Exploiting a femtoliter liquid meniscus formed on a nanopipet is a powerful approach to spatially control mass transfer or chemical reaction at the nanoscale. However, the insufficient reliability of techniques for the meniscus formation still restricts its practical use. We report on a noncontact, programmable method to produce a femtoliter liquid meniscus that is utilized for parallel three-dimensional (3D) nanoprinting. The method based on electrohydrodynamic dispensing enables one to create an ink meniscus at a pipet–substrate gap without physical contact and positional feedback. By guiding the meniscus under rapid evaporation of solvent in air, we successfully fabricate freestanding polymer 3D nanostructures. After a quantitative chara...
Three-dimensional (3D) printing(1-9) has revolutionized manufacturing processes for electronics(10-1...
Realizing the dominance of surface tensional forces helps us understand many phenomena in nature and...
Micro- and nanopatterning of cost-effective addressable metallic nanostructures has been a long ende...
Exploiting a femtoliter liquid meniscus formed on a nanopipet is a powerful approach to spatially co...
The continual demand for modern optoelectronics with a high integration degree and customized functi...
Although three-dimensional (3D) printing has recently emerged as a technology to potentially bring a...
Although three-dimensional (3D) printing has recently emerged as a technology to potentially bring a...
Moving printed electronics to three dimensions essentially requires advanced additive manufacturing ...
Evaporative self-assembly of semiconducting polymers is a low-cost route to fabricating micrometer a...
Moving printed electronics to three dimensions essentially requires advanced additive manufacturing ...
Nanotechnology, with its broad impact on societally relevant applications, relies heavily on the ava...
DoctorOrganic electronics increasingly impacts our everyday life with a variety of smart electronic ...
Accurate and versatile three-dimensional writing of individually controlled conducting polymer nanod...
The functionalities of peptide microstructures and nanostructures can be enhanced by controlling the...
Additive manufacturing (AM) has transformed the way we can design and produce components at the macr...
Three-dimensional (3D) printing(1-9) has revolutionized manufacturing processes for electronics(10-1...
Realizing the dominance of surface tensional forces helps us understand many phenomena in nature and...
Micro- and nanopatterning of cost-effective addressable metallic nanostructures has been a long ende...
Exploiting a femtoliter liquid meniscus formed on a nanopipet is a powerful approach to spatially co...
The continual demand for modern optoelectronics with a high integration degree and customized functi...
Although three-dimensional (3D) printing has recently emerged as a technology to potentially bring a...
Although three-dimensional (3D) printing has recently emerged as a technology to potentially bring a...
Moving printed electronics to three dimensions essentially requires advanced additive manufacturing ...
Evaporative self-assembly of semiconducting polymers is a low-cost route to fabricating micrometer a...
Moving printed electronics to three dimensions essentially requires advanced additive manufacturing ...
Nanotechnology, with its broad impact on societally relevant applications, relies heavily on the ava...
DoctorOrganic electronics increasingly impacts our everyday life with a variety of smart electronic ...
Accurate and versatile three-dimensional writing of individually controlled conducting polymer nanod...
The functionalities of peptide microstructures and nanostructures can be enhanced by controlling the...
Additive manufacturing (AM) has transformed the way we can design and produce components at the macr...
Three-dimensional (3D) printing(1-9) has revolutionized manufacturing processes for electronics(10-1...
Realizing the dominance of surface tensional forces helps us understand many phenomena in nature and...
Micro- and nanopatterning of cost-effective addressable metallic nanostructures has been a long ende...