Progress in the preparation and ink-jet printing of 2D material-based nano-inks

被引:0
作者
Yuxin, Zhang [1 ]
Xiaodong, Huang [1 ]
Di, Chen [1 ]
Hangjun, Deng [2 ]
Wenjun, Wang [1 ]
Pingwei, Liu [1 ]
机构
[1] State Key Laboratory of Chemical Engineering, Zhejiang University, Zhejiang, Hangzhou
[2] Zhejiang NHU Special Materials Company Limited, Zhejiang, Shaoxing
来源
Huagong Jinzhan/Chemical Industry and Engineering Progress | 2024年 / 43卷 / 06期
关键词
electronic device; ink-jet printing; liquid-phase exfoliation; nano-inks; two-dimensional material;
D O I
10.16085/j.issn.1000-6613.2023-0833
中图分类号
学科分类号
摘要
Two-dimensional materials represented by graphene possess excellent comprehensive performance, which can be used to manufacture functional nano-inks and obtain optoelectronic functional devices by ink-jet printing. There are broad application prospects in the fields of energy, environment, life and health. This paper systematically summarized the properties of several typical two-dimensional materials, the preparation of nano-inks and the application of ink-jet printing, focusing on the regulation of liquid phase exfoliation and ink-jet printing processes. Different exfoliation methods and principles were summarized and compared, as well as the related theories of ink-jet printing, such as the coffee ring effect and Marangoni effect, were reviewed. Through the precise regulation of the two-dimensional material exfoliation process and its nano-inks printing process, it was expected to form an advanced micro-nano manufacturing technology based on ink-jet printing, realize the low-cost processing of different functional micro-nano electronic components and devices, and promote the development of biosensing, flexible electronics and other fields. © 2024 Chemical Industry Press Co., Ltd.. All rights reserved.
引用
收藏
页码:3145 / 3158
页数:13
相关论文
共 133 条
[1]  
LIU Zhihao, PAN Yanqiao, FENG Yandong, Et al., Flexible strain sensor based on electrohydrodynamic jet printing with directly writing of nano-silver paste and its application, Micronanoelectronic Technology, 60, 3, pp. 406-412, (2023)
[2]  
SHARMA Sonia, PANDE Sumukh S, SWAMINATHAN P., Top-down synthesis of zinc oxide based inks for inkjet printing, RSC Advances, 7, 63, pp. 39411-39419, (2017)
[3]  
ROSEN Yitzchak, MARRACH Roy, GUTKIN Vitaly, Et al., Thin copper flakes for conductive inks prepared by decomposition of copper formate and ultrafine wet milling, Advanced Materials Technologies, 4, 1, (2019)
[4]  
KAULING Alan P, SEEFELDT Andressa T, PISONI Diego P, Et al., The worldwide graphene flake production, Advanced Materials, 30, 44, (2018)
[5]  
BOOTT Charlotte E, ALI Nazemi, IAN Manners, Synthetic covalent and non-covalent 2D materials, Angewandte Chemie International Edition, 54, 47, pp. 13876-13894, (2015)
[6]  
SERVALLI Marco, SCHLUTER A Dieter, Synthetic two-dimensional polymers, Annual Review of Materials Research, 47, pp. 361-389, (2017)
[7]  
WANG Song, ZHANG Ziyang, ZHANG Haomiao, Et al., Reversible polycondensation-termination growth of covalent-organic-framework spheres, fibers, and films, Matter, 1, 6, pp. 1592-1605, (2019)
[8]  
TAN Chaoliang, CAO Xiehong, WU Xuejun, Et al., Recent advances in ultrathin two-dimensional nanomaterials, Chemical Reviews, 117, 9, pp. 6225-6331, (2017)
[9]  
BEGLEY M R, GIANOLA D S, RAY T R., Bridging functional nanocomposites to robust macroscale devices, Science, 364, 6447, (2019)
[10]  
TORRISI Felice, COLEMAN Jonathan N., Electrifying inks with 2D materials, Nature Nanotechnology, 9, 10, pp. 738-739, (2014)