Laser-Energiespeicherausrüstung
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Why is laser technology important for energy storage devices?
Multiple effects: Laser methods allow more than one operation to be performed during a single processing step. Thus synthesis, deposition, patterning, reduction, doping, etc. are some of the technologically relevant processes that can be induced to take place simultaneously, for faster and cheaper fabrication of energy storage devices.
How can laser structure improve battery life?
Laser structuring can turn electrodes into superwicking. This has a positive impact regarding an increased battery lifetime and a reliable battery production. Finally, laser processes can be up-scaled in order to transfer the 3D battery concept to high-energy and high-power lithium-ion cells.
What is the scope of a laser energy investigation?
The scope of the energy investigation can be set by defining states as either Operational or Physical; Physical states being those driven by the laser process itself, and Operational states driven by the way the organisation operates.
What is a burst laser system?
The burst laser system is normally designed using a master oscillator power amplifier (MOPA) configuration, which comprises a pulse slicer, a power amplifier chain, and a wavelength converter . State-of-the-art burst lasers can deliver UV to NIR wavelength pulses with a repetition rate of up to 5 MHz and energy of up to 2 J/pulse.
How can laser processing reduce energy consumption?
It is assumed that due to laser processing the warm aging process of several days (72–96 h) can be avoided, which will lead to a reduction of energy and power consumption. Additional costs for vacuum, storage room, and logistic can be avoided.
What is laser based graphene synthesis and modification?
Laser-based methodologies for synthesis, reduction, modification and assembly of graphene-based materials are highly demanded for energy-related electrodes and devices for portable electronics. Laser technologies for graphene synthesis and modification exhibit several advantages when compared to alternative methods.