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Microfluidics for electrochemical energy conversion
Electrochemical energy conversion is an important supplement for storage and on-demand
use of renewable energy. In this regard, microfluidics offers prospects to raise the efficiency …
use of renewable energy. In this regard, microfluidics offers prospects to raise the efficiency …
based flexible devices for energy harvesting, conversion and storage applications: A review
Paper, in addition to its frequent usage in writing, packaging, printing, etc., has gained
comprehensive utility as a flexible and conductive base in sensors, solar energy harvesting …
comprehensive utility as a flexible and conductive base in sensors, solar energy harvesting …
Degradation behavior, biocompatibility, electrochemical performance, and circularity potential of transient batteries
Transient technology seeks the development of materials, devices, or systems that undergo
controlled degradation processes after a stable operation period, leaving behind harmless …
controlled degradation processes after a stable operation period, leaving behind harmless …
Stretchable and biodegradable plant-based redox-diffusion batteries
The redox-diffusion (RD) battery concept introduces an environmentally friendly solution for
stretchable batteries in autonomous wearable electronics. By utilising plant-based redox …
stretchable batteries in autonomous wearable electronics. By utilising plant-based redox …
Transpiration-mimicking wood-based microfluidic aluminum-air batteries: Green power sources for miniaturized applications
Capillary microfluidics on porous substrates emerges as an innovative platform for
constructing miniaturized electronics. However, maintaining a steady flow within …
constructing miniaturized electronics. However, maintaining a steady flow within …
Conductive carbon fabric generation from single-step upcycling of textile waste
Environmental impacts from the fashion industry are at the top of global pollution. Fiber
production, fabric preparation and distribution, and disposal of textiles combined with the …
production, fabric preparation and distribution, and disposal of textiles combined with the …
Computational modelling of paper-based capillary-driven microfluidic flow cells
A general mathematical model is developed for electrochemical energy conversion in paper-
based, capillary-driven, microfluidic flow cells. A two-dimensional version of the model is …
based, capillary-driven, microfluidic flow cells. A two-dimensional version of the model is …
Advances in microfluidic technologies for energy storage and release systems
SKS Cheng, T Li, SS Meena, Q Cao, B Li… - Advanced Energy …, 2022 - Wiley Online Library
While the majority of the technologies developed for energy storage are macrosized, the
reactions involved in energy storage, such as diffusion, ionic transport, and surface‐based …
reactions involved in energy storage, such as diffusion, ionic transport, and surface‐based …
Green Electrochemical Point‐of‐Care Devices: Transient Materials and Sustainable Fabrication Methods
The spread of point‐of‐care (PoC) diagnostic tests using electrochemical sensors poses a
significant environmental challenge, especially in limited‐resource settings due to the lack of …
significant environmental challenge, especially in limited‐resource settings due to the lack of …
Yield-stress effects on spontaneous imbibition in paper-based kits
A Gharagozlou, M Pourjafar-Chelikdani… - Journal of Non …, 2024 - Elsevier
The classic Richards equation is a good model for predicting imbibition of viscous fluids in
porous materials such as dry soils or filter papers. It cannot, in principle, be used for …
porous materials such as dry soils or filter papers. It cannot, in principle, be used for …