Preparation of 2D Polyaniline/MoO3−x Superlattice Nanosheets via Intercalation‐Induced Morphological Transformation for Efficient Chemodynamic Therapy. Issue 11 (15th January 2023)
- Record Type:
- Journal Article
- Title:
- Preparation of 2D Polyaniline/MoO3−x Superlattice Nanosheets via Intercalation‐Induced Morphological Transformation for Efficient Chemodynamic Therapy. Issue 11 (15th January 2023)
- Main Title:
- Preparation of 2D Polyaniline/MoO3−x Superlattice Nanosheets via Intercalation‐Induced Morphological Transformation for Efficient Chemodynamic Therapy
- Authors:
- Hu, Tingting
Xue, Baoli
Meng, Fanqi
Ma, Lu
Du, Yonghua
Yu, Shilong
Ye, Ruquan
Li, Hai
Zhang, Qinghua
Gu, Lin
Zhou, Zhan
Liang, Ruizheng
Tan, Chaoliang - Abstract:
- Abstract: Organic intercalation of layered nanomaterials is an attractive strategy to fabricate organic/inorganic superlattices for a wide range of promising applications. However, the synthesis of 2D organic/inorganic superlattice nanosheets remains a big challenge. Herein, the preparation of 2D polyaniline/MoO3− x (PANI/MoO3− x ) superlattice nanosheets via intercalation‐induced morphological transformation from MoO3 nanobelts, as efficient Fenton‐like reagents for chemodynamic therapy (CDT), is reported. Micrometer‐long MoO3 nanobelts are co‐intercalated with Na + /H2 O followed by the guest exchange with aniline monomer for in situ polymerization to obtain PANI/MoO3− x nanosheets. Intriguingly, the PANI intercalation can induce the morphological transformation from long MoO3 nanobelts to 2D PANI/MoO3− x nanosheets along with the partial reduction of Mo 6+ to Mo 5+, and generation of rich oxygen vacancies. More importantly, thanks to the PANI intercalation‐induced activation, the PANI/MoO3− x nanosheets exhibit excellent Fenton‐like catalytic activity for generation of hydroxyl radical (·OH) by decomposing H2 O2 compared with the MoO3 nanobelts. It is speculated that the good conductivity of PANI can facilitate electron transport during the Fenton‐like reaction, thereby enhancing the efficiency of CDT. Thus, the polyvinylpyrrolidone‐modified PANI/MoO3− x nanosheets can function as Fenton‐like reagents for highly efficient CDT to kill cancer cells and eradicateAbstract: Organic intercalation of layered nanomaterials is an attractive strategy to fabricate organic/inorganic superlattices for a wide range of promising applications. However, the synthesis of 2D organic/inorganic superlattice nanosheets remains a big challenge. Herein, the preparation of 2D polyaniline/MoO3− x (PANI/MoO3− x ) superlattice nanosheets via intercalation‐induced morphological transformation from MoO3 nanobelts, as efficient Fenton‐like reagents for chemodynamic therapy (CDT), is reported. Micrometer‐long MoO3 nanobelts are co‐intercalated with Na + /H2 O followed by the guest exchange with aniline monomer for in situ polymerization to obtain PANI/MoO3− x nanosheets. Intriguingly, the PANI intercalation can induce the morphological transformation from long MoO3 nanobelts to 2D PANI/MoO3− x nanosheets along with the partial reduction of Mo 6+ to Mo 5+, and generation of rich oxygen vacancies. More importantly, thanks to the PANI intercalation‐induced activation, the PANI/MoO3− x nanosheets exhibit excellent Fenton‐like catalytic activity for generation of hydroxyl radical (·OH) by decomposing H2 O2 compared with the MoO3 nanobelts. It is speculated that the good conductivity of PANI can facilitate electron transport during the Fenton‐like reaction, thereby enhancing the efficiency of CDT. Thus, the polyvinylpyrrolidone‐modified PANI/MoO3− x nanosheets can function as Fenton‐like reagents for highly efficient CDT to kill cancer cells and eradicate tumors. Abstract : The intercalation‐induced morphological transformation is proposed as a simple but powerful strategy to prepare 2D polyaniline/MoO3− x organic/inorganic superlattice nanosheets as high‐efficiency Fenton‐like reagents for chemodynamic cancer therapy, thus achieving cell apoptosis and tumor eradication. … (more)
- Is Part Of:
- Advanced healthcare materials. Volume 12:Issue 11(2023)
- Journal:
- Advanced healthcare materials
- Issue:
- Volume 12:Issue 11(2023)
- Issue Display:
- Volume 12, Issue 11 (2023)
- Year:
- 2023
- Volume:
- 12
- Issue:
- 11
- Issue Sort Value:
- 2023-0012-0011-0000
- Page Start:
- n/a
- Page End:
- n/a
- Publication Date:
- 2023-01-15
- Subjects:
- 2D materials -- chemodynamic therapy -- Fenton‐like reaction -- polyaniline -- superlattice nanosheets
Biomedical materials -- Periodicals
610.28 - Journal URLs:
- http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)2192-2659 ↗
http://onlinelibrary.wiley.com/ ↗ - DOI:
- 10.1002/adhm.202202911 ↗
- Languages:
- English
- ISSNs:
- 2192-2640
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 0696.854650
British Library DSC - BLDSS-3PM
British Library HMNTS - ELD Digital store - Ingest File:
- 27090.xml