• Journal of Inorganic Materials
  • Vol. 36, Issue 6, 665 (2021)
Miao CAI, Zihang CHEN, Shi ZENG, Jianghui DU, and Juan XIONG*
Author Affiliations
  • Hubei Key Laboratory of Ferro & Piezoelectric Materials and Devices, Faculty of Physics & Electronic Sciences, Hubei University, Wuhan 430062, China
  • show less
    DOI: 10.15541/jim20200356 Cite this Article
    Miao CAI, Zihang CHEN, Shi ZENG, Jianghui DU, Juan XIONG. CuS Nanosheet Decorated Bi5O7I Composite for the Enhanced Photocatalytic Reduction Activity of Aqueous Cr(VI)[J]. Journal of Inorganic Materials, 2021, 36(6): 665 Copy Citation Text show less
    References

    [1] R ZHU K, Y GAO, X TAN et al. Polyaniline modified Mg/Al layered double hydroxide composites and their application in efficient removal of Cr(VI). ACS Sustainable Chemistry & Engineering, 4, 4361-4369(2016).

    [2] S ZHANG, F LI B, X WANG X et al. Recent developments of two-dimensional graphene-based composites in visible-light photocatalysis for eliminating persistent organic pollutants from wastewater. Chemical Engineering Journal, 390, 124642(2020).

    [3] R ZHU K, L CHEN C, H LU S et al. MOFs-induced encapsulation of ultrafine Ni nanoparticles into 3D N-doped graphene-CNT frameworks as a recyclable catalyst for Cr(VI) reduction with formic acid. Carbon, 148, 52-63(2019).

    [4] Y HU C, E LEI, K HU K et al. Simple synthesis of 3D flower-like g-C3N4/TiO2 composite microspheres for enhanced visible-light photocatalytic activity. Journal of Materials Science, 55, 151-162(2020).

    [5] X ZHAO G, B SUN Y, K ZHAO Y et al. Enhanced photocatalytic simultaneous removals of Cr(VI) and bisphenol A over Co(II)-modified TiO2. Langmuir, 35, 276-283(2019).

    [6] L WANG Q, F DONG R, C WANG et al. Glucose-fueled micromotors with highly efficient visible-light photocatalytic propulsion. ACS Applied Materials Interfaces, 11, 6201-6207(2019).

    [7] B CHEN W, F YANG Z, Z XIE et al. Benzothiadiazole functionalized D-A type covalent organic frameworks for effective photocatalytic reduction of aqueous chromium (VI). Journal of Materials Chemistry A, 7, 998-1004(2019).

    [8] R ZHANG, Q HAN, Y LI et al. Fabrication and characterization of high efficient Z-scheme photocatalyst Bi2MoO6/reduced graphene oxide/BiOBr for the degradation of organic dye and antibiotic under visible-light irradiation. Journal of Materials Science, 54, 14157-14170(2019).

    [9] Q YANG, L LUO M, W LIU K et al. A composite of single-crystalline Bi2WO6 and polycrystalline BiOCl with a high percentage of exposed (001) facets for highly efficient photocatalytic degradation of organic pollutants. Chemical Communications, 55, 5728-5731(2019).

    [10] S SULTANA, S MANSINGH, K PARIDA. Facile synthesis of CeO2 nanosheets decorated upon BiOI microplate: a surface oxygen vacancy promoted Z-scheme-based 2D-2D nanocomposite photocatalyst with enhanced photocatalytic activity. The Journal of Physical Chemistry C, 122, 808-819(2017).

    [11] Q GENG X, S CHEN, X LÜ et al. Synthesis of g-C3N4/Bi5O7I microspheres with enhanced photocatalytic activity under visible light. Applied Surface Science, 462, 18-28(2018).

    [12] J WU G, Y ZHAO, W LI Y et al. Assembled and isolated Bi5O7I nanowires with good photocatalytic activities. CrystEngComm, 17, 2113-2125(2017).

    [13] B LI, W CHEN X, Y ZHANG T et al. Photocatalytic selective hydroxylation of phenol to dihydroxybenzene by BiOI/TiO2 p-n heterojunction photocatalysts for enhanced photocatalytic activity. Applied Surface Science, 439, 1047-1056(2018).

    [14] J DONG Z, Q PAN J, B WANG B et al. The p-n-type Bi5O7I-modified porous C3N4 nano-heterojunction for enhanced visible light photocatalysis. Journal of Alloys & Compounds, 747, 788-795(2018).

    [15] N CHEN Y, Q ZHU G, Z GAO J et al. Three-dimensional Ag2O/Bi5O7I p-n heterojunction photocatalyst harnessing UV-Vis-NIR broad spectrum for photodegradation of organic pollutants. Journal of Hazardous Materials, 344, 42-54(2018).

    [16] N, X YANG, X LÜ, S T ZHONG et al. Preparation of Z-scheme AgI/Bi5O7I plate with high visible light photocatalytic performance by phase transition and morphological transformation of BiOI microspheres at room temperature. Dalton Transactions, 47, 11420-11428(2018).

    [17] R MA, S ZHANG, L LI et al. Enhanced visible-light-induced photoactivity of Type-II CeO2/g-C3N4 nanosheet towards organic pollutants degradation. ACS Sustainable Chemistry & Engineering, 7, 9699-9708(2019).

    [18] M KAMRANIFAR, A ALLAHRESANI, A NAGHIZADEH. Synthesis and characterizations of a novel CoFe2O4@CuS magnetic nanocomposite and investigation of its efficiency for photocatalytic degradation of penicillin G antibiotic in simulated wastewater. Journal of Hazardous Materials, 366, 545-555(2019).

    [19] W LIM, H WU, Y LIM et al. Facilitating the charge transfer of ZnMoS4/CuS p-n heterojunctions through ZnO intercalation for efficient photocatalytic hydrogen generation. Journal of Materials Chemistry A, 6, 11416-11423(2019).

    [20] K DAS, D MAJHI, Y BHOI et al. Combustion synthesis, characterization and photocatalytic application of CuS/Bi4Ti3O12 p-n heterojunction materials towards efficient degradation of 2-methyl-4-chlorophenoxyacetic acid herbicide under visible light. Chemical Engineering Journal, 362, 588-599(2019).

    [21] Y WU R, B SONG H, N LUO et al. Microwave-assisted preparation and enhanced photocatalytic activity of Bi2WO6/BiOI heterojunction for organic pollutants degradation under visible-light irradiation. Solid State Science, 87, 101-109(2019).

    [22] C HU C, S CHEN T, X HUANG H. Heterojunction of n-type Sr2TiO4 with p-type Bi5O7I with enhanced photocatalytic activity under irradiation of simulated sunlight. Applied Surface Science, 426, 536-544(2017).

    [23] X SUN L, H SUN J, N HAN et al. rGO decorated W doped BiVO4 novel material for sensing detection of trimethylamine. Sensors & Actuators B: Chemical, 298, 126749(2019).

    [24] Q LI, J DU X, Q XIA C et al. Fabrication and photocatalytic properties of nano CuS/MoS2 composite catalyst by dealloying amorphous Ti-Cu-Mo alloy. Applied Surface Science, 221-228(2019).

    [25] M CHAHKANDIA, M ZARGAZI. Novel method of square wave voltammetry for deposition of Bi2S3 thin film: photocatalytic reduction of hexavalent Cr in single and binary mixtures. Journal of Hazardous Materials, 380, 120879(2019).

    [26] L CHEN K, R ZHU K, K CHEN et al. Synthesis of Ag nanoparticles decoration on magnetic carbonized polydopamine nanospheres for effective catalytic reduction of Cr(VI). Journal of Colloid and Interface Science, 526, 1-8(2018).

    [27] S ZHANG, Y LIU, C GU P. Enhanced photodegradation of toxic organic pollutants using dual-oxygen-doped porous g-C3N4: mechanism exploration from both experimental and DFT studies. Applied Catalysis B: Environmental, 248, 1-10(2019).

    [28] T FEI, M YU L, Y LIU Z et al. Graphene quantum dots modified flower like Bi2WO6 for enhanced photocatalytic nitrogen fixation. Journal of Colloid and Interface Science, 557, 498-505(2019).

    [29] B PAN J, J LIU J, L ZUO S et al. Synthesis of cuboid BiOCl nanosheets coupled with CdS quantum dots by region-selective deposition process with enhanced photocatalytic activity. Materials Research Bulletin, 103, 216-224(2018).

    Miao CAI, Zihang CHEN, Shi ZENG, Jianghui DU, Juan XIONG. CuS Nanosheet Decorated Bi5O7I Composite for the Enhanced Photocatalytic Reduction Activity of Aqueous Cr(VI)[J]. Journal of Inorganic Materials, 2021, 36(6): 665
    Download Citation