PDF下载 分享
[1]严欣昱,龙 飞,李 轩,等.热处理对电沉积Ni-S合金微观组织和析氢性能的影响[J].电镀与精饰,2024,(7):8-14.[doi:10.3969/j.issn.1001-3849.2024.07.002]
 Yan Xinyu,Long Fei,Li Xuan,et al.The influence of heat treatment on microstructure and hydrogen evolution properties of electrodeposited Ni-S alloy?/html>[J].Plating & Finishing,2024,(7):8-14.[doi:10.3969/j.issn.1001-3849.2024.07.002]
点击复制

热处理对电沉积Ni-S合金微观组织和析氢性能的影响

参考文献/References:



[1] Shiva Kumar S, Lim H. An overview of water electrolysis technologies for green hydrogen production[J]. Energy Reports, 2022, 8: 13793-13813.

[2] Wu Y, He H. Direct-current electrodeposition of Ni-S-Fe alloy for hydrogen evolution reaction in alkaline solution[J]. International Journal of Hydrogen Energy, 2018, 43(4): 1989-1997.

[3] Liu M, Yao Z, Gu J, et al. Issues and opportunities facing hydrolytic hydrogen production materials[J]. Chemical Engineering Journal, 2023, 461: 141918.

[4] Jayaraman R S, Gopinath K P, Arun J, et al. Co-hydrothermal gasification of microbial sludge and algae Kappaphycus alvarezii for bio-hydrogen production: Study on aqueous phase reforming[J]. International Journal of Hydrogen Energy, 2021, 46(31): 16555-16564.

[5] Nguyen P K T, Kim J, Das G, et al. Optimization of simultaneous dark fermentation and microbial electrolysis cell for hy drogen production from macroalgae using response surface methodology[J]. Biochemical Engineering Journal, 2021, 171: 108029.

[6] Yin Z, Chen F. A facile electrochemical fabrication of hierarchically structured nickel-copper composite electrodes on nickel foam for hydrogen evolution reaction[J]. Journal of Power Sources, 2014, 265: 273-281.

[7] Wang M, Yang H, Shi J, et al. Alloying nickel with molybdenum significantly accelerates alkaline hydrogen electrocatalysis[J]. Angewandte Chemie International Edition, 2021, 60(11): 5771-5777.

[8] Ahn S H, Park H Y, Choi I, et al. Electrochemically fabricated NiCu alloy catalysts for hydrogen production in alkaline water electrolysis[J]. International Journal of Hydrogen Energy, 2013, 38(31): 13493-13501.

[9] Lian J, Wu Y, Sun J. High current density electrodeposition of NiFe/Nickel Foam as a bifunctional electrocatalyst for overall water splitting in alkaline electrolyte[J]. Journal of Materials Science, 2020, 55(31): 15140-15151.

[10] He H, Liu H, Liu F, et al. Distribution of sulphur and electrochemical properties of nickel sulphur coatings electrodeposited on the nickel foam as hydrogen evolution reaction cathode [J]. Materials Letters, 2005, 59(29): 3968-3972.

[11] Han Q, Liu K, Chen J, et al. A study on electrodeposited Ni-S alloys as hydrogen evolution reaction cathodes[J]. International Journal of Hydrogen Energy, 2003, 28(11): 1207-1212.

[12] Ouyang C, Wang X, Wang C, et al. Hierarchically porous Ni 3 S 2 nanorod array foam as highly efficient electrocatalyst for hydrogen evolution reaction and oxygen evolution reaction[J]. Electrochimica Acta, 2015, 174: 297-301.

[13] Vandenborre H, Vermeiren P, Leysen R. Hydrogen evolution at nickel sulphide cathodes in alkaline medium[J]. Electrochimica Acta, 1984, 29(3): 297-301.

[14] 杜敏 , 高荣杰 , 魏绪钧 . 非晶态 Ni-S 合金的晶化行为 [J]. 青岛海洋大学学报 ( 自然科学版 ), 2000(1): 132-135.

[15] Anantharaj S, Noda S. Amorphous catalysts and electrochemical water splitting: an untold story of harmony[J]. Small, 2020, 16(2): 1905779.

[16] Xie J, Xie Y. Structural engineering of electrocatalysts for the hydrogen evolution reaction: order or disorder?[J]. ChemCatChem, 2015, 7(17): 2568-2580.

[17] Zhou N, Liu R, Wu X, et al. One-spot autogenous formation of crystalline-amorphous Ni 3 S 2 /NiFeO x H y heterostructure nanosheets array for synergistically boosted oxygen evolution reaction[J]. Journal of Power Sources, 2023, 574: 233163.

[18] Lasia A, Rami A. Kinetics of hydrogen evolution on nickel electrodes[J]. Journal of Electroanalytical Chemistry and Interfacial Electrochemistry, 1990, 294(1): 123-141.

[19] Hitz C, Lasia A. Experimental study and modeling of impedance of the HER on porous Ni electrodes[J]. Journal of Electroanalytical Chemistry, 2001, 500(1): 213-222.

[20] Sabela R, Paseka I. Properties of Ni-S electrodes for hydrogen evolution from alkaline medium[J]. Journal of Applied Electrochemistry, 1990, 20(3): 500-505.

相似文献/References:

[1]张冰怡,张莎莎*,姚正军,等.电沉积Ni-W纳米晶镀层制备与显微硬度研究[J].电镀与精饰,2019,(8):20.[doi:10.3969/j.issn.1001-3849.2019.08.005]
 ZHANG Bingyi,ZHANG Shasha*,YAO Zhengjun,et al.Preparation and Microhardness of Electrodeposited Ni-W Nanocrystalline Coatings[J].Plating & Finishing,2019,(7):20.[doi:10.3969/j.issn.1001-3849.2019.08.005]
[2]雷同鑫,鞠 辉,张长科,等.电镀Ni-W-P合金在钻杆接头上的应用[J].电镀与精饰,2019,(10):38.[doi:10.3969/j.issn.1001-3849.2019.10.009]
 LEI Tongxin,JU Hui,ZHANG Changke,et al.Application of Ni-W-P Alloy Prepared by Electroplating to Tool Joints[J].Plating & Finishing,2019,(7):38.[doi:10.3969/j.issn.1001-3849.2019.10.009]
[3]李晓峰*,孟 芳,董会超,等.电沉积法制备掺铋金属锌及其性能表征[J].电镀与精饰,2020,(1):12.[doi:10.3969/j.issn.1001-3849.2020.01.003]
 LI Xiaofeng*,MENG Fang,DONG Huichao,et al.Electrodeposited Preparation of Bi-Doped Metal Zinc and Its Performance Characterization[J].Plating & Finishing,2020,(7):12.[doi:10.3969/j.issn.1001-3849.2020.01.003]
[4]张永霞,王 玫,方 华*,等.Co3O4/碳纳米管复合膜的超级电容器性能[J].电镀与精饰,2020,(2):1.[doi:10.3969/j.issn.1001-3849.2020.02.001]
 ZHANG Yongxia,WANG Mei,FANG Hua*,et al.Co3O4/Carbon Nanotube Composite Film for Supercapacitor and Its Performances[J].Plating & Finishing,2020,(7):1.[doi:10.3969/j.issn.1001-3849.2020.02.001]
[5]侯珂珂,陈新华,张万强,等.电沉积法制备仿生超疏水滤网及其油水分离性能[J].电镀与精饰,2020,(4):1.[doi:10.3969/j.issn.1001-3849.2020.04.0010]
 HOU Keke,CHEN Xinhua,ZHANG Wanqiang,et al.Preparation of Biomimetic Superhydrophobic Filter Screen by Electrodeposition and the Oil-Water Separation Performance[J].Plating & Finishing,2020,(7):1.[doi:10.3969/j.issn.1001-3849.2020.04.0010]
[6]肖成龙,梁世雍,于兆勤*.可控阵列微柱超疏水表面实验研究[J].电镀与精饰,2020,(7):27.[doi:10.3969/j.issn.1001-3849.2020.07.0060]
 XIAO Chenglong,LIANG Shiyong,YU Zhaoqin*.Experimental Study on Superhydrophobic Surface of Controllable Array Microcolumns[J].Plating & Finishing,2020,(7):27.[doi:10.3969/j.issn.1001-3849.2020.07.0060]
[7]徐 超,王淼宇,周建波,等.电沉积Ni-Mo-Fe-La合金析氢电极的工艺研究[J].电镀与精饰,2020,(8):7.[doi:10.3969/j.issn.1001-3849.2020.08.0020]
 XU Chao,WANG Miaoyu,ZHOU Jianbo,et al.Study on Electrodeposition Process of Ni-Mo-Fe-La Alloy Hydrogen Evolution Electrode[J].Plating & Finishing,2020,(7):7.[doi:10.3969/j.issn.1001-3849.2020.08.0020]
[8]高 辉,刘伟杰*.2A12铝合金电沉积Ni-Co-MoS2复合镀层的耐磨性能研究[J].电镀与精饰,2020,(10):1.[doi:10.3969/j.issn.1001-3849.2020.10.0010]
 GAO Hui,LIU Weijie*.Research on Wear Resistance of Ni-Co-MoS2 Composite Coating Electrodeposited on 2A12 Aluminium Alloy[J].Plating & Finishing,2020,(7):1.[doi:10.3969/j.issn.1001-3849.2020.10.0010]
[9]王 羽,刘励昀,杜荣斌*,等.添加剂MPS、DDAC、Cl-对铜箔电沉积的影响[J].电镀与精饰,2021,(5):1.[doi:10.3969/j.issn.1001-3849.2021.05.001]
 WANG Yu,LIU Liyun,DU Rongbin*,et al.Effects of Additives MPS, DDAC and Cl- on the Copper Foil[J].Plating & Finishing,2021,(7):1.[doi:10.3969/j.issn.1001-3849.2021.05.001]
[10]杨惠良*.硫酸盐镀液中紫铜电沉积Ni-Co/WC复合镀层的工艺条件优化[J].电镀与精饰,2021,(6):30.[doi:10.3969/j.issn.1001-3849.2021.06.007]
 YANG Huiliang*.Optimization of Process Conditions for Electrodeposition of Ni-Co/WC Composite Coatings on Red Copper from Sulfate Bath[J].Plating & Finishing,2021,(7):30.[doi:10.3969/j.issn.1001-3849.2021.06.007]

备注/Memo

收稿日期: 2023-09-10 修回日期: 2023-09-23 作者简介: 严欣昱( 1999 ―),男,硕士研究生, email : jvdd944357@sjtu.edu.cn 通信作者: 周潼, email : tongzhou@alumni.sjtu.edu.cn 基金项目: 国家自然科学基金资助项目( Nos.52301095 , 51971140 );国家重点研发计 \ 划项目( 2021YFC3101201 )

更新日期/Last Update: 2024-07-08