Design and fabrication of NiCo2S4@rGO as an efficient Pt free triiodide reducing agent for dye-sensitized solar cell application

被引:0
|
作者
Abinaya, S. [1 ]
Sakthivel, R. [1 ]
Ramachandran, K. [2 ]
Vivek, P. M. [3 ]
Arfayeen, Mohamed [1 ]
Manikandababu, C. S. [4 ]
Boopathiraja, R. [5 ]
机构
[1] PSG Coll Arts & Sci, Dept Elect, Civil Aerodrome Post, Coimbatore 641014, Tamil Nadu, India
[2] SRM Inst Sci & Technol, Fac Engn & Technol, Dept Phys, Vadapalani Campus, Chennai 600026, Tamil Nadu, India
[3] Vel Tech Rangarajan Dr Sagunthala R&D Inst Sci & T, Dept Chem, Chennai 600062, Tamil Nadu, India
[4] Sri Ramakrishna Engn Coll, Coimbatore 641022, Tamil Nadu, India
[5] Saveetha Inst Med & Tech Sci SIMATS, Saveetha Sch Engn, Dept Mat Phys, Chennai 602105, Tamil Nadu, India
来源
CHEMICAL PHYSICS IMPACT | 2024年 / 9卷
关键词
Dye-sensitized solar cell; Counter electrode; Hydrothermal method; Electrocatalytic activity; COUNTER-ELECTRODE; OXYGEN REDUCTION; NANOTUBE ARRAYS; ELECTROCATALYST; NANOPARTICLES; COMPOSITE; STORAGE;
D O I
10.1016/j.chphi.2024.100676
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
Exploiting efficient Pt-free counter-electrode materials with low cost and highly catalytic property is a hot topic in the field of Dye-sensitized solar cells (DSCs). Here, NiCo2S4/reduced graphene oxide (RGO) was prepared via an economical hydrothermal ynthesis route, and the as-prepared composite exhibited comparable electrocatalytic property with the conventional Pt electrode as the counter-electrode. Enhanced optoelectronic, optical and structural characteristics have been attained over the constructed heterojunction. Band gap energy of NiCo2S4 (2.35 eV) was suppressed to 2.11 eV owing to its supporting with 10 wt.% rGO bringing about upgraded absorption of visible light. Electrochemical studies confirmed the synergetic effect of nickel and cobalt ions with the high electrical conductive rGO networks that enhance the electrocatalytic activity of NiCo2S4 nanostructures. The efficiency achieved for the NiCo2S4@rGO counter electrode (CE) based DSSC is 8.17%, which is remarkably higher than that of pristine NiCo2S4 (7.31%), and Pt (7.14%) under the same experimental conditions. In outline, given their innovative synthesis approach, affordability, and remarkable electrocatalytic attributes, the newly developed NiCo2S4@rGO counter electrodes stand out as potent contenders in future dye-sensitized solar cell applications.
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页数:9
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