Journal of the Chinese Ceramic Society, Volume. 51, Issue 7, 1800(2023)
Phase Structure Regulation and Photocatalytic Degradation Properties of α/β-Bi2O3 Films Prepared by Plasma Spraying-Chemical Vapor Deposition
[3] [3] ASTUTI Y, WIDIYANDARI H, ZAQIA F A, et al. Physicochemical characteristics and electrical conductivity of bismuth oxide/activated carbon composite[J]. IOP Conf Ser: Mater Sci Eng, 2021, 1053(1): 012014.
[12] [12] LU S S, WU T, LIU Y N, et al. All-solid Z-scheme Bi/γ-Bi2O3/O-doped g-C3N4 heterojunction with Bi as electron shuttle for visible-light photocatalysis[J]. J Alloys Compd, 2022, 911: 164980.
[13] [13] VEGA-MENDOZA M S, LUVANO-HIPLITO E, TORRES- MARTNEZ LETICIA M. Design and fabrication of photocatalytic coatings with α/β-Bi2O3 and recycled-fly ash for environmental remediation and solar fuel generation[J]. Ceram Int, 2021, 47(19): 26907-26918.
[19] [19] ZHONG C W, WEI W, HE H, et al. The photocatalytic performance of ternary g-C3N4/Bi2O3/TiO2 heterojunction composite for degradation of organic pollutants under visible and ultraviolet light[J]. J Mater Sci, 2021, 32(2): 2146-2157.
[21] [21] GADHI T A, HERNNDEZ-GORDILLO A, BIZARRO M, et al. Efficient α/β-Bi2O3 composite for the sequential photodegradation of two-dyes mixture[J]. Ceram Int, 2016, 42(11): 13065-13073.
[22] [22] HOU J G, YANG C, WANG Z, et al. In situ synthesis of α-β phase heterojunction on Bi2O3 nanowires with exceptional visible-light photocatalytic performance[J]. Appl Catal B, 2013, 142-143: 504-511.
[23] [23] LIM G D, YOO J H, JI M, et al. Visible light driven photocatalytic degradation enhanced by α/β phase heterojunctions on electrospun Bi2O3 nanofibers[J]. J Alloys Compd, 2019, 806: 1060-1067.
[24] [24] SONKUSARE V N, CHAUDHARY R G, BHUSARI G S, et al. Microwave-mediated synthesis, photocatalytic degradation and antibacterial activity of α-Bi2O3 microflowers/novel γ-Bi2O3 microspindles[J]. Nano Struct Nano Objects, 2018, 13: 121-131.
[25] [25] SUN Y Y, WANG W Z, ZHANG L, et al. Design and controllable synthesis of α-/γ-Bi2O3 homojunction with synergetic effect on photocatalytic activity[J]. Chem Eng J, 2012, 211-212: 161-167.
[36] [36] QIAO J H, CHEN K, LI S J, et al. Plasma spray-chemical vapor deposition of nanotextured film with α/β Bi2O3 heterostructure and photocatalytic degradation performance[J]. Vacuum, 2021, 188: 110206.
[37] [37] WANG C, TAN C, LV W Q, et al. Coherent Bi2O3-TiO2 hetero-junction material through oriented growth as an efficient photo-catalyst for methyl orange degradation[J]. Mater Today Chem, 2018, 8: 36-41.
[38] [38] HUANG S J, ALI A N. Effects of heat treatment on the microstructure and microplastic deformation behavior of SiC particles reinforced AZ61 magnesium metal matrix composite[J]. Mater Sci Eng A, 2018, 711: 670-682.
[39] [39] ZHOU X, LIU D, BU H L, et al. XRD-based quantitative analysis of clay minerals using reference intensity ratios, mineral intensity factors, Rietveld, and full pattern summation methods: A critical review[J]. Solid Earth Sci, 2018, 3(1): 16-29.
[40] [40] BERA K K, MAJUMDAR R, CHAKRABORTY M, et al. Phase control synthesis of α, β and α/β Bi2O3 hetero-junction with enhanced and synergistic photocatalytic activity on degradation of toxic dye, Rhodamine-B under natural sunlight[J]. J Hazard Mater, 2018, 352: 182-191.
[41] [41] CAMMARATA A, KAINTZ M, POLCAR T. Engineering width and directness of the band gap in diamond-based materials: an ab initio investigation towards electron-structure features control[J]. Diam Relat Mater, 2022, 128: 109237.
[42] [42] DING J F, YAO Q S, SUN H S, et al. Improved contact properties of graphene-metal hybrid interfaces by grain boundaries[J]. Appl Surf Sci, 2021, 563: 150392.
[43] [43] QIU Y F, YANG M L, FAN H B, et al. Phase-transitions of α- and β-Bi2O3 nanowires[J]. Mater Lett, 2011, 65(4): 780-782.
[44] [44] CHENG H F, HUANG B B, LU J B, et al. Synergistic effect of crystal and electronic structures on the visible-light-driven photocatalytic performances of Bi2O3 polymorphs[J]. Phys Chem Chem Phys, 2010, 12(47): 15468.
[45] [45] ZHU S W, YANG C Y, LI F, et al. Improved photocatalytic Bi2WO6/ BiOCl heterojunctions: One-step synthesis via an ionic-liquid assisted ultrasonic method and first-principles calculations[J]. Mol Catal, 2017, 435: 33-48.
[46] [46] LUO Y D, HUANG Q Q, LI B, et al. Synthesis and characterization of Cu2O-modified Bi2O3 nanospheres with enhanced visible light photocatalytic activity[J]. Appl Surf Sci, 2015, 357: 1072-1079.
[47] [47] ZHAO Q H, LIU X Y, XING Y X, et al. Synthesizing Bi2O3/BiOCl heterojunctions by partial conversion of BiOCl[J]. J Mater Sci, 2017, 52(4): 2117-2130.
Get Citation
Copy Citation Text
WANG Zhenyu, LIU Yancai, CHEN Kun, QIAO Jianghao, LI Xiaowei. Phase Structure Regulation and Photocatalytic Degradation Properties of α/β-Bi2O3 Films Prepared by Plasma Spraying-Chemical Vapor Deposition[J]. Journal of the Chinese Ceramic Society, 2023, 51(7): 1800
Category:
Received: Dec. 19, 2022
Accepted: --
Published Online: Oct. 7, 2023
The Author Email: Zhenyu WANG (1597870150@qq.com)
CSTR:32186.14.