Lithium metal batteries (LMBs) that use pure lithium (Li) for their negative electrodes are attracting significant attention ...
Researchers from Chonnam National University, South Korea have demonstrated 1,000 hours of stable, dendrite-free cycling in a ...
(Medical Xpress)—The well-behaved neuron receives signals through its many dendrites to generate spikes on a single axon. The electrical energy of these signals is generally believed to be integrated ...
(Phys.org) —One of the biggest challenges facing rechargeable batteries with lithium (Li) electrodes is the growth of dendrites, which can short-circuit the batteries and cause complete failure.
NeuroOmics technology lets researchers label and capture cell-surface proteins in intact, live tissue—opening opportunities to understand complex cellular interactions and future drug targets.
Dendritic structures that emerge during the growth of thin films are a major obstacle in large-area fabrication, a key step towards commercialization. However, current methods of studying dendrites ...
The researchers, from Profs. Yu-Guo Guo and Li-Jun Wan's groups of the Chinese Academy of Sciences and the University of Chinese Academy of Sciences, have published a paper on the new electrolyte in a ...
Neurons primarily receive inputs through their dendrite arbors. The shape and complexity of the dendrite arbor, which is elaborated during differentiation, enables the neuron to properly cover its ...
Dendrite branching has an important role in normal brain function. Here we report that overexpression of cypin, a protein that has guanine deaminase activity and is expressed in developing processes ...
Lithium metal batteries have higher charge density than conventional lithium ion batteries but are prone to problems of tree-like metal dendrites, which can cause short circuits or explosions. A new ...