[1] |
SHI LEI, LIANG LIN, MA JUN , et al. Highly efficient visible light-driven Ag/AgBr/ZnO composite photocatalyst for degrading Rhodamine B. Ceramics International, 2014,40(2):3495-3502.
|
[2] |
CAO YANG, LEI XIAN-YU, CHEN QIAN-LIN , et al. Enhanced photocatalytic degradation of tetracycline hydrochloride by novel porous hollow cube ZnFe2O4. Journal of Photochemistry and Photobiology A-Chemistry, 2018,364:794-800.
|
[3] |
GAO YUAN, LI YAN, ZHANG LIANG , et al. Adsorption and removal of tetracycline antibiotics from aqueous solution by graphene oxide. Journal of Colloid and Interface Science, 2012,368:5540-546.
|
[4] |
ZHU MING-YU, CAI YA-WEN, LIU SHU-YA , et al. K2Ti6O13 Hybridized graphene oxide: effective enhancement in photodegradation of RhB and photoreduction of U(VI). Environmental Pollution, 2019,248:448-455.
|
[5] |
FANG MING, TAN XIAO-LI . Review on the mechanism of metal surface plasmon resonance enhanced photocatalysis of semiconductor nanomaterials. Journal of Nantong University (Natural Science Edition), 2019,18(2):1-13.
|
[6] |
CHEN YI-LIN, LIN BI-ZHOU, WANG SEN-LIN . Design of the open experiment for a hydrothermal synthesis of Bi2WO6 nanoplate photocatalyst. Laboratory Science, 2018,21(5):45-49.
|
[7] |
XUE WEN-JING, PENG ZHI-WEI, HUANG DAN-LIAN , et al. In situ synthesis of visible-light-driven Z-scheme AgI/Bi2WO6 heterojunction photocatalysts with enhanced photocatalytic activity. Ceramics International, 2019. 45(5):6340-6349.
|
[8] |
JONJANA SITTIKORN, PHURUANGRAT ANUKORN, THONGTEM TITIPUN , et al. Decolorization of Rhodamine B photocatalyzed by Ag3PO4/Bi2WO6 nanocomposites under visible radiation. Materials Letters, 2018,218:146-148.
|
[9] |
QIN FEI-YU, CUI PENG-ZHEN, HU LEI , et al. Construction of multi-shelled Bi2WO6 hollow microspheres with enhanced visible light photo-catalytic performance. Materials Research Bulletin, 2018,99:331-335.
|
[10] |
ZHANG ZHI-JIE, WANG WEN-ZHONG, SHANG MENG , et al. Low-temperature combustion synthesis of Bi2WO6 nanoparticles as a visible-light-driven photocatalyst. Journal of Hazardous Materials, 2010,117(1/2/3):1013-1018.
|
[11] |
ZHU HONG-SHAN, TAN XIAO-LI, TAN LI-QIANG , et al. Magnetic porous polymers prepared via high internal phase emulsions for efficient removal of Pb 2+ and Cd 2+. ACS Sustainable Chemistry & Engineering, 2018,6(4):5206-5213.
|
[12] |
TAN XIAO-LI, LIU GE, MEI HUI-YANG , et al. Fabrication of GO/Na2Ti3O7 composite and its efficient removal of 60 Co (II) from radioactive wastewater. Science China-Chemistry, 2019,49(1):145-154.
|
[13] |
WANG XIANG-XUE, YU SHU-JUN, WANG XIANG-KE . Study on metal organic framework material in radionuclide removal. Journal of Inorganic Materials, 2019,34(1):17-26.
|
[14] |
WANG XIONG, TIAN PENG, LIN YING , et al. Hierarchical nanostructures assembled from ultrathin Bi2WO6 nanoflakes and their visible-light induced photocatalytic property. Journal of Alloys and Compounds, 2015,620:228-232.
|
[15] |
ZHU HONG-SHAN, YUAN JIN-YUN, TAN XIAO-LI , et al. Efficient removal of Pb2+ by Tb-MOFs: identifying the adsorption mechanism through experimental and theoretical investigations. Environmental Science: Nano, 2019,6(1):261-272.
|
[16] |
WANG XIANG-XUE, CHEN LONG, WANG LIN , et al. Synthesis of novel nanomaterials and their application in efficient removal of radionuclides. Science China Chemistry, 62(8):933-967.
|
[17] |
QIN JI-BO, CHEN NAN, FENG CHUAN-PING , et al. Fabrication of a novel p-n Heterojunction BiOCl/Ag6Si2O7 nanocomposite as a highly efficient and stable visible light driven photocatalyst. Materials Science & Engineering B, 2018,231:86-92.
|
[18] |
WANG FEI, YANG HUA, ZHANG HAI-MIN , et al. Electrochemical performance of morphologically different Bi2WO6 nanostructures synthesized via a hydrothermal route. Journal of Electronic Materials, 2017,46(1):182-187.
|
[19] |
ZHANG LI-DE, FANG MING . Nanomaterials in pollution trace detection and environmental improvement. Nano Today, 2010,5(2):128-142.
|
[20] |
LIU HUI, GUO KAI, DUAN CONG-YUE , et al. A novel biosensor based on the direct electrochemistry of horseradish peroxidase immobilized in the three-dimensional flower-like Bi2WO6 microspheres. Materials Science and Engineering C, 2016,64:243-248.
|