Microelectromechanical systems (MEMS) for biomedical applications

C Chircov, AM Grumezescu - Micromachines, 2022 - mdpi.com
The significant advancements within the electronics miniaturization field have shifted the
scientific interest towards a new class of precision devices, namely microelectromechanical …

Food liposomes: Structures, components, preparations, and applications

C Chai, J Park - Food Chemistry, 2024 - Elsevier
This review explores liposomes, focusing on their structure, components, the characteristics
influencing their stability and applicability in foods, and preparation methods. The role of …

Rationally engineered nanosensors: A novel strategy for the detection of heavy metal ions in the environment

A Numan, AAS Gill, S Rafique, M Guduri, Y Zhan… - Journal of Hazardous …, 2021 - Elsevier
Heavy metal ions (HMIs) have been mainly originated from natural and anthropogenic
agents. It has become one of biggest societal issues due to their recognised accumulative …

Micro 3D printing of a functional MEMS accelerometer

S Pagliano, DE Marschner, D Maillard… - Microsystems & …, 2022 - nature.com
Microelectromechanical system (MEMS) devices, such as accelerometers, are widely used
across industries, including the automotive, consumer electronics, and medical industries …

based microfluidic devices: Fabrication, detection, and significant applications in various fields

S Das, Gagandeep, R Bhatia - Reviews in Analytical Chemistry, 2022 - degruyter.com
Paper is the most abundant and inexpensive polymeric structure of cellulose available.
Paper has micro-porous capillary-like networks which are responsible for flow of solvents …

Microfluidics for peptidomics, proteomics, and cell analysis

R Vitorino, S Guedes, JP da Costa, V Kašička - Nanomaterials, 2021 - mdpi.com
Microfluidics is the advanced microtechnology of fluid manipulation in channels with at least
one dimension in the range of 1–100 microns. Microfluidic technology offers a growing …

Nickel oxide nanoparticle synthesis and photocatalytic applications: evolution from conventional methods to novel microfluidic approaches

J Mou, Y Ren, J Wang, C Wang, Y Zou, K Lou… - Microfluidics and …, 2022 - Springer
Nickel oxide (NiO) nanoparticles are essential to develo** a wide range of important
industrial products, examples of which include electrodes, catalysts, and sensors, leading to …

Additive manufacturing of functional devices for environmental applications: A review

AP Fagundes, JO de Brito Lira, N Padoin… - Journal of …, 2022 - Elsevier
Additive manufacturing (3D printing) technologies are growing rapidly due to the unique
advantages they present, such as rapid prototy**, multi-purpose device manufacturing …

Multiplexed and continuous microfluidic sensors using dynamic complex droplets

B Barua, TJ Durkin, IM Beeley, A Gadh, S Savagatrup - Soft Matter, 2023 - pubs.rsc.org
Emissive complex droplets with reconfigurable morphology and dynamic optical properties
offer exciting opportunities as chemical sensors due to their stimuli-responsive …

Colorimetric detection of extracellular hydrogen peroxide using an integrated microfluidic device

E Dervisevic, NH Voelcker, G Risbridger… - Analytical …, 2022 - ACS Publications
It is well known that hydrogen peroxide (H2O2) is a signaling molecule essential for vital
physiological reactions in mammalian cells, such as cell survival, intercellular …