Micro/nano functional devices fabricated by additive manufacturing

Z Huang, G Shao, L Li - Progress in Materials Science, 2023 - Elsevier
Micro/nano functional devices featuring deep integration, intelligence, and miniaturization
have attracted considerable attention in frontier areas of research, such as micro/nano …

Laser‐induced forward transfer: fundamentals and applications

P Serra, A Piqué - Advanced Materials Technologies, 2019 - Wiley Online Library
Laser‐induced forward transfer (LIFT) is a digital printing technique that uses a pulsed laser
beam as the driving force to project material from a donor thin film toward the receiving …

Additive manufacturing of metal structures at the micrometer scale

L Hirt, A Reiser, R Spolenak, T Zambelli - Advanced Materials, 2017 - Wiley Online Library
Currently, the focus of additive manufacturing (AM) is shifting from simple prototyping to
actual production. One driving factor of this process is the ability of AM to build geometries …

Laser micro/nano‐structuring pushes forward smart sensing: Opportunities and challenges

Y Zhang, X Wang, K Yan, H Zhu… - Advanced Functional …, 2023 - Wiley Online Library
Post‐pandemic era poses an imperative demand on progressive sensing devices whose
performance largely relies on the morphologies and structures of sensing materials. Despite …

Additive manufacturing: applications and directions in photonics and optoelectronics

A Camposeo, L Persano, M Farsari… - Advanced optical …, 2019 - Wiley Online Library
The combination of materials with targeted optical properties and of complex, 3D
architectures, which can be nowadays obtained by additive manufacturing, opens …

Digital manufacturing-applications past, current, and future trends

PK Paritala, S Manchikatla, PKDV Yarlagadda - Procedia engineering, 2017 - Elsevier
Increasingly the convergence of natural environment (land, water, air and life), built
environment (housing, buildings, transportation and infrastructure) and digital environment …

In-air microfluidics enables rapid fabrication of emulsions, suspensions, and 3D modular (bio) materials

CW Visser, T Kamperman, LP Karbaat, D Lohse… - Science …, 2018 - science.org
Microfluidic chips provide unparalleled control over droplets and jets, which have advanced
all natural sciences. However, microfluidic applications could be vastly expanded by …

A review of laser electrode processing for development and manufacturing of lithium-ion batteries

W Pfleging - Nanophotonics, 2018 - degruyter.com
Laser processes for cutting, annealing, structuring, and printing of battery materials have a
great potential in order to minimize the fabrication costs and to increase the electrochemical …

Laser transfer, printing, and assembly techniques for flexible electronics

J Bian, L Zhou, X Wan, C Zhu, B Yang… - Advanced Electronic …, 2019 - Wiley Online Library
It is challenging to manufacture large‐area, ultrathin, flexible/stretchable electronics on an
industrial scale. Recent ground‐breaking advances in the manufacture of flexible electronics …

Ultrafast laser applications in manufacturing processes: A state-of-the-art review

S Lei, X Zhao, X Yu, A Hu… - Journal of …, 2020 - asmedigitalcollection.asme.org
With the invention of chirped pulse amplification for lasers in the mid-1980s, high power
ultrafast lasers entered into the world as a disruptive tool, with potential impact on a broad …