Role of the MnCoGe alloys to enhance the capacitance of flexible supercapacitors made with electrodes of recycled aluminum and carbon nanotubes

被引:3
|
作者
Mendoza, Ricardo [1 ]
Balderas-Soto, Marco [1 ]
Suarez, Rafael Guillermo [2 ]
Zamora, Jonathan [1 ]
Mtz-Enriquez, Arturo Isaias [3 ]
Zakhidov, Anvar [4 ]
Oliva, Jorge [5 ]
机构
[1] Inst Potosino Invest Cient & Tecnol AC, Div Mat Avanzados, San Luis Potosi 78216, Slp, Mexico
[2] Univ Nacl Autonoma Mexico, Inst Invest Mat, Ciudad Univ, Ciudad De Mexico 04510, Mexico
[3] Cinvestav Unidad Saltillo, Parque Ind, Ramos Arizpe 25900, Coahuila, Mexico
[4] Univ Texas Dallas, Nanotech Inst, Richardson, TX 75080 USA
[5] Univ Nacl Autonoma Mexico, Ctr Fis Aplicada & Tecnol Avanzada, Blvd Juriquilla 3001, Queretaro Mexico 76230, Mexico
关键词
Supercapacitor; Aluminum; Carbon nanotubes; Sustainability; MnCoGe alloy; X-RAY; PERFORMANCE; TRANSITION;
D O I
10.1016/j.synthmet.2024.117654
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Flexible and sustainable supercapacitors (SCs) were fabricated with carbon nanotubes (CNTs) as the anode and recycled aluminium as the cathode (obtained from soda cans). Devices made with the configuration of CNT//Al had maximum energy-densities/capacitances of 97.8 Wh kg-1 / 3 13.5 F g-1 . Later, MnCoGe (MCG) alloy powders doped with boron (MCG:B) or gallium (MCG:Ga) were incorporated into the SC electrodes and the energydensity/capacitance was enhanced up to 269.5 Wh kg-1 / 8 62.3 F g-1 . This outstanding increment of the electrochemical performance was caused by the formation of multiple redox centers on the SC electrodes (oxygen vacancies, Mn 3+ /Mn 4+ , Co 2+ /Co 3+ , and Ge 4+ /Ge 2+ /Ge 0 ) as confirmed by XPS and Raman spectroscopies. The SCs made with MCG alloys were immersed in acid (pH=3)/basic (pH=11) aqueous media and electrochemically tested. Surprisingly, the capacitance retention was reduced a maximum of 0.6%, demonstrating their capacity to operate underwater. The tests of bending and charging/discharging cycles demonstrated that the SCs made with the MCG:B powder were the most stable because their capacitance retention was above 95%. In contrast, SCs made with the MCG:Ga alloy had capacitance retentions below 93% after the same tests. Overall, we demonstrated that efficient/flexible/waterproof SCs can be made with low-cost aluminium, which of interest for wearable electronics.
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页数:11
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