A strongly coupled 3D SnS2@Ti3C2Tx heterojunction with vacancies for high-efficiency sodium storage

Literature Information

Publication Date 2023-12-14
DOI 10.1039/D3NJ05137D
Impact Factor 3.591
Authors


View Original

Abstract

Ti3C2Tx, as some of the typical MXenes, exhibit great potential for application in rechargeable batteries due to its high conductivity, low ionic diffusion resistance, adjustable layer spacing, and surface modifiability. However, several challenges hinder its practical value, including severe self-stacking, low capacity, and unsatisfactory durability, particularly when accommodating large sodium ions. To address these issues, we have designed a SnS2@Ti3C2Tx sandwich structure with S vacancies through heterojunction engineering. Anchoring SnS2 to Ti3C2Txvia S–Ti–C bonds, this interlocking cooperative heterostructure not only mitigates Ti3C2Tx self-stacking but also exposes a significant number of active sites on the surface. Consequently, it improves the intercalation pseudocapacitance ratio, resolves the reaction kinetic hysteresis caused by the challenging removal of sodium ions, and prevents structural collapse resulting from the volume effect in SnS2. Moreover, the S vacancies effectively enhance the adsorption capacity of Na+, providing additional active sites for their adsorption. Density functional theory calculations demonstrate increased adsorption energy and reduced diffusion energy of sodium ions, thereby improving the sodium storage performance of the materials. The SnS2@Ti3C2Tx heterojunction exhibits an impressive reversible capacity of 225 mA h g−1 at 100 mA g−1, with 82% capacity retention after 1000 cycles. Furthermore, even at 500 mA g−1, a capacity of 122 mA h g−1 can still be achieved after 1000 cycles. Consequently, this research offers novel insights for future exploration in the development of anode materials for ion batteries.

Related Literature

Graphene and graphene–cellulose nanocrystal composite films for sustainable anodes in biophotovoltaic devices

Laura T. Wey, Jouko Peltonen, Yagut Allahverdiyeva

2023-12-01 Paper

DOI: 10.1039/D3SE01185B

Aging of quinoxaline-based polymer solar cells under UV-free white light

Martin Hager, Frédéric Laquai, Yingping Zou

2023-12-24 Paper

DOI: 10.1039/D3SE00987D

Understanding the “Berg limit”: the 65° contact angle as the universal adhesion threshold of biomatter

Matej Kanduč, Emanuel Schneck, Roland R. Netz

2023-12-12 Perspective

DOI: 10.1039/D3CP05084J

The single metal atom (Ni, Pd, Pt) anchored on defective hexagonal boron nitride for oxidative desulfurization

Naixia Lv, Hongshun Ran, Jinrui Zhang, Jie Yin, Yuan Zhang, Hongping Li, Linhua Zhu

2023-12-19 Paper

DOI: 10.1039/D3CP04963A

Back cover

2024-01-30 Cover

DOI: 10.1039/D4SE90012J

Contents list

2023-12-21 Front/Back Matter

DOI: 10.1039/D4CP90003K

Combining experiment and energy landscapes to explore anaerobic heme breakdown in multifunctional hemoproteins

Alasdair D. Keith, Elizabeth B. Sawyer, Desmond C. Y. Choy, Yuhang Xie, George S. Biggs, Oskar James Klein, Paul D. Brear, David J. Wales, Paul D. Barker

2023-11-29 Perspective

DOI: 10.1039/D3CP03897A

The controlled engineering of surface oxygen defects on Bi2Zr2O7 compounds for catalytic soot combustion by adjusting the preparation methods

Shijing Zhang, Xiaohui Feng, Zekai Xu, Yuting Li, Ping Wang, Jiating Shen, Junwei Xu, Xianglan Xu, Xiuzhong Fang, Xiang Wang

2023-11-24 Paper

DOI: 10.1039/D3CP04104B

Back cover

2024-01-03 Cover

DOI: 10.1039/D4CP90009J

You might also like

Compound Q&A

How should waste containing N-Methoxy-N-methyl-1,3-thiazole-5-carboxamide (CAS: 898825-89-3) be handled?

Waste containing N-Methoxy-N-methyl-1,3-thiazole-5-carboxamide (CAS: 898825-89-3...

898825-89-3N-Methoxy-N-methyl-1...
Compound Q&A

How should N-(4-Biphenylyl)dibenzo[b,d]furan-4-amine (CAS: 1318338-47-4) be stored?

N-(4-Biphenylyl)dibenzo[b,d]furan-4-amine should be stored in a tightly sealed c...

1318338-47-4N-(4-Biphenylyl)dibe...
Compound Q&A

What is the market or research trend for 3-Acetamido-5-amino-2,4,6-triiodobenzoic acid (CAS: 1713-07-1)?

The market for 3-Acetamido-5-amino-2,4,6-triiodobenzoic acid (CAS: 1713-07-1) is...

1713-07-13-Acetamido-5-amino-...
Compound Q&A

How should Benzyl 2-O-acetyl-3,4,6-tri-O-benzyl-beta-D-galactopyranoside (CAS: 61820-03-9) be stored?

Benzyl 2-O-acetyl-3,4,6-tri-O-benzyl-beta-D-galactopyranoside (CAS: 61820-03-9) ...

61820-03-9Benzyl 2-O-acetyl-3,...
Compound Q&A

What regulatory guidelines apply to 2-Ethylpiperazine dihydrochloride (CAS: 438050-52-3)?

2-Ethylpiperazine dihydrochloride (CAS: 438050-52-3) is regulated under the Glob...

438050-52-32-Ethylpiperazine di...
Compound Q&A

What regulatory guidelines apply to 1,1'-[1,3-Phenylenebis(methylene)]bis(3-methyl-1H-pyrrole-2,5-dione) (CAS: 119462-56-5)?

1,1'-[1,3-Phenylenebis(methylene)]bis(3-methyl-1H-pyrrole-2,5-dione) (CAS: 11946...

119462-56-51,1'-[1,3-Phenyleneb...
Compound Q&A

Are there alternatives to 5-Fluoro-2-(1-pyrrolidinyl)pyridine (CAS: 1287217-79-1) in synthesis?

Several alternatives can be used in the synthesis of 5-Fluoro-2-(1-pyrrolidinyl)...

1287217-79-15-Fluoro-2-(1-pyrrol...
Compound Q&A

What precautions should be taken when handling 6-Bromoimidazo[1,2-a]pyridin-8-amine (CAS: 676371-00-9)?

When handling 6-Bromoimidazo[1,2-a]pyridin-8-amine, it is important to wear appr...

676371-00-96-Bromoimidazo[1,2-a...
Compound Q&A

Are there alternatives to (2S,4R)-4-(4-Nitrobenzyl)pyrrolidine-2-carboxylic acid hydrochloride (CAS: 1049740-22-8) in synthesis?

Alternatives to (2S,4R)-4-(4-Nitrobenzyl)pyrrolidine-2-carboxylic acid hydrochlo...

1049740-22-8(2S,4R)-4-(4-Nitrobe...

Source Journal

New Journal of Chemistry

New Journal of Chemistry
CiteScore: 5.3
Self-citation Rate: 3.7%
Articles per Year: 2153

NJC (New Journal of Chemistry) is a broad-based primary journal encompassing all branches of chemistry and its sub-disciplines. It contains full research articles, communications, perspectives and focus articles. This well-established journal, owned by the Centre National de la Recherche Scientifique (CNRS) of France, has been co-published with the Royal Society of Chemistry since January 1998. NJC is the forum for the publication of high-quality, original and significant work that opens new directions in chemistry or other scientific disciplines. In addition to having a significant chemical component, work published in NJC must demonstrate that it will have an impact on areas of research other than that of the reported work.

Recommended Compounds

Recommended Suppliers

Disclaimer
This page provides academic journal information for reference and research purposes only. We are not affiliated with any journal publishers and do not handle publication submissions. For publication-related inquiries, please contact the respective journal publishers directly.
If you notice any inaccuracies in the information displayed, please contact us at support@chemtradehub.com. We will promptly review and address your concerns.