Results 131 to 140 of about 15,672 (284)
ELECTROCHEMICAL DEVICES BASED IN MIXING ENTROPIC BATTERY FOR BLUE ENERGY RECOVERY. A REVIEW
Blue energy, an intriguing alternative, takes advantage of the chemical energy that is spontaneously released when two water solutions with different salt concentrations coincide, such as at the mouths of rivers that flow into ocean basins.
Felipe M. Galleguillos-Madrid +2 more
doaj +1 more source
Salinity Gradient Power: An Unique Renewable Energy Source
The growing global demand for clean and sustainable energy has led to the exploration of unconventional renewable energy sources. One such emerging technology is salinity gradient power, also known as blue energy, which harnesses the chemical potential difference between freshwater and seawater. This paper discusses the principles, methods, efficiency,
Dr. Rishu Agarwal, Kavita Singh
openaire +2 more sources
Solid‐state nanopores are used to interrogate dendrimer‐peptide conjugates with systematically varied peptide loading. Single‐particle ionic current signatures reveal how ligand density modulates deformability, transport pathways, and electromechanical coupling during translocation.
Chaoming Gu +7 more
wiley +1 more source
A mask‐free and cost‐effective UV‐pico‐second laser‐based microfabrication method is proposed to fabricate large‐area biodegradable microelectrode arrays and pressure sensors. These devices demonstrate low impedance, good conformability, excellent biocompatibility, and rapid degradation, providing a new route for next‐generation transient electronics ...
Bhavani Prasad Yalagala +5 more
wiley +1 more source
Salinity Gradient Energy (SGE) is the energy available from the difference in the salt concentration between two solutions such as seawater and river water.
Abdelkader, Bassel
core +1 more source
Zirconium‐Based Amphoteric Metal–Organic Framework Membrane for Blue Energy Harvesting
Salination of solutions of salinity gradient releases large‐scale clean and renewable energy, which can be directly and efficiently transformed into electrical energy using ion‐selective nanofluidic channel membranes.
Rockson Kwesi Tonnah +8 more
doaj +1 more source
We introduce an additively manufactured bioreactor with a perfusion flow system and integrated temperature and pH sensors for skeletal muscle tissue biofabrication. The bioreactor's performance was evaluated by assessing the viability, spreading of the myoblast cells in a printed scaffold, and contraction of the isolated murine musculi interossei ...
Lys Sprenger +9 more
wiley +1 more source
Flexible sweat sensor patch integrating graphene‑interfaced gold microelectrodes functionalized with bio‑receptors and ion‑selective membrane, coupled with a capillary‑driven microfluidic layer and portable potentiostat electronics for multiplexed monitoring of inflammatory, metabolic, and electrolyte biomarkers in microliter sweat volumes.
Roomia Memon +4 more
wiley +1 more source
: Salinity gradient energy, often referred to as the Gibbs free energy difference between saltwater and freshwater, is recognized as "blue energy" due to its inherent cleanliness, renewability, and continuous availability.
Neek-Amal, Mehdi +2 more
core
Enhancing Small Molecule Sensing With Aptameric Functionalized Nano Devices
Unveiling an ultra‐sensitive, non‐invasive neurotransmitter sensor. For the first time, a nanoscale sensor for detecting an important neurotransmitter was demonstrated using micro‐electromechanical systems (MEMS) technology. Our approach utilized field‐effect transistor (FET)‐based readout to enable pico‐molar detection of biomarkers in sweat.
Thi Thanh Ha Nguyen +11 more
wiley +1 more source

