Improving Photocatalytic Hydrogen Production with Sol-Gel Prepared NiTiO3/TiO2 Composite

被引:1
作者
Cohaila, Alberto Bacilio Quispe [1 ,2 ]
Sacari, Elisban Juani Sacari [3 ,4 ]
Ramos, Wilson Orlando Lanchipa [2 ,5 ]
Loza, Hugo Benito Canahua [1 ]
Calderon, Rocio Maria Tamayo [6 ]
Salas, Jesus Placido Medina [2 ,7 ]
Gomez, Francisco Gamarra [2 ,7 ]
Mangalaraja, Ramalinga Viswanathan [8 ]
Rajendran, Saravanan [9 ]
机构
[1] Univ Nacl Jorge Basadre Grohmann, Escuela Profes Met & Mat, Fac Ingn, Lab Generac & Almacenamiento Hidrogeno, Av Miraflores S-N, Tacna 23003, Peru
[2] Univ Nacl Jorge Basadre Grohmann, Fac Ingn, Grp Invest GIMAECC, Ciudad Univ,Av Miraflores S-N, Tacna 23003, Peru
[3] Univ Nacl Ingn, Fac Ciencias, Av Tupac Amaru 210, Lima 15333, Peru
[4] Univ Nacl Jorge Basadre Grohmann, Fac Ciencias, Ctr Energias Renovables Tacna CERT, Av Miraflores S-N, Tacna 23003, Peru
[5] Univ Nacl Mayor San Marcos, Fac Ciencias Fis, Av Republ Venezuela S-N, Lima 15081, Peru
[6] Univ Nacl San Agustin, Fac Ingn Proc, Ctr Microscopia Elect, Arequipa 04001, Peru
[7] Univ Nacl Jorge Basadre Grohmann, Fac Ingn, Lab Nanotecnol NanoLab, Av Miraflores S-N, Tacna 23003, Peru
[8] Univ Adolfo Ibanez, Fac Engn & Sci, Diagonal las Torres 2640, Santiago 7941169, Chile
[9] Univ Tarapaca, Inst Alta Invest, Arica 1000000, Chile
关键词
NiTiO3; TiO2; sol-gel; nano-composite; photocatalytic hydrogen production; PHOTOELECTROCHEMICAL PROPERTIES; TEMPERATURE; FABRICATION;
D O I
10.3390/en17235830
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This study presents a comprehensive investigation into the synthesis, characterization, and photocatalytic performance of NiTiO3/TiO2 nanocomposites for solar hydrogen production. Through a carefully optimized sol-gel method, we synthesized a heterojunction photocatalyst comprising 99.2% NiTiO3 and 0.8% anatase TiO2. Extensive characterization using XRD, Raman spectroscopy, FTIR, UV-visible spectroscopy, photoluminescence spectroscopy, and TEM revealed the formation of an intimate heterojunction between rhombohedral NiTiO3 and anatase TiO2. The nanocomposite demonstrated remarkable improvements in optical and electronic properties, including enhanced UV-visible light absorption and an 85% reduction in charge carrier recombination compared to pristine NiTiO3. Crystallite size analysis showed a reduction from 53.46 nm to 46.35 nm upon TiO2 incorporation, leading to increased surface area and active sites. High-resolution TEM confirmed the formation of well-defined interfaces between NiTiO3 and TiO2, with lattice fringes of 0.349 nm and 0.249 nm corresponding to their respective crystallographic planes. Under UV irradiation, the NiTiO3/TiO2 nanocomposite exhibited superior photocatalytic performance, achieving a hydrogen evolution rate of 9.74 mu mol min-1, representing a 17.1% improvement over pristine NiTiO3. This enhancement is attributed to the synergistic effects of improved light absorption, reduced charge recombination, and efficient charge separation at the heterojunction interface. Our findings demonstrate the potential of NiTiO3/TiO2 nanocomposites as efficient photocatalysts for solar hydrogen production and contribute to the development of advanced materials for renewable energy applications.
引用
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页数:17
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