Graphene-based TiO2 composites for photocatalysis & environmental remediation: synthesis and progress

被引:81
作者
Purabgola, Anushka [1 ]
Mayilswamy, Neelaambhigai [2 ]
Kandasubramanian, Balasubramanian [2 ]
机构
[1] Univ Rajasthan, Ctr Converging Technol, Jaipur 302004, Rajasthan, India
[2] Def Inst Adv Technol DU, Minist Def, Dept Met & Mat Engn, Pune 411025, Maharashtra, India
基金
英国科研创新办公室;
关键词
Titanium dioxide; Graphene nanomaterials; Photocatalysis; Synthetic dyes; Wastewater treatment; Li-ion batteries; VISIBLE-LIGHT; OXIDE COMPOSITES; METHYL-ORANGE; AQUEOUS-SOLUTION; MESOPOROUS TIO2; WATER-TREATMENT; ANODE MATERIAL; IV IONS; DEGRADATION; PERFORMANCE;
D O I
10.1007/s11356-022-18983-9
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Photoactive nanomaterials constitute an emerging field in nanotechnology, finding an extensive array of applications spanning diverse areas, including electronics and photovoltaic devices, solar fuel cells, wastewater treatment, etc. Titanium dioxide (TiO2), in its thin-film form, has been exhaustively surveyed as potential photocatalysts for environmental remediation owing to its innocuousness, stability, and photocatalytic characteristics when subjected to ultraviolet (UV) irradiation. However, TiO2 has some shortcomings associated with a large bandgap value of around 3.2 eV, making it less efficient in the visible spectral range. TiO2 is often consolidated with various carbon nanomaterials to overcome this limitation and enhance its efficiency. Graphene, a 2-dimensional allotrope of carbon with a bandgap tuned between 0 and 0.25 eV, exhibits unique properties, making it an attractive candidate to augment the photoactivity of semiconductor (SC) oxides. Encapsulating graphene oxide onto TiO2 nanospheres demonstrates intensified photocatalytic properties and exceptional recyclability for the degeneration of certain dyes, including Rhodamine B. This review encompasses various techniques to synthesize graphene-based TiO2 photoactive composites, emphasizing graphene capsulized hollow titania nanospheres, nanofibers, core/shell, and reduced graphene oxide-TiO2-based nanocomposites. It also consolidates the application of the aforestated nanocomposites for the disintegration of various synthetic dyes, proving efficacious for water decontamination and degradation of chemicals and pharmaceuticals. Furthermore, graphene-based TiO2 nanocomposites used as lithium (Li)-ion batteries manifesting substantial electrochemical performance and solar fuel cells for energy production are discussed here.
引用
收藏
页码:32305 / 32325
页数:21
相关论文
共 143 条
[1]   Review of technologies for oil and gas produced water treatment [J].
Ahmadun, Fakhru'l-Razi ;
Pendashteh, Alireza ;
Abdullah, Luqman Chuah ;
Biak, Dayang Radiah Awang ;
Madaeni, Sayed Siavash ;
Abidin, Zurina Zainal .
JOURNAL OF HAZARDOUS MATERIALS, 2009, 170 (2-3) :530-551
[2]   Adsorption of Methyl Orange from Aqueous Solution on Hydrothermal Synthesized Mg-Al Layered Double Hydroxide [J].
Ai, Lunhong ;
Zhang, Chunying ;
Meng, Lanying .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2011, 56 (11) :4217-4225
[3]   Treatment of saline produced water through photocatalysis using rGO-TiO2 nanocomposites [J].
Andreozzi, Mario ;
Alvarez, Mayra G. ;
Contreras, Sandra ;
Medina, Francesc ;
Clarizia, Laura ;
Vitiello, Giuseppe ;
Llorca, Jordi ;
Marotta, Raffaele .
CATALYSIS TODAY, 2018, 315 :194-204
[4]   Response surface modeling of Carbamazepine (CBZ) removal by Graphene-P25 nanocomposites/UVA process using central composite design [J].
Appavoo, Initha Amalraj ;
Hu, Jiangyong ;
Huang, Yan ;
Li, Sam Fong Yau ;
Ong, Say Leong .
WATER RESEARCH, 2014, 57 :270-279
[5]   TiO2 used as photocatalyst for rhodamine B degradation under solar radiation [J].
Ariyanti, Dessy ;
Maillot, Mathilde ;
Gao, Wei .
INTERNATIONAL JOURNAL OF MODERN PHYSICS B, 2017, 31 (16-19)
[6]  
Ayalew A., 2012, INT J GREEN NANOTECH, V4, P440, DOI [10.1080/19430892.2012.739480, DOI 10.1080/19430892.2012.739480]
[7]   Preparation and photocatalytic activity of TiO2-exfoliated graphite oxide composite using an ecofriendly graphite oxidation method [J].
Baldissarelli, Vanessa Zanon ;
de Souza, Thiago ;
Andrade, Luisa ;
Cappa de Oliveira, Luiz Fernando ;
Jose, Humberto Jorge ;
Peralta Muniz Moreira, Regina de Fatima .
APPLIED SURFACE SCIENCE, 2015, 359 :868-874
[8]   Thermally triggered transition of fluid atomized micro- and nanotextured multiscale rough surfaces [J].
Bangar, Ganesh Y. ;
Ghule, Deepak ;
Singh, R. K. P. ;
Kandasubramanian, Balasubramanian .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2018, 549 :212-220
[9]   Highly active and stable multi-walled carbon nanotubes-graphene-TiO2 nanohybrid: An efficient non-noble metal photocatalyst for water splitting [J].
Bellamkonda, Sankeerthana ;
Thangavel, Nithya ;
Hafeez, Hafeez Yusuf ;
Neppolian, B. ;
Rao, G. Ranga .
CATALYSIS TODAY, 2019, 321 :120-127
[10]   Photocatalytic disinfection and purification of water employing reduced graphene oxide/TiO2 composites [J].
Berberidou, Chrysanthi ;
Kyzas, George Z. ;
Paspaltsis, Ioannis ;
Sklaviadis, Theodoros ;
Poulios, Ioannis .
JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2019, 94 (12) :3905-3914