Inkjet printing: a viable technology for biosensor fabrication

A Hussain, N Abbas, A Ali - Chemosensors, 2022 - mdpi.com
Printing technology promises a viable solution for the low-cost, rapid, flexible, and mass
fabrication of biosensors. Among the vast number of printing techniques, screen printing and …

Printed electronics technologies for additive manufacturing of hybrid electronic sensor systems

J Zikulnig, S Chang, J Bito, L Rauter… - Advanced Sensor …, 2023 - Wiley Online Library
Requirements for the miniaturization of electronics are constantly increasing as more and
more functions are aimed to be integrated into a single device. At the same time, there are …

Printed memristors: An overview of ink, materials, deposition techniques, and applications

M Franco, A Kiazadeh, R Martins… - Advanced Electronic …, 2024 - Wiley Online Library
Industry 4.0 is accelerating the growth of connected devices, resulting in an exponential
increase in generated data. The current semiconductor technology is facing challenges in …

Focused review on print‐patterned contact electrodes for metal‐oxide thin‐film transistors

F Liu, L Gillan, J Leppäniemi… - Advanced Materials …, 2023 - Wiley Online Library
Metal‐oxide‐semiconductor‐based thin‐film transistors (TFTs) are exploited in display
backplanes and X‐ray detectors fabricated by vacuum deposition and lithographic …

[HTML][HTML] How to print high-mobility metal oxide transistors—Recent advances in ink design, processing, and device engineering

WJ Scheideler, V Subramanian - Applied Physics Letters, 2022 - pubs.aip.org
High-throughput printing-based fabrication has emerged as a key enabler of flexible
electronics given its unique capability for low-cost integration of circuits based on printed …

Preparation of brittle ITO microstructures using Laser-Induced forward transfer technology

C Sun, Z Wang, W Cao, G Gao, L Yang, J Han… - Chemical Engineering …, 2024 - Elsevier
The performance of transparent conductive microstructures plays a significant role in
determining the device efficiency. The fabrication of ITO microstructures on the flexible …

Integration of laser-induction and electroless copper plating for flexible electronics

Q Zhuang, Z Chen, Y Huang, W **ao, X Liu… - Surfaces and …, 2025 - Elsevier
Integration of flexible conductive electrodes and components is a critical technology for
advancing smart wearable electronics. However, the intricate fabrication process …

Ag Nanoparticle Ink for High‐Resolution Printed Electrodes and Organic Thin‐Film Transistors Using Reverse‐Offset Printing

Y Suzuki, D Kumaki, T Kikkawa… - Advanced Electronic …, 2024 - Wiley Online Library
Reverse‐offset printing is capable of ultrafine printing at the submicron scale and may be
applied to the fabrication process of electronic devices. In this study, the composition of Ag …

[HTML][HTML] Stripe Noise Removal in Blazed Grating Generation for Electrically Tunable Beam Deflector

W Kim, T Kim, J Do, H Ma, H Yoon, K Won - Materials, 2025 - mdpi.com
In this paper, we demonstrate a blazed phase grating to achieve tunable beam steering and
propose a novel algorithm to reduce the stripe noise in wrapped phase. To control the …