Molten Salt Electrodeposition: Review

被引:1
|
作者
De Silva, Umanga [1 ]
Coons, Timothy P. [1 ]
机构
[1] Los Alamos Natl Lab, Los Alamos, NM 87545 USA
关键词
molten salt electrodeposition; molten salt; molten salt chemistry; refractory metals; ELECTROCHEMICAL FORMATION; REFRACTORY-METALS; ALLOY FILM; YB ALLOY; TUNGSTEN; TANTALUM; CHLORIDE; ELECTROLYSIS; ALUMINUM; COATINGS;
D O I
10.3390/en17153832
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Molten salt electrodeposition is the process of producing impressively dense deposits of refractory metals using the electrolysis of molten salts. However, predicting which electrochemical parameters and setup will best control different kinds of deposition (density, homogeneity, etc.) is an ongoing challenge, due to our limited understanding of the properties and mechanisms that drive molten salt electrodeposition. Because these advancements have been made rapidly and in different arenas, it is worth taking the time to stop and assess the progress of the field as a whole. These advancements have increasing relevance for the energy sector, the development of space materials and engineering applications. In this review, we assess four critical facets of this field: (1) how the current understanding of process variables enhances the electrodeposition of various molten salts and the quality of the resulting product; (2) how the electrochemical setup and the process parameters (e.g., cell reactions) are known to impact the electrodeposition of different metal coatings and refractory-metal coatings; (3) the benefits and drawbacks of non-aqueous molten salt electrodeposition, and (4) promising future avenues of research. The aim of this work is to enhance our understanding of the many procedures and variables that have been developed to date. The expectation is that this review will act as a stimulant, motivating scientists to delve further into the investigation of refractory-metal alloys by utilizing molten salt electrodeposition.
引用
收藏
页数:24
相关论文
共 50 条
  • [41] Improvement in cyclic oxidation resistance of stainless steel by molten salt electrodeposition of Y
    Fukumoto, M
    Hara, M
    JOURNAL OF THE JAPAN INSTITUTE OF METALS, 2004, 68 (02) : 66 - 69
  • [42] Electrodeposition of niobium and tantalum from a room-temperature molten salt system
    Cheek, GT
    De Long, HC
    Trulove, PC
    MOLTEN SALTS XII, PROCEEDINGS, 2000, 99 (41): : 527 - 534
  • [43] Electrodeposition of Yb-Ni alloy film in low temperature molten salt
    Department of Chemistry, Qinghai Normal University, Xining 810008, China
    Wuhan Ligong Daxue Xuebao, 2006, 8 (5-8):
  • [44] ELECTRODEPOSITION OF PLUTONIUM AND URANIUM FROM MOLTEN SALT SOLUTIONS OF DI-CHLORIDES
    BRODSKY, MB
    CARLESON, BGF
    JOURNAL OF INORGANIC & NUCLEAR CHEMISTRY, 1962, 24 (DEC): : 1675 - 1681
  • [45] Electrodeposition of Al-Mn ferromagnetic phase from molten salt electrolyte
    Stafford, G.R.
    Grushko, B.
    McMichael, R.D.
    Journal of Alloys and Compounds, 1993, 200 (1-2) : 107 - 113
  • [46] Electrodeposition Behavior of Nickel from a Low Temperature Urea-molten Salt
    Zhang Qibo
    Hua Yixin
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2013, 21 (12) : 1397 - 1403
  • [47] Mechanism of Tungsten Recovery from Spent Cemented Carbide by Molten Salt Electrodeposition
    Xing, Hongxuan
    Li, Zhen
    Feng, Enrui
    Wang, Xiaomin
    Kang, Hongguang
    Wang, Yiyong
    Jin, Hui
    Li, Jidong
    JOURNAL OF ELECTROCHEMICAL SCIENCE AND TECHNOLOGY, 2023, 14 (01) : 75 - 84
  • [48] Production of low-cost silicon films via molten salt electrodeposition
    Ji, Li
    Zou, Xingli
    Bard, Allen J.
    Yu, Edward T.
    2018 IEEE 7TH WORLD CONFERENCE ON PHOTOVOLTAIC ENERGY CONVERSION (WCPEC) (A JOINT CONFERENCE OF 45TH IEEE PVSC, 28TH PVSEC & 34TH EU PVSEC), 2018, : 0325 - 0327
  • [49] Electrodeposition of cobalt from a hydrophobic room-temperature molten salt system
    Fukui, R
    Katayama, Y
    Miura, T
    ELECTROCHEMISTRY, 2005, 73 (08) : 567 - 569
  • [50] Electrodeposition of UO2 nanoparticles in molten salt with microplasma gaseous cathode
    Luo, Junhan
    Qing, Qi
    Wang, Zhe
    Liu, Shuang
    Chen, Jing
    Lu, Yuexiang
    SEPARATION AND PURIFICATION TECHNOLOGY, 2024, 332