Decoding Niobium Carbide MXene Dual-Functional Photoactive Cathode in Photoenhanced Hybrid Zinc-Ion Capacitor
Status PubMed-not-MEDLINE Language English Country United States Media electronic-ecollection
Document type Journal Article
PubMed
38576440
PubMed Central
PMC10988777
DOI
10.1021/acsmaterialslett.3c01661
Knihovny.cz E-resources
- Publication type
- Journal Article MeSH
The coupling of energy harvesting and energy storage discrete modules in a single architecture as a "two-in-one" concept is significant in off-grid energy storage devices. This approach can decrease the device size and the loss of energy transmission in common integrated energy harvesting and storage systems. This work systematically investigates the photoactive characteristics of niobium carbide MXene, Nb2CTx, in a photoenhanced hybrid zinc-ion capacitor (P-ZIC). The unique configuration of the Nb2CTx photoactive cathode absorbs light to charge the capacitor and enables it to operate continuously in the light-powered mode. The Nb2CTx-based P-ZIC shows a photodriven capacitance enhancement of over 60% at the scan rate of 10 mV s-1 under 50 mW cm-2 illumination with 435 nm wavelength. Furthermore, a photoenhanced specific capacitance of ∼27 F g-1, an impressive photocharging voltage response of 1.0 V, and capacitance retention of ∼85% (over 3000 cycles) are obtained.
See more in PubMed
Flores-Diaz N.; De Rossi F.; Das A.; Deepa M.; Brunetti F.; Freitag M. Progress of Photocapacitors. Chem. Rev. 2023, 123, 9327–9355. 10.1021/acs.chemrev.2c00773. PubMed DOI PMC
Dong X.; Chen X.; Jiang X.; Yang N. Light-Assisted Energy Storage Devices: Principles, Performance, and Perspectives. Adv. Energy Mater. 2023, 13, 230114310.1002/aenm.202301143. DOI
Boruah B. D.; Wen B.; De Volder M. Light Rechargeable Lithium-Ion Batteries Using V2O5 Cathodes. Nano Lett. 2021, 21, 3527–3532. 10.1021/acs.nanolett.1c00298. PubMed DOI PMC
Boruah B. D.; Wen B.; De Volder M. Molybdenum Disulfide–Zinc Oxide Photocathodes for Photo-Rechargeable Zinc-Ion Batteries. ACS Nano 2021, 15, 16616–16624. 10.1021/acsnano.1c06372. PubMed DOI PMC
Bi J.; Zhang J.; Giannakou P.; Wickramanayake T.; Yao X.; Wang M.; Liu X.; Shkunov M.; Zhang W.; Zhao Y. A Highly Integrated Flexible Photo-Rechargeable System Based on Stable Ultrahigh-Rate Quasi-Solid-State Zinc-Ion Micro-Batteries and Perovskite Solar Cells. Energy Storage Mater. 2022, 51, 239–248. 10.1016/j.ensm.2022.06.043. DOI
Li Q.; Liu Y.; Guo S.; Zhou H. Solar Energy Storage in the Rechargeable Batteries. Nano Today 2017, 16, 46–60. 10.1016/j.nantod.2017.08.007. DOI
Schmidt D.; Hager M. D.; Schubert U. S. Photo-Rechargeable Electric Energy Storage Systems. Adv. Energy Mater. 2016, 6, 150036910.1002/aenm.201500369. DOI
Ahmad S.; George C.; Beesley D. J.; Baumberg J. J.; De Volder M. Photo-Rechargeable Organo-Halide Perovskite Batteries. Nano Lett. 2018, 18, 1856–1862. 10.1021/acs.nanolett.7b05153. PubMed DOI
Tewari N.; Shivarudraiah S. B.; Halpert J. E. Photorechargeable Lead-Free Perovskite Lithium-Ion Batteries Using Hexagonal Cs3Bi2I9 Nanosheets. Nano Lett. 2021, 21, 5578–5585. 10.1021/acs.nanolett.1c01000. PubMed DOI
Kato K.; Puthirath A. B.; Mojibpour A.; Miroshnikov M.; Satapathy S.; Thangavel N. K.; Mahankali K.; Dong L.; Arava L. M. R.; John G.; et al. Light-Assisted Rechargeable Lithium Batteries: Organic Molecules for Simultaneous Energy Harvesting and Storage. Nano Lett. 2021, 21, 907–913. 10.1021/acs.nanolett.0c03311. PubMed DOI
Lv Q.; Zhu Z.; Zhao S.; Wang L.; Zhao Q.; Li F.; Archer L. A.; Chen J. Semiconducting Metal–Organic Polymer Nanosheets for a Photoinvolved Li–O2 Battery under Visible Light. J. Am. Chem. Soc. 2021, 143, 1941–1947. 10.1021/jacs.0c11400. PubMed DOI
Liu Y.; Li N.; Wu S.; Liao K.; Zhu K.; Yi J.; Zhou H. Reducing the Charging Voltage of a Li–O2 Battery to 1.9 V by Incorporating a Photocatalyst. Energy Environ. Sci. 2015, 8, 2664–2667. 10.1039/C5EE01958C. DOI
Boruah B. D.; Wen B.; Nagane S.; Zhang X.; Stranks S. D.; Boies A.; De Volder M. Photo-rechargeable Zinc-Ion Capacitors using V2O5-Activated Carbon Electrodes. ACS Energy Lett. 2020, 5, 3132–3139. 10.1021/acsenergylett.0c01528. DOI
Boruah B. D.; Mathieson A.; Wen B.; Jo C.; Deschler F.; De Volder M. Photo-Rechargeable Zinc-Ion Capacitor Using 2D Graphitic Carbon Nitride. Nano Lett. 2020, 20, 5967–5974. 10.1021/acs.nanolett.0c01958. PubMed DOI
Boruah B. D.; Mathieson A.; Wen B.; Feldmann S.; Dose W. M.; De Volder M. Photo-Rechargeable Zinc-Ion Batteries. Energy Environ. Sci. 2020, 13, 2414–2421. 10.1039/D0EE01392G. DOI
Park S. K.; Boruah B. D.; Pujari A.; Kim B.-M.; De Volder M. Photo-Enhanced Magnesium-Ion Capacitors Using Photoactive Electrodes. Small 2022, 18, 220278510.1002/smll.202202785. PubMed DOI
Gupta H.; Dahiya Y.; Rathore H. K.; Awasthi K.; Kumar M.; Sarkar D. Energy-Dense Zinc Ion Hybrid Supercapacitors with S, N Dual-Doped Porous Carbon Nanocube Based Cathodes. ACS Appl. Mater. Interface 2023, 15, 42685–42696. 10.1021/acsami.3c09202. PubMed DOI
Gupta H.; Kumar M.; Sarkar D.; Menezes P. W. Recent Technological Advances in Designing Electrodes and Electrolytes for Efficient Zinc Ion Hybrid Supercapacitors. Energy Adv. 2023, 2, 1263–1293. 10.1039/D3YA00259D. DOI
Zhang H.; Peng J.; Li L.; Zhao Y.; Gao Y.; Wang J.; Cao Y.; Dou S.; Chou S. Low-Cost Zinc Substitution of Iron-Based Prussian Blue Analogs as Long Lifespan Cathode Materials for Fast Charging Sodium-Ion Batteries. Adv. Funct. Mater. 2023, 33, 221072510.1002/adfm.202210725. DOI
Shin C.-H.; Lee H.-Y.; Gyan-Barimah C.; Yu J.-H.; Yu J.-S. Magnesium: Properties and Rich Chemistry for New Material Synthesis and Energy Applications. Chem. Soc. Rev. 2023, 52, 2145–2192. 10.1039/D2CS00810F. PubMed DOI
Du H.; Dong Y.; Li Q.-J.; Zhao R.; Qi X.; Kan W.-H.; Suo L.; Qie L.; Li J.; Huang Y. A New Zinc Salt Chemistry for Aqueous Zinc-Metal Batteries. Adv. Mater. 2023, 35, 221005510.1002/adma.202210055. PubMed DOI
Wen T.; Qu B.; Tan S.; Huang G.; Song J.; Wang Z.; Wang J.; Tang A.; Pan F. Rational Design of Artificial Interphase Buffer Layer with 3D Porous Channel for Uniform Deposition in Magnesium Metal Anodes. Energy Storage Mater. 2023, 55, 816–825. 10.1016/j.ensm.2022.12.041. DOI
Xia Y.; Cao Q.; Wang Y.; Wang X.; Zhou J. Unravelling the Effect of Benzoquinone Intercalators on the Aqueous Zinc-Ion Storage Performance Toward a Vanadium Pentoxide Cathode. J. Mater. Chem. A 2023, 11, 22906–22912. 10.1039/D3TA03964A. DOI
Ma L.; Li X.; Zhang G.; Huang Z.; Han C.; Li H.; Tang Z.; Zhi C. Initiating a Wearable Solid-State Mg Hybrid Ion Full Battery with High Voltage, High Capacity and Ultra-Long Lifespan in Air. Energy Storage Mater. 2020, 31, 451–458. 10.1016/j.ensm.2020.08.001. DOI
Yin J.; Zhang W.; Wang W.; Alhebshi N. A.; Salah N.; Alshareef H. N. Electrochemical Zinc Ion Capacitors Enhanced by Redox Reactions of Porous Carbon Cathodes. Adv. Energy Mater. 2020, 10, 200170510.1002/aenm.202001705. DOI
Jiao Q.; Zhai X.; Sun Z.; Wang W.; Liu S.; Ding H.; Chu W.; Zhou M.; Wu C. Ultrafast Superfilling Construction of a Metal Artificial Interface for Long-Term Stable Zinc Anodes. Adv. Mater. 2023, 35, 230085010.1002/adma.202300850. PubMed DOI
Gomez-Martin A.; Reissig F.; Frankenstein L.; Heidbüchel M.; Winter M.; Placke T.; Schmuch R. Magnesium Substitution in Ni-Rich NMC Layered Cathodes for High-Energy Lithium Ion Batteries. Adv. Energy Mater. 2022, 12, 210304510.1002/aenm.202103045. DOI
Wang Y.; Wang Y.; Chen K.; Qi K.; Xue T.; Zhang H.; He J.; Xiao S. Niobium Carbide MXenes with Broad-Band Nonlinear Optical Response and Ultrafast Carrier Dynamics. ACS Nano 2020, 14, 10492–10502. 10.1021/acsnano.0c04390. PubMed DOI
O’Hara A.; Nunley T. N.; Posadas A. B.; Zollner S.; Demkov A. A. Electronic and Optical Properties of NbO2. J. Appl. Phys. 2014, 116, 21370510.1063/1.4903067. DOI
Kueng A.; Kranz C.; Mizaikoff B. Scanning Probe Microscopy with Integrated Biosensors. Sensor Lett. 2003, 1, 2–15. 10.1166/sl.2003.001. DOI
Yang M.-M.; Luo Z.-D.; Mi Z.; Zhao J.; E S. P.; Alexe M. Piezoelectric and Pyroelectric Effects Induced by Interface Polar Symmetry. Nature 2020, 584, 377–381. 10.1038/s41586-020-2602-4. PubMed DOI
Wen L.; Wu Y.; Wang S.; Shi J.; Zhang Q.; Zhao B.; Wang Q.; Zhu C.; Liu Z.; Zheng Y.; et al. A Novel TiSe2 (De)Intercalation Type Anode for Aqueous Zinc-Based Energy Storage. Nano Energy 2022, 93, 10689610.1016/j.nanoen.2021.106896. DOI
2D Rhenium- and Niobium-Doped WSe2 Photoactive Cathodes in Photo-Enhanced Hybrid Zn-Ion Capacitors