N/P co-doped MXene hollow microcapsules by surfactants assisted hydrothermal-freeze drying for adjustable permeability

Author:

Xu Zehai,Chen Yancheng,Meng QinORCID,Yang Asan,Zhang Honghua,Zhang GuoliangORCID

Abstract

Abstract The assembly of MXene materials into microcapsules has drawn great attentions due to their unique properties. However, rational design and synthesis of MXene-based microcapsules with specific nanostructures at the molecular scale remains challenging. Herein, we report a strategy to synthesize N/P co-doped MXene hollow flower-like microcapsules with adjustable permeability via dual surfactants assisted hydrothermal-freeze drying method. In contrast to anionic surfactants, cationic surfactants exhibited effective electrostatic interactions with MXene nanosheets during the hydrothermal process. Manipulation of dual surfactants in hydrothermal process realized N and P co-doping of MXene to improve flexibility and promoted the generation of abundant internal cavities in flower-like microcapsules. Based on the unique microstructure, the prepared hollow flower-like microcapsules showed excellent performance, stability and reusability in size-selective release of small organic molecules. Moreover, the release rate can be controlled by turning the oxidation state and type of MXene. The strategy delineates promising prospects for the design of MXene-based microcapsules with specific structures.

Funder

National Natural Science Foundation of China

Research and Development Program of China

Zhejiang Province university basic research expenses

Tongjiang Scholarship from Fujian Quanzhou Government

China Petrochemical Corporation

Zhejiang Provincial Bureau of Science and Technology, China

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering

Reference41 articles.

1. Microfluidic production of biodegradable microcapsules for sustained release of hydrophilic actives;Lee;Small,2017

2. Hydrogel microcapsules: hydrogel microcapsules with a thin oil layer: smart triggered release via diverse stimuli;Jeong;Adv. Funct. Mater.,2021

3. Hydrogel microcapsules with photocatalytic nanoparticles for removal of organic pollutants;Liu;Environ. Sci.: Nano,2020

4. Assembly of MOF microcapsules with size-selective permeability on cell walls;Li;Angew. Chem.,2016

5. Bodipy-containing porous microcapsules for flow heterogeneous photocatalysis;Yang;ACS Appl. Mater. Interfaces,2021

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