High-efficiency difunctional water decomposition electrocatalyst NiCoP and preparation method thereof

An electrocatalyst, dual-function technology, applied in chemical instruments and methods, physical/chemical process catalysts, electrodes, etc., can solve the problems of poor sustainability, performance degradation, increase the cost of water splitting technology, etc., to improve catalyst efficiency Effect

Active Publication Date: 2018-10-16
BEIJING UNIV OF TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

But its disadvantage is that the specific surface area of ​​the prepared coating is too small, which leads to poor durability, and it will cause a decline in performance after a period of time.
The patent application number 201410133843.9 discloses a method for preparing a high-performance nickel-based ruthenium-containing composite oxide hydrogen evolution electrode, which mainly adopts a solvothermal synthesis method to grow nickel-ruthenium oxide nanorods in situ on a foamed nickel substrate to obtain The specific surface area of ​​the electrode is large, it is firmly combined with the substrate, there are many active sites and strong catalytic activity, it has excellent hydrogen evolution performance and high stability, but its disadvantage is that the prepared product is highly toxic and easy to pollute surroundings
But its disadvantage is that the phosphating process is complicated, and there is still a big gap in the hydrogen evolution performance of the prepared product compared with the noble metal Pt.
[0004] In addition, during the water splitting reaction, in addition to the hydrogen evolution reaction, there is another half of the reaction, the oxygen generation reaction, and the occurrence of this reaction usually requires the use of noble metal oxides such as RuO 2 , IrO 2 As a catalyst, the cost of water splitting technology is increased, and because the current water splitting technology uses different cathode and anode electrocatalytic materials, the operation is inconvenient, which limits the industrial application of large-scale water splitting technology

Method used

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  • High-efficiency difunctional water decomposition electrocatalyst NiCoP and preparation method thereof
  • High-efficiency difunctional water decomposition electrocatalyst NiCoP and preparation method thereof
  • High-efficiency difunctional water decomposition electrocatalyst NiCoP and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

example 1

[0027] Example 1: Prepare according to the composition of the precursor hydrothermal solution and phosphating hydrothermal solution in Table 1, the precursor hydrothermal time is 8h, and then prepare the sample according to the above process steps.

[0028] Table 1 specific implementation conditions

[0029]

example 2

[0030] Example 2: Prepare according to the composition of the precursor hydrothermal solution and phosphating hydrothermal solution in Table 2, adjust the precursor hydrothermal time to 16h, and then prepare samples according to the above process steps.

[0031] Table 2 specific implementation conditions

[0032]

[0033]

example 3

[0034] Example 3: Prepare according to the composition of the precursor hydrothermal solution and phosphating hydrothermal solution in Table 3, adjust the precursor hydrothermal time to 24h, and then prepare samples according to the above process steps.

[0035] Table 3 specific implementation conditions

[0036]

[0037] The Tafel slopes and current densities corresponding to all examples in Table 4 are 10mA cm -2 overpotential

[0038]

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PUM

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Abstract

The invention discloses a high-efficiency difunctional water decomposition electrocatalyst NiCoP and a preparation method thereof, and belongs to the technical field of preparation of energy conversion materials. The preparation method comprises the following steps: firstly, obtaining a Ni / Co precursor with a high-activity surface area and proper chemical composition, and on such basis, phosphating the precursor by taking hypophosphite as a phosphorus source. Studies find that the catalyst provided by the invention has high-efficiency difunctional electrocatalytic activity; under an alkaline condition, overpotentials (10mA cm<-2>) thereof required for hydrogen production and oxygen production are 27mV and 144mV respectively, and the performance thereof exceeds that of most reported difunctional electrocatalysts; moreover, a preparation technology provided by the invention is simple, raw materials are rich and cheap, and the catalyst provided by the invention can replace expensive and scarce precious metal-based catalyst to promote commercial application of electrochemical total water decomposition.

Description

technical field [0001] The invention belongs to the technical field of preparation of energy conversion materials, and provides a water splitting bifunctional electrocatalyst NiCoP and a preparation method thereof. Background technique [0002] With the development of society, the deterioration of the environment and the reduction of fossil energy, people urgently need to find an alternative clean energy. As a clean energy source, hydrogen can be obtained by electrolysis of water. The earth is rich in water resources, and hydrogen production by electrolysis of water has broad application prospects. However, at present, the most effective catalyst for water electrolysis is the noble metal Pt, whose price and earth reserves limit large-scale industrial applications. The development of non-noble metal high-efficiency water splitting electrocatalysts has become a key issue to promote the commercial application of electrochemical water splitting. [0003] Among many catalysts, t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J27/185C25B1/04C25B11/04
CPCB01J27/1853B01J35/0033C25B1/04C25B11/04Y02E60/36
Inventor 范爱玲杨诗綦窦菊芳曹小强
Owner BEIJING UNIV OF TECH
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