李海华, 孟瑞静, 赵颖, 等.复合纳米Pd-nZVI/GAC材料制备及其降解亚甲基蓝研究[J].水处理技术, 2016,42(11):18-23.
|
CHEN C, MA W, ZHAO J.Semiconductor-Mediated Photodegradation of Pollutants Under Visible-Light Irradiation[J].Chemical Society Reviews,2010,39(11):4206-4219.
|
GANESH R S, DURGADEVI E, NAVANEETHAN M,et al.Visible Light Induced Photocatalytic Degradation of Methylene Blue and Rhodamine B from the Catalyst of CdS Nanowire[J].Chemical Physics Letters,2017,684:126-134.
|
DASSANAYAKE R S, RAJAKARUNA E, ABIDI N.Preparation of Aerochitin-TiO2 Composite for Efficient Photocatalytic Degradation of Methylene Blue[J].Journal of Applied Polymer Science,2018,135(8):45908.
|
谢倩, 赵秀兰.TiO2/AC负载型光催化剂的制备及光催化性能的研究[J].西南大学学报(自然科学版), 2011,33(3):63-67.
|
蔡万玲, 张玉英.MoO2纳米球的水热合成与光催化性能[J].西南大学学报(自然科学版), 2011,33(3):45-49.
|
CASADY J B, JOHNSON R W.Status of Silicon Carbide (SiC) as a Wide-Bandgap Semiconductor for High-Temperature Applications:A Review[J].Solid-State Electronics,1996,39(10):1409-1422.
|
ARISTOV V Y.β-SiC(100) Surface:Atomic Structures and Electronic Properties[J].Physics-Uspekhi, 2001,44(8):761-783.
|
WANG D, PENG Y, WANG Q,et al.High-Efficient Photo-Electron Transport Channel in SiC Constructed by Depositing Cocatalysts Selectively on Specific Surface Sites for Visible-Light H2 Production[J].Applied Physics Letters,2016,108(16):187-189.
|
YANG J, ZENG X, CHEN L,et al.Photocatalytic Water Splitting to Hydrogen Production of Reduced Graphene Oxide/SiC Under Visible Light[J].Applied Physics Letters,2013,102(8):1-4.
|
PENG Y, HAN G, WANG D,et al.Improved H2 Evolution Under Visible Light in Heterostructured SiC/CdS Photocatalyst:Effect of Lattice Match[J].International Journal of Hydrogen Energy,2017,42(21):14409-14417.
|
WANG Y, ZHANG L, ZHANG X,et al.Openmouthed β-SiC Hollow-Sphere with Highly Photocatalytic Activity for Reduction of CO2 with H2O[J].Applied Catalysis B:Environmental, 2017,206:158-167.
|
LU W, GUO L W, JIA Y P,et al.Significant Enhancement in Photocatalytic Activity of High Quality SiC/graphene Core-Shell Heterojunction with Optimal Structural Parameters[J].RSC Advances, 2014,4(87):46771-46779.
|
ZHU K, GUO L, LIN J,et al.Graphene Covered SiC Powder as Advanced Photocatalytic Material[J].Applied Physics Letters,2012,100(2):192-195.
|
XU H, GAN Z, ZHOU W,et al.A Metal-Free 3C-SiC/g-C3N4 Composite with Enhanced Visible Light Photocatalytic Sctivity[J].RSC Advances, 2017,7(63):40028-40033.
|
TIAN Y, CHANG B, YANG Z,et al.Graphitic Carbon Nitride-BiVO4 Heterojunctions:Simple Hydrothermal Synthesis and High Photocatalytic Performances[J].RSC Advances, 2014,4(8):4187-4193.
|
NG Y H, IWASE A, KUDO A,et al.Reducing Graphene Oxide on a Visible-Light BiVO4 Photocatalyst for an Enhanced Photoelectrochemical Water Splitting[J].Journal of Physical Chemistry Letters, 2010,1(17):2607-2612.
|
李欣, 王铁成, 屈广周, 等.碳纳米管/钒酸铋光催化降解盐酸四环素[J].环境工程学报, 2017,11(5):2738-2742.
|
WANG D, GUO Z, PENG Y,et al.Visible Light Induced Photocatalytic Overall Water Splitting Over Micro-SiC Driven by the Z-Scheme System[J].Catalysis Communications,2015,61:53-56.
|
YANG J, YANG Y, ZENG X, et al.Mechanism of Water Splitting to Hydrogen by Silicon Carbide Nanoparticles[J].Science of Advanced Materials, 2013,5(2):155-159.
|
刘阳龙, 郑玉婴, 曹宁宁, 等.水热法合成铁掺杂的硫化镉及光催化性能[J].材料工程, 2017,45(10):12-17.
|
刘乃亮, 庞波, 理莎莎, 等.BiVO4/rGO的水热控制合成及其光催化性能研究[J].功能材料, 2017,48(10):10077-10081,10088.
|
LIU X, ZHANG Y, JIA Y,et al.Visible Light-Responsive Carbon-Decorated p-Type Semiconductor CaFe2O4 Nanorod Photocatalyst for Efficient Remediation of Organic Pollutants[J].Chinese Journal of Catalysis,2017,38(10):1770-1779.
|
KUDO A, MISEKI Y.Heterogeneous Photocatalyst Materials for Water Splitting[J].Chemical Society Reviews,2009,38(1):253-278.
|