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Table S5. Calculated charge distribution on selected fragments of gT-ZI-NDI-gT (colored in Figure S31) in neutral, polaron and bipolaron states (columns 2, 3 and 5). Columns 4 and 6 consist of differential charge that is the difference in charge distribution between neutral and polaron states and bipolaron and polaron states respectively. Molecule’s fragment gT-ZI-NDI-gT Neutral gT-ZI-NDI-gT Polaron -1 Charge difference between polaron and neutral state gT-ZI-NDI-gT Bipolaron -2 Charge difference between bipolaron and polaron state -0.21 -1.44 -0.1 +0.16 -0.18 +1.52 -0.15 +2.08 -0.37 -0.21 -2.27 -0.17 -0.46 -1.48 -0.04 -0.21 -0.41 -0.17 (C3H4O2)2 -1.13 (C4H10N)2 +1.51 -1.34 +1.67 +2.45 -2.1 -1.44 -0.23 C=O C4 O4 NDI (without C=O) +2.52 -1.89 -0.98 (gT)2 -0.02 46PDF Image | salt water battery with high stability
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Product and Development Focus for Salgenx
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).We welcome any business and equipment inquiries, as well as licensing our flow battery manufacturing.CONTACT TEL: 608-238-6001 Email: greg@salgenx.com (Standard Web Page)