Application of strontium-doped molybdenum sulfide material in self-energized piezoelectric enhanced hydrogen production
A molybdenum sulfide piezoelectric and strontium doping technology, which is applied in the production of molybdenum sulfide and hydrogen, catalyst activation/preparation, etc., can solve the problems of limited application, low abundance, and high cost of precious metals
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[0042] Further, the strontium-doped molybdenum sulfide material is prepared by a hydrothermal method, and the preparation method includes the following steps:
[0043] (1) Sodium molybdate was dissolved in deionized water, and ultrasonically treated for 30-60mins to mix uniformly to obtain solution A;
[0044] (2) Dissolve thiourea in deionized water, and sonicate for 30-60mins until mixed uniformly to prepare solution B;
[0045] (3) dissolving strontium chloride hexahydrate in deionized water, and ultrasonic treatment for 30-60mins to mix uniformly to obtain solution C;
[0046] (4) Add solution B and solution C dropwise to solution A, and ultrasonically treat for 30-60mins until mixed uniformly to obtain mixed solution D;
[0047] (5) Transfer the mixed solution D to a high-pressure reactor, and react at a temperature of 150-300° C. for 20-30 hours to prepare a strontium-doped molybdenum sulfide material.
[0048] Further, the concentration of the solution A is 0.1mol / L-1...
Embodiment 1
[0066] Strontium-doped Molybdenum Sulfide Material Sr-MoS as Piezoelectric Enhancement Material 2 Preparation of semiconductor materials in which the mass of Sr is MoS 2 10% of the mass.
[0067] (1) 2.42g (0.01mol) sodium molybdate (NaMoO 4 .2H 2 O) be dissolved in 30mL deionized water, and sonicate 30mins to mix homogeneously to prepare solution A;
[0068] (2) 3.05g (0.04mol) thiourea [(NH 2 ) 2 CS] was dissolved in 30mL deionized water, and ultrasonically treated for 30mins to mix uniformly to obtain solution B;
[0069] (3) Dissolve 0.400g (0.0015mol) strontium chloride hexahydrate in deionized water, and ultrasonically treat it for 60mins until mixed uniformly to obtain solution C;
[0070] (4) Add solution B and solution C dropwise to solution A, and ultrasonically treat for 60mins until mixed uniformly to obtain mixed solution D;
[0071] (5) Set the volume of the mixed liquid D to 100mL and transfer it to a high-pressure reactor. The temperature is controlled a...
Embodiment 2
[0078] Strontium-doped Molybdenum Sulfide Material Sr-MoS as Piezoelectric Enhancement Material 2 Preparation of semiconductor materials in which the mass of Sr is MoS 2 15% of the mass.
[0079] (1) 2.42g (0.01mol) sodium molybdate (NaMoO 4 .2H 2 O) be dissolved in 30mL deionized water, and sonicate 30mins to mix homogeneously to prepare solution A;
[0080] (2) 3.05g (0.04mol) thiourea [(NH 2 ) 2 CS] was dissolved in 30mL deionized water, and ultrasonically treated for 30mins to mix uniformly to obtain solution B;
[0081] (3) Dissolve 0.600g (0.0023mol) strontium chloride hexahydrate in deionized water, and ultrasonically treat it for 60mins until mixed uniformly to obtain solution C;
[0082] (4) Add solution B and solution C dropwise to solution A, and ultrasonically treat for 60mins until mixed uniformly to obtain mixed solution D;
[0083] (5) Set the volume of the mixed liquid D to 100mL and transfer it to a high-pressure reactor. The temperature is controlled a...
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