiO 2 with excellent visible-light photocatalytic activity for organic pollution
degradation and E. coli K12 inactivation. Appl Catal B 158À159:76–84
36. Bao S-Y, Wang Z-Q, Gong X-Q, Zeng C-Y, Wu Q-F, Tian B-Z, Zhang J-L (2016) AgBr
tetradecahedrons with co-exposed {100} and {111} facets: simple fabrication and enhancing
spatial charge separation using facet heterojunction. J Mater Chem A 4:18570–18577
37. Lin H-L, Cao J, Luo B-D, Xu B-Y, Chen S-F (2012) Synthesis of novel Z-scheme AgI/Ag/
AgBr composite with enhanced visible light photocatalytic activity. Catal Commun 21:91–95
38. Tao Q-S, Yang F, Teng F, Wu P-Y, Tian B-Z, Zhang J-L (2015) Study of the factors
influencing the photo-stability of Ag@AgBr plasmonic photocatalyst. Res Chem Intermed
41:7285–7297
39. Zeng C-Y, Guo M, Tian B-Z, Zhang J-L (2013) Reduced graphene oxide modified Ag/AgBr
with enhanced visible light photocatalytic activity for methyl orange degradation. Chem Phys
Lett 575:81–85
40. Zhu J, Li C-J, Teng F, Tian B-Z, Zhang J-L (2015) Recyclable Ag@AgBr-gelatin film with
superior visible-light photocatalytic activity for organic degradation. Res Chem Intermed
41:9715–9730
41. Dong R-F, Tian B-Z, Zeng C-Y, Li T-Y, Wang T-T, Zhang J-L (2013) Ecofriendly synthesis
and photocatalytic activity of uniform cubic Ag@AgCl plasmonic photocatayst. J Phys Chem
C 117:213–220
42. Zeng C-Y, Tian B-Z, Zhang J-L (2013) Silver halide/silver iodide@silver composite with
excellent visible light photocatalytic activity for methyl orange degradation. J Colloid Interface Sci 405:17–21
43. Dong R-F, Tian B-Z, Zhang J-L, Wang T-T, Tao Q-S, Bao S-Y, Yang F, Zeng C-Y (2013)
AgBr@Ag/TiO 2 core-shell composite with excellent visible light photocatalytic activity and
hydrothermal stability. Catal Commun 38:16–20
44. Zhang P, Wu P-Y, Bao S-Y, Wang Z, Tian B-Z, Zhang J-L (2016) Synthesis of sandwichstructured AgBr@Ag@TiO 2 composite photocatalyst and study of its photocatalytic performance for the oxidation of benzyl alcohols to benzaldehydes. Chem Eng J 306:1151–1161
45. Yang F, Tian B-Z, Zhang J-L, Xiong T-Q, Wang T-T (2014) Preparation, characterization, and
photocatalytic activity of porous AgBr@Ag and AgBrI@Ag plasmonic photocatalysts. Appl
Surf Sci 292:256–261
46. Bi Y-P, Ye J-H (2010) Direct conversion of commercial silver foils into high aspect ratio AgBr
nanowires with enhanced photocatalytic properties. Chem Eur J 16:10327–10331
References
337
