References
- Y. Nosaka, A.Y. Nosaka, Generation and detection of reactive
oxygen species in photocatalysis, Chem. Rev., 117 (2017)
11302–11336.
- J.L. Hu, X. Wu, C.J. Huang, W.J. Fan, X.Q. Qiu, Visible light
photocatalytic activity induced by Rh(III) modification on the
surface of BiOCl, Appl. Surf. Sci., 387 (2016) 45–50.
- C.X. Yan, Z.L. Zhang, W.J. Wang, T.Z. Ju, H.D. She, Q.Z. Wang,
Synthesis and characterization of polyaniline-modified BiOI:
a visible-light-response photocatalyst, J. Mater. Sci. - Mater.
Electron., 29 (2018) 18343–18351.
- R.-A. He, S.-W. Cao, J.-G. Yu, Recent advances in morphology
control and surface modification of Bi-Based photocatalysts,
Acta Phys. Chim. Sin., 12 (2016) 2841–2870.
- S.W. Cao, J.G. Yu, Carbon-based H2-production photocatalytic
materials, J. Photochem. Photobiol., C, 27 (2016) 72–99.
- L. Yuan, Y.-J. Xu, Photocatalytic conversion of CO2 into valueadded
and renewable fuels, Appl. Surf. Sci., 342 (2015) 154–167.
- J.Q. Wen, X. Li, H.Q. Li, S. Ma, K.L. He, Y.H. Xu, Y.P. Fang, W.
Liu, Q.Z. Gao, Enhanced visible-light H2 evolution of g-C3N4
photocatalysts via the synergetic effect of amorphous NiS and
cheap metal-free carbon black nanoparticles as co-catalysts,
Appl. Surf. Sci., 358 (2015) 204–212.
- M. Yang, Q. Yang, J.B. Zhong, J.Z. Li, S.T. Huang, X.J. Li, PVAassisted
hydrothermal preparation of BiOF with remarkably
enhanced photocatalytic performance, Mater. Lett., 201 (2017)
35–38.
- Z.W. Zou, H.M. Xu, D.Y. Li, J.Y. Sun, D.S. Xia, Facile preparation
and photocatalytic activity of oxygen vacancy rich BiOCl with
{0 0 1} exposed reactive facets, Appl. Surf. Sci., 463 (2019)
1011–1018.
- D.M. Ma, J.B. Zhong, J.Z. Li, L. Wang, R.F. Peng, Enhanced
photocatalytic activity of BiOCl by C70 modification and
mechanism insight, Appl. Surf. Sci., 443 (2018) 497–505.
- B.Y. Xu, Y. An, Y.Y. Liu, X.Y. Qin, X.Y. Zhang, Y. Dai,
Z.Y. Wang, P. Wang, M.-H. Whangbo, B.B. Huang, Enhancing
the photocatalytic activity of BiOX (X = Cl, Br, and I), (BiO)2CO3
and Bi2O3 by modifying their surfaces with polar organic
anions, 4-substituted thiophenolates, J. Mater. Chem. A, 5 (2017)
14406–14414.
- S. Zhao, Y.W. Zhang, Y.M. Zhou, K.B. Qiu, C. Zhang, J.S. Fang,
X.L. Sheng, Reactable polyelectrolyte-assisted preparation
of flower-like Ag/AgCl/BiOCl composite with enhanced
photocatalytic activity, J. Photochem. Photobiol., A, 350 (2018)
94–102.
- C.-Y. Wang, Y.-J. Zhang, W.-K. Wang, D.-N. Pei, G.-X. Huang,
J.-J. Chen, X. Zhang, H.-Q. Yu, Enhanced photocatalytic
degradation of bisphenol A by Co-doped BiOCl nanosheets
under visible light irradiation, Appl. Catal., B, 221 (2018)
320–328.
- F.-t. Li, Y.-l. Li, M.-j. Chai, B. Li, Y.-j. Hao, X.-j. Wang, R.-h. Liu,
One-step construction of {001} facet-exposed BiOCl hybridized
with Al2O3 for enhanced molecular oxygen activation, Catal.
Sci. Technol., 6 (2016) 7985–7995.
- J.F. Zhang, J.L. Lv, K. Dai, C.H. Liang, Q. Liu, One-step growth
of nanosheet-assembled BiOCl/BiOBr microspheres for highly
efficient visible photocatalytic performance, Appl. Surf. Sci.,
430 (2018) 639–646.
- J. Tian, Z.W. Chen, X.Y. Deng, Q. Sun, Z.Y. Sun, W.B. Li,
Improving visible light driving degradation of norfloxacin over
core-shell hierarchical BiOCl microspherical photocatalyst by
synergistic effect of oxygen vacancy and nanostructure, Appl.
Surf. Sci., 453 (2018) 373–382.
- G.Q. Zhang, L. Cai, Y.F. Zhang, Y. Wei, Bi5+, Bi(3–x)+, and oxygen
vacancy induced BiOClxI1–x solid solution toward promoting
visible-light driven photocatalytic activity, Chem. Eur. J.,
24 (2018) 7434–7444.
- K. Dong, X.M. Liu, H.F. Dong, X.P. Zhang, S.J. Zhang, Multiscale
studies on ionic liquids, Chem. Rev., 117 (2017) 6636–6695.
- Z.Q. Tian, S.M. Mahurin, S. Dai, D.-e. Jiang, Ion-gated gas
separation through porous graphene, Nano Lett., 17 (2017)
1802–1807.
- T. Cosby, Z. Vicars, M. Heres, K. Tsunashima, J. Sangoro,
Dynamic and structural evidence of mesoscopic aggregation
in phosphonium ionic liquids, J. Chem. Phys., 148 (2018)
193815–193822.
- Z.G. Chen, J. Zeng, J. Di, D.X. Zhao, M.X. Ji, J.X. Xia, H.M. Li,
Facile microwave-assisted ionic liquid synthesis of spherelike
BiOBr hollow and porous nanostructures with enhanced
photocatalytic performance, Green Energy Environ., 2 (2017)
124–133.
- M. Paszkiewicz, J. Łuczak, W. Lisowski, P. Patyk, A. Zaleska-Medynska, The ILs-assisted solvothermal synthesis of TiO2 spheres: the effect of ionic liquids on morphology and
photoactivity of TiO2, Appl. Catal., B, 184 (2016) 223–237.
- Y. Wang, K.J. Deng, L.Z. Zhang, Visible light photocatalysis of
BiOI and its photocatalytic activity enhancement by in situ ionic
liquid modification, J. Phys. Chem. C, 115 (2011) 14300–14308.
- Q. Yang, J.Z. Li, J.B. Zhong, C.Z. Cheng, Z. Xiang, J.F. Chen,
Enhanced solar photocatalytic performance of (BiO)2CO3 prepared with the assistance of ionic liquid, Mater. Lett., 192
(2017) 157–160.
- A. Bielicka–Giełdoń, P. Wilczewska, Anna Malankowska,
K. Szczodrowski, J. Ryl, A. Zielińska-Jurek, E.M. Siedlecka,
Morphology, surface properties and photocatalytic activity
of the bismuth oxyhalides semiconductors prepared by ionic
liquid assisted solvothermal method, Sep. Purif. Technol., 217
(2019) 164–173.
- C.Y. Yang, F. Li, T.H. Li, W. Cao, Ionic-liquid assisted ultrasonic
synthesis of BiOCl with controllable morphology and enhanced
visible light and sunlight photocatalytic activity, J. Mol. Catal.
A: Chem., 418 (2016) 132–137.
- C.Y. Yang, F. Li, T.H. Li, A one-step ionic liquid-assisted
ultrasonic method for the preparation of BiOCl/m-BiVO4
heterojunctions with enhanced visible light photocatalytic
activity, CrystEngComm, 17 (2015) 7676–7683.
- S.W. Zhu, C.Y. Yang, F. Li, T.H. Li, M. Zhang, W. Cao, Improved
photocatalytic Bi2WO6/BiOCl heterojunctions: one-step
synthesis via an ionic-liquid assisted ultrasonic method and
first-principles calculations, J. Mol. Catal., 435 (2017) 33–48.
- S. Yin, J. Di, M. Li, Y.L. Sun, J.X. Xia, H. Xu, W.M. Fan,
H.M. Li, Ionic liquid-assisted synthesis and improved
photocatalytic activity of p-n junction g-C3N4/BiOCl, J. Mater.
Sci., 51 (2016) 4769–4777.
- D.D. Cui, L. Wang, K. Xu, L. Ren, L. Wang, Y.X. Yu, Y. Du,
W.C. Hao, Band-gap engineering of BiOCl with oxygen
vacancies for efficient photooxidation properties under visiblelight
irradiation, J. Mater. Chem. A, 6 (2018) 2193–2199.
- Y. Xu, S.C. Xu, S. Wang, Y.X. Zhang, G.H. Li, Citric acid
modulated electrochemical synthesis and photocatalytic
behavior of BiOCl nanoplates with exposed {001} facets, Dalton
Trans., 43 (2014) 479–485.
- Z.-D. Wei, R. Wang, Hierarchical BiOBr microspheres with
oxygen vacancies synthesized via reactable ionic liquids for
dyes removal, Chin. Chem. Lett., 27 (2016) 769–772.
- J.F. Chen, J.B. Zhong, J.Z. Li, S.T. Huang, W. Hu, M.J. Li,
Q. Du, Synthesis and characterization of novel Ag2CO3/g-C3N4
composite photocatalysts with excellent solar photocatalytic
activity and mechanism insight, Mol. Catal., 435 (2017) 91–98.
- J. Di, J.X. Xia, M.X. Ji, B. Wang, S. Yin, Q. Zhang, Z.G. Chen,
H.M. Li, Carbon quantum dots modified BiOCl ultrathin
nanosheets with enhanced molecular oxygen activation ability
for broad spectrum photocatalytic properties and mechanism
insight, ACS Appl. Mater. Interfaces, 36 (2015) 20111–20123.
- S.T. Huang, J.B. Zhong, J.Z. Li, J.F. Chen, Z. Xiang, W. Hu,
M.J. Li, Z-scheme TiO2/g-C3N4 composites with improved solardriven
photocatalytic performance deriving from remarkably
efficient separation of photo-generated charge pairs, Mater.
Res. Bull., 84 (2016) 65–70.
- D.M. Ma, J.B. Zhong, J.Z. Li, C. Burda, R. Duan, Preparation
and photocatalytic performance of MWCNTs/BiOCl: evidence
for the superoxide radical participation in the degradation
mechanism of phenol, Appl. Surf. Sci., 480 (2019) 395–403.
- X.D. Su, J.J. Yang, X. Yu, Y. Zhu, Y.M. Zhang, In situ grown
hierarchical 50%BiOCl/BiOI hollow flowerlike microspheres on
reduced graphene oxide nanosheets for enhanced visible-light
photocatalytic degradation of rhodamine B, Appl. Surf. Sci.,
433 (2018) 502–512.
- M. Yang, Q. Yang, J.B. Zhong, S.T. Huang, J.Z. Li, J.B. Song,
C. Burda, Enhanced photocatalytic performance of Ag2O/BiOF
composite photocatalysts originating from efficient interfacial
charge separation, Appl. Surf. Sci., 416 (2017) 666–671.
- H.H. Liu, J. Huang, J.F. Chen, J.B. Zhong, J.Z. Li, Q. Yang,
D.M. Ma, Large enhancement of sunlight-driven photocatalytic
performance of CdMoO4 prepared by SDBS-assisted microwave
hydrothermal method, Mater. Lett., 228 (2018) 421–423.
- H.H. Liu, C. Yang, J. Huang, J.F. Chen, J.B. Zhong, J.Z. Li,
Ionic liquid-assisted hydrothermal preparation of BiOI/BiOCl
heterojunctions with enhanced separation efficiency of photogenerated
charge pairs and photocatalytic performance, Inorg.
Chem. Commun., 113 (2020) 107806.