| Literature DB >> 34960927 |
Andrés Mauricio Ramírez1, Manuel Alejandro Gacitúa2, Fernando Raúl Díaz3, María Angélica Del Valle3.
Abstract
In this work, the use of nanostructured conducting polymer deposits on energy-storing devices is described. The cathode and the anode are electrochemically modified with nanowires of polypyrrole and poly(3,4-ethylenedioxythiophene), respectively, prepared after the use of a mesoporous silica template. The effect of aqueous or ionic liquid medium is assayed during battery characterization studies. The nanostructured device greatly surpasses the performance of the bulk configuration in terms of specific capacity, energy, and power. Moreover, compared with devices found in the literature with similar designs, the nanostructured device prepared here shows better battery characteristics, including cyclability. Finally, considering the semi-conducting properties of the components, the device was adapted to the design of a solar-rechargeable device by the inclusion of a titanium oxide layer and cis-bis(isothiocyanate)-bis(2,2'-bipyridyl-4,4'-dicarboxylate) ruthenium (II) dye. The device proved that the nanostructured design is also appropriate for the implementation of solar-rechargeable battery, although its performance still requires further optimization.Entities:
Keywords: battery; electrochemical polymerization; polymer nanowires; solar rechargeable battery
Year: 2021 PMID: 34960927 PMCID: PMC8709196 DOI: 10.3390/polym13244375
Source DB: PubMed Journal: Polymers (Basel) ISSN: 2073-4360 Impact factor: 4.329
Scheme 1Two electrode cell construction design for measure of recharge and discharge.
Figure 1Characteristic charge and discharge cycle of PEDOT|PPy battery, charged with 2.3 μA and discharged with −2.3 μA.
Specific total capacity, energy density, and power density for different battery configurations and media.
| Battery |
|
|
| ||
|---|---|---|---|---|---|
| Ah g−1 | Wh kg−1 | W kg−1 | |||
| Charge | Discharge | Charge | Discharge | ||
| BB-Aqueous | 148 | 423 | 153 | 8469 | 3067 |
| NN-Aqueous | 2471 | 3794 | 860 | 75,884 | 17,196 |
| BB-Ionic liquid | 184 | 655 | 153,333 | 13,109 | 3,066,667 |
| NN-Ionic liquid | 2868 | 7901 | 1182 | 158,027 | 23,645 |
Figure 2Multiple-steps E/t charge/discharge transients registered at ±5 μA for bulk (BB) and nanostructured (NN) electrode configuration in different media. Insert: Energy density calculated for each charge/discharge cycle.
Figure 3Multiple-step E/t charge/discharge transients of NN at ±2.3 μA, 400 cycles. Insert: Energy density vs. cycle number calculated for the first 200 cycles.
Comparison of batteries characteristics for other reports with similar materials.
| Battery Configuration | I |
|
|
| Cycle n°/Stability | Ref |
|---|---|---|---|---|---|---|
| A g−1 | Ah g−1 | Wh kg−1 | W kg−1 | |||
| Al|EMImCl-AlCl3|PEDOT | 0.03 | 179 | 233 | 146 | 100/94% | [ |
| SS|E-AVNF|Zn | 0.50 | 326 | 276 | 16,000 | 1000/94% | [ |
| NiO/PEDOT|EC/DEC + LiPF6|Li | 0.72 | 650 | n/a | n/a | 50/80% | [ |
| Sn|PPy|Cu | n/a | 942 | n/a | n/a | 50/47% | [ |
| ITO|TiO2|PEDOTnw|BMIMPF6|PPymw|ITO | 57.4 | 2868 | 1075 | 21,495 | 200/98% | This work |
Key: I (applied current per mass of active material); a (calculated after discharge process); EMImCl-AlCl3 (1-ethyl-3-methylimidazolium chloride-aluminum chloride); SS (stainless steel foil); E-AVNF (PEDOT intercalated ammonium vanadate nanofiber); NiO/PEDOT (nickel oxide film with PEDOT deposit); EC/DEC (ethylene carbonate and diethyl carbonate mix); BMIMPF6 (1-butyl-3-methylimidazolium hexafluorophosphate).
Figure 4E/t transient of ITO|TiO2|N3|PEDOTnw|BMIMPF6|PPynw|ITO in light and dark conditions (a) Single-step and (b) Multiple-step.
Comparison of solar rechargeable batteries for various reports with similar materials.
| Active Layer Material | Medium | OCV/mV | Ref | |
|---|---|---|---|---|
| Anode | Cathode | |||
| TiO2|PEDOT a,b | PPy c | LiClO4 + TBP in PC | 510 | [ |
| ZnTpp|PEDOT:PSS | Carbon paper | MV in TB | 430 | [ |
| N749|PEDOT:PSS | Carbon paper | MV in TB | 198 | |
| TiO2|N719 a | Hydrogen storage alloy d | LiClO4 + PEDOT-modified Nafion® | 700 | [ |
| TiO2|N3|PEDOTnw | PPynw | Ionic liquid | 35 | This work |
Key: TBP (4-tertiary-butylpyridine); PC (propylene carbonate); ZnTpp (5,10,15,20-tetraphenyl-21 h,23 h-porphine-Zn); PSS (Polystyrene sulfonate); N749 (triisothiocyanato-(2,2′:6′,6′′-terpyridyl-4,4′,4′′-tricarboxylato) ruthenium(II) tris(tetra-butylammonium)); MV (Methylviologen); TB (Tris buffer); N719 ammonium salt of N3 dye; a, TiO2 coating using titanium oxide paste sintered at 500 °C; b, PEDOT layer made through photoelectrochemical polymerization method; c, PPy layer made through electrochemical polimerization method; d, MmNi3.6Co0.75Mn0.35Al0.3.