Laser-induced breakdown spectroscopy (LIBS) is a valuable tool for the solid-state elemental analysis of battery materials. Key advantages include a high sensitivity for light elements (lithium included), complex emission patterns unique to individual elements through the full periodic table, and record speed analysis reaching 1300 full spectra per second (1.3 kHz acquisition rate). This study investigates deep learning methods as an alternative tool to accurately recognize different compositions of similar battery materials regardless of their physical properties or manufacturer. Such applications are of interest for the real-time digitalization of battery components and identification in automated manufacturing and recycling plant designs
In the field of defect recognition, deep learning technology has the advantages of strong generaliza...
The safety, durability and power density of lithium-ion batteries (LIBs) are currently inadequate to...
Lithium compounds such as lithium hydride (LiH) and anhydrous lithium hydroxide (LiOH) have various ...
As the prices of equipment suitable for laser-induced breakdown spectroscopy (LIBS) have come down, ...
Industries such as lithium-ion battery producers and the nuclear industry community seek to produce ...
Accurate 3D representations of lithium-ion battery electrodes can help in understanding and ultimate...
Quantitative chemical mapping of battery electrodes is a rather new post-mortem analytics method for...
Electric cars are an integral part of our clean energy future – every time one replaces a gas-powere...
Lithium-ion batteries (LIBs) are vital energy-storage devices in modern society. However, the perfor...
In this study, eight different painted stainless steel 304L specimens were laser-cleaned using diffe...
In the recycling industry, the use of deep spectral convolutional networks for the purpose of materi...
In geological research, the identification and classification of rock lithology plays an important r...
International audienceLithium is an element of interest in various fields such as geochemistry, arch...
Diagnosing lithium-ion battery degradation is challenging due to the complex, nonlinear, and path-de...
Battery is one of the most important energy supplement source for our society. Especially, lithium-i...
In the field of defect recognition, deep learning technology has the advantages of strong generaliza...
The safety, durability and power density of lithium-ion batteries (LIBs) are currently inadequate to...
Lithium compounds such as lithium hydride (LiH) and anhydrous lithium hydroxide (LiOH) have various ...
As the prices of equipment suitable for laser-induced breakdown spectroscopy (LIBS) have come down, ...
Industries such as lithium-ion battery producers and the nuclear industry community seek to produce ...
Accurate 3D representations of lithium-ion battery electrodes can help in understanding and ultimate...
Quantitative chemical mapping of battery electrodes is a rather new post-mortem analytics method for...
Electric cars are an integral part of our clean energy future – every time one replaces a gas-powere...
Lithium-ion batteries (LIBs) are vital energy-storage devices in modern society. However, the perfor...
In this study, eight different painted stainless steel 304L specimens were laser-cleaned using diffe...
In the recycling industry, the use of deep spectral convolutional networks for the purpose of materi...
In geological research, the identification and classification of rock lithology plays an important r...
International audienceLithium is an element of interest in various fields such as geochemistry, arch...
Diagnosing lithium-ion battery degradation is challenging due to the complex, nonlinear, and path-de...
Battery is one of the most important energy supplement source for our society. Especially, lithium-i...
In the field of defect recognition, deep learning technology has the advantages of strong generaliza...
The safety, durability and power density of lithium-ion batteries (LIBs) are currently inadequate to...
Lithium compounds such as lithium hydride (LiH) and anhydrous lithium hydroxide (LiOH) have various ...