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Enhanced High Voltage Performance of Chlorine Bromine

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Enhanced High Voltage Performance of Chlorine Bromine ( enhanced-high-voltage-performance-chlorine-bromine )

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Crystals 2018, 8, 425 7 of 12 Figure 5. Rate capabilities (a) and cycling performance (b) of the synthesized LiNi1/3Co1/3 Mn1/3O2 compounds. After cycling for 100 cycles, the cells were disassembled and washed with dimethylcarbonate in the argon-filled glove box to completely remove the residual lithium salts. The SEM images of the synthesized LiNi1/3Co1/3Mn1/3O2 electrodes are shown in Figure 6. It can be seen that the surface morphology of the pristine LiNi1/3Co1/3Mn1/3O2 electrode changes a lot. The obvious cracks appear between the LiNi1/3Co1/3Mn1/3O2 composites and acetylene black particles, which result in inferior contact between the electroactive LiNi1/3Co1/3Mn1/3O2 particles during the charge–discharge process. As to the Cl and Br co-doped LNCM electrode, the surface morphology almost doesn’t change, and the acetylene black still covers the LiNi1/3Co1/3Mn1/3O2 particles completely, which may keep the effective conductive behavior during cycling. It may be the contribution of the space between primary particles, as shown in Figure 1, that stably adhere the acetylene black onto the surface of the LiNi1/3Co1/3Mn1/3O2 particles. Chemical composition (wt%) of the electrodes determined by energy dispersive spectroscopy (EDS) with the particles in Figure 6b,d,f,g are listed in Table 1. The molar ratio of Ni:Co:Mn has a small variation after being cycled. It indicates that Mn dissolution is depressed by halogen doping, which would keep the structure stability.

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Product and Development Focus for Infinity Turbine

ORC Waste Heat Turbine and ORC System Build Plans: All turbine plans are $10,000 each. This allows you to build a system and then consider licensing for production after you have completed and tested a unit.

Redox Flow Battery Technology: With the advent of the new USA tax credits for producing and selling batteries ($35/kW) we are focussing on a simple flow battery using shipping containers as the modular electrolyte storage units with tax credits up to $140,000 per system.

Our main focus is on the salt battery. This battery can be used for both thermal and electrical storage applications.

We call it the Cogeneration Battery or Cogen Battery.

One project is converting salt (brine) based water conditioners to simultaneously produce power.

In addition, there are many opportunities to extract Lithium from brine (salt lakes, groundwater, and producer water).

Salt water or brine are huge sources for lithium. Most of the worlds lithium is acquired from a brine source. It's even in seawater in a low concentration. Brine is also a byproduct of huge powerplants, which can now use that as an electrolyte and a huge flow battery (which allows storage at the source).

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