Recent advances in meniscus-on-demand three-dimensional micro-and nano-printing for electronics and photonics  被引量:2

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作  者:Shiqi Hu Xiao Huan Yu Liu Sixi Cao Zhuoran Wang Ji Tae Kim 

机构地区:[1]Department of Mechanical Engineering,The University of Hong Kong,Pokfulam Road,Hong Kong Special Administrative Region of China,People’s Republic of China

出  处:《International Journal of Extreme Manufacturing》2023年第3期302-317,共16页极端制造(英文)

基  金:supported by the General Research Fund(17200222,17208919,17204020)of the Research Grants Council of Hong Kong;the National Natural Science Foundation of China/Research Grants Council Joint Research Scheme(N_HKU743/22);the Seed Fund for Basic Research(201910159047,202111159097)of the University Research Committee(URC),The University of Hong Kong。

摘  要:The continual demand for modern optoelectronics with a high integration degree and customized functions has increased requirements for nanofabrication methods with high resolution,freeform,and mask-free.Meniscus-on-demand three-dimensional(3D)printing is a high-resolution additive manufacturing technique that exploits the ink meniscus formed on a printer nozzle and is suitable for the fabrication of micro/nanoscale 3D architectures.This method can be used for solution-processed 3D patterning of materials at a resolution of up to100 nm,which provides an excellent platform for fundamental scientific studies and various practical applications.This review presents recent advances in meniscus-on-demand 3D printing,together with historical perspectives and theoretical background on meniscus formation and stability.Moreover,this review highlights the capabilities of meniscus-on-demand 3D printing in terms of printable materials and potential areas of application,such as electronics and photonics.

关 键 词:3D printing ink meniscus functional materials ELECTRONICS PHOTONICS 

分 类 号:TB3[一般工业技术—材料科学与工程]

 

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