Self-driving laboratories for chemistry and materials science

G Tom, SP Schmid, SG Baird, Y Cao, K Darvish… - Chemical …, 2024 - ACS Publications
Self-driving laboratories (SDLs) promise an accelerated application of the scientific method.
Through the automation of experimental workflows, along with autonomous experimental …

Fabrication methods for microfluidic devices: An overview

SM Scott, Z Ali - Micromachines, 2021 - mdpi.com
Microfluidic devices offer the potential to automate a wide variety of chemical and biological
operations that are applicable for diagnostic and therapeutic operations with higher …

Additive manufacturing of polymer materials: Progress, promise and challenges

S Saleh Alghamdi, S John, N Roy Choudhury… - Polymers, 2021 - mdpi.com
The use of additive manufacturing (AM) has moved well beyond prototyping and has been
established as a highly versatile manufacturing method with demonstrated potential to …

Additive manufacturing by digital light processing: a review

R Chaudhary, P Fabbri, E Leoni, F Mazzanti… - Progress in Additive …, 2023 - Springer
Additive manufacturing is a layer-by-layer strategy enabling the advanced design and
fabrication of complex 3D objects and structures, overcoming geometry limitations and …

Progress of microfluidic hydrogel‐based scaffolds and organ‐on‐chips for the cartilage tissue engineering

H Tolabi, N Davari, M Khajehmohammadi… - Advanced …, 2023 - Wiley Online Library
Cartilage degeneration is among the fundamental reasons behind disability and pain across
the globe. Numerous approaches have been employed to treat cartilage diseases …

Ultrahigh-Throughput Enzyme Engineering and Discovery in In Vitro Compartments

M Gantz, S Neun, EJ Medcalf, LD van Vliet… - Chemical …, 2023 - ACS Publications
Novel and improved biocatalysts are increasingly sourced from libraries via experimental
screening. The success of such campaigns is crucially dependent on the number of …

Fully 3D-printed soft robots with integrated fluidic circuitry

JD Hubbard, R Acevedo, KM Edwards… - Science …, 2021 - science.org
The emergence of soft robots has presented new challenges associated with controlling the
underlying fluidics of such systems. Here, we introduce a strategy for additively …

Skin-interfaced microfluidic systems with spatially engineered 3D fluidics for sweat capture and analysis

CH Wu, HJH Ma, P Baessler, RK Balanay, TR Ray - Science Advances, 2023 - science.org
Skin-interfaced wearable systems with integrated microfluidic structures and sensing
capabilities offer powerful platforms for monitoring the signals arising from natural …

Spatially and optically tailored 3D printing for highly miniaturized and integrated microfluidics

JL Sanchez Noriega, NA Chartrand, JC Valdoz… - Nature …, 2021 - nature.com
Traditional 3D printing based on Digital Light Processing Stereolithography (DLP-SL) is
unnecessarily limiting as applied to microfluidic device fabrication, especially for high …

3D printing‐enabled nanoparticle alignment: a review of mechanisms and applications

W Xu, S Jambhulkar, D Ravichandran, Y Zhu… - Small, 2021 - Wiley Online Library
Abstract 3D printing (additive manufacturing (AM)) has enormous potential for rapid tooling
and mass production due to its design flexibility and significant reduction of the timeline from …