Anodic dissolution behavior of aluminum in AlCl3/urea ionic liquid analogs
暂无分享,去创建一个
Y. Hua | Shuxian Wang | Cunying Xu | Yan Li | Jianru Li | X. Chen | Q. Xiang
[1] J. Calderon,et al. Corrosion of non-noble metal-based catalysts during oxygen evolution reaction under on/off operation , 2022, Corrosion Science.
[2] Lun Yu,et al. Influence of the Cu content on the electrochemical corrosion performances of Ni60 coating , 2022, Corrosion Science.
[3] Hongmin Zhu,et al. A solid-state electrolysis process for upcycling aluminium scrap , 2022, Nature.
[4] Y. Hua,et al. Anodic dissolution of aluminum in AlCl3-[BzMIM]Cl ionic liquid , 2021, Journal of Electroanalytical Chemistry.
[5] R. Wuilloud,et al. Analytical developments and applications of ionic liquids for environmental studies , 2021 .
[6] V. Antipov,et al. Development and Application Prospects of Aluminum–Lithium Alloys in Aircraft and Space Technology , 2021, Metallurgist.
[7] Sviatlana V. Lamaka,et al. Insight into physical interpretation of high frequency time constant in electrochemical impedance spectra of Mg , 2021, Corrosion Science.
[8] T. Corrales,et al. Chloroaluminate Gel Electrolytes Prepared with Copolymers Based on Imidazolium Ionic Liquids and Deep Eutectic Solvent AlCl3:Urea , 2021, Polymers.
[9] Y. Hua,et al. Effects of Cuprous Ion on Electrodeposition of Aluminum from AlCl3-BMIC Ionic Liquid , 2021 .
[10] Kok Long Ng,et al. Physicochemical characterization of AlCl3-urea ionic liquid analogs: Speciation, conductivity, and electrochemical stability , 2020, Electrochimica Acta.
[11] A. Bund,et al. Anodic dissolution of aluminum and anodic passivation in [EMIm]Cl-based ionic liquids , 2020, Electrochemistry Communications.
[12] H. Dai,et al. Ionic Liquid Analogs of AlCl3 with Urea Derivatives as Electrolytes for Aluminum Batteries , 2019, Advanced Functional Materials.
[13] A. Hintennach,et al. A low-cost rechargeable aluminum/natural graphite battery utilizing urea-based ionic liquid analog , 2019 .
[14] Andreas J. Achazi,et al. Rechargeable aluminum batteries: effects of cations in ionic liquid electrolytes , 2019, RSC advances.
[15] G. Tian. Ionic Liquids as Green Electrolytes for Aluminum and Aluminum-Alloy Production , 2019, Materials Research Foundations.
[16] G. Timelli,et al. Preparation and melting of scrap in aluminum recycling: A review , 2018 .
[17] Vi Kie Soo,et al. Sustainable aluminium recycling of end-of-life products: A joining techniques perspective , 2018 .
[18] Y. Hua,et al. Anodic Dissolution of Copper in Choline Chloride-Urea Deep Eutectic Solvent , 2018 .
[19] S. Jiao,et al. The electrochemical behavior of an aluminum alloy anode for rechargeable Al-ion batteries using an AlCl3–urea liquid electrolyte , 2017 .
[20] S. Jiao,et al. A rechargeable Al-ion battery: Al/molten AlCl3-urea/graphite. , 2017, Chemical communications.
[21] A. N. Shetty,et al. Eco-friendly benzimidazolium based ionic liquid as a corrosion inhibitor for aluminum alloy composite in acidic media , 2017 .
[22] W. Hu,et al. Electrodeposition of metals and alloys from ionic liquids , 2016 .
[23] H. Abood,et al. Morphology of Electrodeposited Aluminium Metal from Aluminium Chloride-Urea Room Temperature Ionic Liquid (RTIL) at Variable Parameters , 2015 .
[24] E. Asselin,et al. Electrochemical dissolution of fresh and passivated chalcopyrite electrodes. Effect of pyrite on the reduction of Fe3+ ions and transport processes within the passive film , 2014 .
[25] G. Srinivasan,et al. Liquid coordination complexes formed by the heterolytic cleavage of metal halides. , 2013, Angewandte Chemie.
[26] Li Yan,et al. 酸性AlCl 3 -BMIC离子液体中的铝阳极溶解 , 2013 .
[27] N. Birbilis,et al. Durability and Corrosion of Aluminium and Its Alloys: Overview, Property Space, Techniques and Developments , 2012 .
[28] R. Reddy,et al. Dendrite-Free Aluminum Electrodeposition from AlCl3-1-Ethyl-3-Methyl-Imidazolium Chloride Ionic Liquid Electrolytes , 2012, Metallurgical and Materials Transactions B.
[29] Andrew D. Ballantyne,et al. Do all ionic liquids need organic cations? Characterisation of [AlCl2·nAmide]+ AlCl4(-) and comparison with imidazolium based systems. , 2011, Chemical communications.
[30] Amir Poursaee,et al. Potentiostatic transient technique, a simple approach to estimate the corrosion current density and Stern–Geary constant of reinforcing steel in concrete , 2010 .
[31] K. R. Seddon,et al. Applications of ionic liquids in the chemical industry. , 2008, Chemical Society reviews.
[32] H. Olivier-Bourbigou,et al. Chloroaluminate Ionic Liquids: from their Structural Properties to their Applications in Process Intensification , 2007 .
[33] R. Reddy,et al. Electrorefining of aluminum alloy in ionic liquids at low temperatures , 2003 .
[34] R. Reddy,et al. Electrorefining of Aluminum in C6mimCl + AlCl3 ionic Liquid At near Room Temperature , 2002 .
[35] L. Curtiss,et al. Molecular Orbital Calculations and Raman Measurements for 1-Ethyl-3-methylimidazolium Chloroaluminates , 1995 .
[36] B. Desai,et al. Impedance measurements on some doped MnO2 electrodes in H2SO4 electrolyte , 1994 .
[37] V. V. Losev,et al. Specific features of the kinetics of gas-evolving reactions on highly active electrodes☆ , 1989 .
[38] M. Einarsrud,et al. Spectral identification of Al3Cl10− in 1-methyl-3-ethylimidazolium chloroaluminate molten salt , 1988 .
[39] Finn Jensen,et al. Activation energies and the arrhenius equation , 1985 .
[40] C. Hussey,et al. Dialkylimidazolium chloroaluminate melts: a new class of room-temperature ionic liquids for electrochemistry, spectroscopy and synthesis , 1982 .