Rapid hydrothermal synthesis of mesoporous NiS2 and NiSe2 nanostructures for wastewater treatment

被引:2
|
作者
Lone, Mohammad Abbas [1 ]
Shrotriya, Vipin [2 ]
Lone, Tanweer Ahmad [3 ]
Alshahrani, Thamraa [4 ]
Hossain, Md Amzad [5 ]
Adam, Mohamed [6 ]
Zaman, M. Burhanuz [1 ,7 ]
机构
[1] Jiwaji Univ, Sch Studies Phys, Gwalior 474011, India
[2] Govt Degree Coll, Dept Phys, Morena 458110, MP, India
[3] Rabindranath Tagore Univ, Dept Phys, Raisen, Madhya Pradesh, India
[4] Princess Nourah Bint Abdulrahman Univ PNU, Coll Sci, Dept Phys, POB 84428, Riyadh 11671, Saudi Arabia
[5] Jashore Univ Sci & Technol, Dept Elect & Elect Engn, Jashore 7408, Bangladesh
[6] King Khalid Univ, Dept Radiol Sci, Coll Appl Med Sci, Abha 61421, Saudi Arabia
[7] Govt Degree Coll Uttersoo, Dept Phys, Anantnag 192201, J&K, India
关键词
Nickel dichalcogenides; Hydrothermal synthesis; Hollow nanostructures; Bi -pyramidal nano-particles; Photocatalytic activity; SOLVOTHERMAL SYNTHESIS; FACILE SYNTHESIS; NANOCRYSTALS; PERFORMANCE; NICKEL; MICROSPHERES; GROWTH; FILMS;
D O I
10.1016/j.heliyon.2023.e22308
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In the present study, single phase nickel based disulphide (NiS2) and diselenide (NiSe2) nanostructures were prepared hydrothermally in a short time span (4 h) under subcritical temperature (160degree celsius). The nanostructures grow in cubic crystal phases. Average crystallite sizes and intrinsic microstrains were determined using Williamson-Hall (W-H) plot analysis. Hollow NiS2 nanospheres and bipyramidal NiSe2 nanostructures are reported that are suitable for surface related applications. Thermal gravimetric analysis (TGA) indicated high stability of the nanostructures at elevated temperatures. Optical studies indicated visible light activeness of the nanostructures exhibiting sharp band edges. The nanostructures are mesoporous in nature with NiS2 and NiSe2 having respectively a large specific surface area of 310 m(2)/g and 177 m(2)/g. A primarily work done to determine the electrochemical nature of the nanostructures showed the materials are pseudo-capacitive in nature with specific capacitances of 1022 F/g and 480 F/g respectively for NiS2 and NiSe2. The photo-catalytic activity of the nanostructures was explored against a colourless pollutant; phenol. The nanostructures degraded most of the phenol (>90 %) under visible light illumination and the reusability experiments performed determined industrial value of the photocatalysts.
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页数:14
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