Investigating the effect of Nd3+ dopant and the formation of g-C3N4/BiOI heterostructure on the microstructural, optical and photoelectrocatalytic properties of g-C3N4

被引:39
|
作者
Velusamy, P. [1 ,2 ]
Sathiya, M. [5 ,6 ]
Liu, Yunpeng [1 ]
Liu, Shanhu [1 ]
Babu, R. Ramesh [2 ]
Aly, Mohamed Aly Saad [3 ]
Elangovan, E. [4 ]
Chang, Haibo [1 ]
Mao, Liqun [1 ]
Xing, Ruimin [1 ]
机构
[1] Henan Univ, Coll Chem & Chem Engn, Henan Key Lab Polyoxometalate Chem, Henan Joint Int Res Lab Environm Pollut Control M, Kaifeng 47504, Peoples R China
[2] Bharathidasan Univ, Dept Phys, Crystal Growth & Thin Film Lab, Tiruchirappalli 620024, Tamil Nadu, India
[3] Miami Coll Henan Univ, Dept Elect & Informat Sci, Kaifeng 475000, Peoples R China
[4] Khalifa Univ, Elect & Comp Engn Dept, Masdar City Campus, Abu Dhabi 54224, U Arab Emirates
[5] Madurai Kamaraj Univ, Madurai, Tamil Nadu, India
[6] Thiagarajar Coll, Dept Chem, Madurai 625009, Tamil Nadu, India
基金
中国国家自然科学基金;
关键词
Graphitic carbon nitride; Hydrothermal; Doped heterostructure; Photo-electrochemical; Water splitting; GRAPHITIC CARBON NITRIDE; PHOTOCATALYTIC PERFORMANCE; CO2; REDUCTION; TIO2; NANOPARTICLES; QUANTUM DOTS; WATER; DRIVEN; NANOSHEETS; HETEROJUNCTION; OXIDATION;
D O I
10.1016/j.apsusc.2021.150082
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A two-step thermal poly-condensation and hydrothermal method is used to prepare noble metal-free nano-heterostructure of neodymium (Nd)-doped graphitic carbon nitride (g-C3N4) and bismuth oxyiodide (BiOI). The synthesised Nd- doped g-C3N4/BiOI heterostructure shows high electron-hole separation. Moreover, a fast charge transport at the heterojunction is noted and further leads to low charge recombination rate. Consequently, the synthesised heterostructure overcomes the high charge recombination rate of g-C3N4. This work reports the effect of Nd- doping and the formed heterojunction on the structural, optical, electrical conductivity and photoelectrochemical (PEC) properties of the heterostructure. Moreover, introducing Nd dopant into g-C3N4 enhances visible light absorption of g-C3N4. The optimal hetero-nanostructure (5.0 wt% Nd doped g-C3N4/BiOI) shows high photocurrent density (15.50 mA/cm2) and hydrogen evolution rate (288 mu mol h-1 cm-2) under visible light (lambda >= 420 nm) illumination when compared to other wt.% of Nd doped g-C3N4 and heterostructure. Additionally, the low emission features obtained from the photoluminescence studies and the heterojunction visually observed by HRTEM strongly emphasise that the formation of heterostructure leads to low recombination of charge carriers. Doping and forming heterostructure is shown to be an effective, controllable and an optimal approach to improve the PEC water splitting performance of g-C3N4.
引用
收藏
页数:13
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