Soft grippers for automatic crop harvesting: A review

E Navas, R Fernández, D Sepúlveda, M Armada… - Sensors, 2021 - mdpi.com
Agriculture 4.0 is transforming farming livelihoods thanks to the development and adoption
of technologies such as artificial intelligence, the Internet of Things and robotics, traditionally …

Encapsulation and stability testing of perovskite solar cells for real life applications

Y Wang, I Ahmad, T Leung, J Lin, W Chen, F Liu… - ACS Materials …, 2022 - ACS Publications
With the progress in the development of perovskite solar cells, increased efforts have been
devoted to enhancing their stability. With more devices being able to survive harsher stability …

[HTML][HTML] Fabrication of a hydroxyapatite-PDMS microfluidic chip for bone-related cell culture and drug screening

Q Tang, X Li, C Lai, L Li, H Wu, Y Wang, X Shi - Bioactive Materials, 2021 - Elsevier
Bone is an important part of the human body structure and plays a vital role in human health.
A microfluidic chip that can simulate the structure and function of bone will provide a platform …

Reduced ice adhesion using amphiphilic poly (ionic liquid)-based surfaces

Z Mossayebi, VF Jafari, PA Gurr… - … Applied Materials & …, 2023 - ACS Publications
Ice build-up on solid surfaces causes significant economic losses for a range of industries.
One solution to this problem is the development of coatings with low ice adhesion strength …

Rapid prototyping of thermoplastic microfluidic devices via SLA 3D printing

H Khoo, WS Allen, N Arroyo-Currás, SC Hur - Scientific reports, 2024 - nature.com
Microfluidic devices have immense potential for widespread community use, but a current
bottleneck is the transition from research prototyping into mass production because the gold …

On the acoustically induced fluid flow in particle separation systems employing standing surface acoustic waves–Part I

S Sachs, M Baloochi, C Cierpka, J König - Lab on a Chip, 2022 - pubs.rsc.org
By integrating surface acoustic waves (SAW) into microfluidic devices, microparticle systems
can be fractionated precisely in flexible and easily scalable Lab-on-a-Chip platforms. The …

Recent developments in hot embossing–a review

SS Deshmukh, A Goswami - Materials and Manufacturing …, 2021 - Taylor & Francis
Generation of micron-scale structures on a substrate is an emerging area in the
manufacturing sector owing to its application in different fields such as micro-lenses, micro …

Hydrogel Encapsulation Facilitates Rapid‐Cooling Cryopreservation of Stem Cell‐Laden Core–Shell Microcapsules as Cell–Biomaterial Constructs

G Zhao, X Liu, K Zhu, X He - Advanced healthcare materials, 2017 - Wiley Online Library
Core–shell structured stem cell microencapsulation in hydrogel has wide applications in
tissue engineering, regenerative medicine, and cell‐based therapies because it offers an …

Structural Insights into Conjugated Polymers for Stretchable Organic Transistors

S Chung, SH Kim, E Ok, BJ Kim, B Kang… - Chemistry of …, 2023 - ACS Publications
Stretchable electronics constitute a promising and innovative field, particularly in the
development of fully stretchable transistors by using conjugated polymers (CPs). CPs have a …

[PDF][PDF] Actuation for flexible and stretchable microdevices

U Roshan, A Mudugamuwa, H Cha, S Hettiarachchi… - Lab Chip, 2024 - scholar.archive.org
Over the past decades, device miniaturisation, flexibility, and stretchability have received
increasing attention to enhance portability and wearability, overcome dimensional …