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A few months after my initial investment, I set up a few alerts...

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    A few months after my initial investment, I set up a few alerts on where R&D dollars were being spent on technologies which used TiO2 – Titanium Dioxide & V2O5 – Vanadium Pentoxide.
    At the time I made the TNG plunge, I knew TiO2 was being researched as a 3rd Gen Solar PV magic ingredient where the solar cell could be printed but with low efficiencies & also knew a little about Vanadium Flow Redox Batteries.
    In the past couple of weeks I’ve gone through all the R&D alerts from the past year & have to admit I’m simply astounded at the applications using Vanadium & Titanium. Hopefully there is something of interest in this thread as if even 1/20th of these applications prove commercial viability, the demand for TiO2 & V2O5 could be subject to a significant demand increase that in hindsight, not too many saw coming.

    Starting with the obvious - I'll post more of these as the day progresses & time permits.
    Vanadium Redox Flow Batteries
    Column 1 Column 2
    0 Optimal Sizing of Vanadium Redox Flow Battery Systems for Residential Applications Based on Battery Electrochemical Characteristics
    http://bit.ly/2eL0OoI
    1 Development of Integrally Molded Bipolar Plates for All-Vanadium Redox Flow Batteries
    http://bit.ly/1rOveMm
    2 ZrO2 Nanoparticles Modified Graphite Felt: Bifunctional Effects on Vanadium Flow Batteries
    http://bit.ly/1VmVdXt
    3 Potentiostats/galvanostats – indispensable in redox flow battery R&D
    http://bit.ly/2eYIYy3
    4 Joint project "OptiCharge" - Self-sufficient charging station for electric vehicles
    http://bit.ly/2eB8RGT
    5 Uncle Sam's boffins stumble upon battery storage holy grail
    http://bit.ly/2f5ZhMS
    6 Beyond lithium: lesser-known vanadium batteries offer alternative path to energy storage revolution
    http://bit.ly/2eL4G97
    7 VANADIUM: THE METAL THAT STORES ENERGY
    http://bit.ly/1ZfFmcm
    8 Good video of VRB
    http://bit.ly/1Uf6YvR
    9 Sulfonated polyimide/chitosan composite membranes for a vanadium redox flow battery:
    http://go.nature.com/2eYY86L
    10 Insights into the Impact of the Nafion Membrane Pretreatment Process on Vanadium Flow Battery Performance
    http://bit.ly/2eYYt9q
    11 Characterization of Vanadium Species in Mixed Chloride-Sulfate Solutions
    http://bit.ly/2ftEgIR
    12 Development of Integrally Molded Bipolar Plates for All-Vanadium Redox Flow Batteries
    http://bit.ly/2eB7iZw
    13 A high-performance carbon nanoparticle-decorated graphite felt electrode for vanadium redox flow batteries
    http://bit.ly/2fpW4sl
    14 A transient model of vanadium redox flow battery
    http://bit.ly/2eZ0Qci
    15 Improved electrochemical performance for vanadium flow battery by optimizing the concentration of the electrolyte
    http://bit.ly/1qRqe8U
    16 Pint of Science lectures explore new elements, comets, solar energy batteries
    http://bit.ly/2ftEuzH
    17 Tin/vanadium redox electrolyte for battery-like energy storage capacity combined with supercapacitor-like power handling
    http://rsc.li/1PTWbtb
    18 Vanadium Electrolyte Studies for the Vanadium Redox Battery-A Review
    http://bit.ly/2eqPtcj
    19 Ultra-High Proton/Vanadium Selectivity for Hydrophobic Polymer Membranes with Intrinsic Nanopores for Redox Flow Battery
    http://bit.ly/2e4pY3F
    20 Vanadium Electrolyte Studies for the Vanadium Redox Battery—A Review
    http://bit.ly/2e4rVgr
    21 High-performance porous uncharged membranes for vanadium flow battery applications created by tuning cohesive and swelling forces
    http://rsc.li/2e4qD50
    22 Degradation of all-vanadium redox flow batteries (VRFB)
    http://bit.ly/2e4odn9
    23 Graphitic C3N4 as a powerful catalyst for all-vanadium redox flow batteries
    http://rsc.li/2e4vcfH
    24 What are Vanadium Redox Batteries?
    http://bit.ly/2fq0OhB
    25 A hydrophobic membrane with nanopores for highly efficient energy storage
    http://bit.ly/2e4BkVx
    26 Polypyrrole modified porous poly(ether sulfone) membranes with high performance for vanadium flow batteries
    http://rsc.li/2e4v53V
    27 Researchers Working on Hydrophobic Membrane Aim for Efficient Batteries
    http://bit.ly/2e4vBPp
    28 Highly proton conductive, dense polybenzimidazole membranes with low permeability to vanadium and enhanced H2SO4absorption capability for use in vanadium redox flow batteries
    http://rsc.li/2e4Bhsv
    29 Electrolyte Pumping Optimization in Already Manufactured Vanadium Redox Battery Based on Experimentally Determined Electrical and Hydrodynamic Losses
    http://bit.ly/2eZhFnt
    30 Chemical Stability of Graphite-Polypropylene Bipolar Plates for the Vanadium Redox Flow Battery at Resting State
    http://bit.ly/2eZfu3c
    31 Durable and Efficient PTFE Sandwiched SPEEK Membrane for Vanadium Flow Batteries
    http://bit.ly/2eZewEd
    32 RedT to develop first vanadium hybrid storage system
    http://bit.ly/2eZhusm
    33 Integral Announces Completion of Production of Bi-Polar Plates
    https://yhoo.it/2eZkLI8
    34 Highly stable pyridinium-functionalized cross-linked anion exchange membranes for all vanadium redox flow batteries
    http://bit.ly/2eZmLAb
    35 Temperature-dependent 51V nuclear magnetic resonance spectroscopy for the positive electrolyte of vanadium redox flow batteries
    http://rsc.li/2eZlxot
    36 Metal-Organic Framework Cathodes Based on a Vanadium Hexacyanoferrate Prussian Blue Analogue for High-Performance Aqueous Rechargeable Batteries
    http://bit.ly/2eZlPvC
    37 Self-powered UV photodetector charges energy storage devices
    http://bit.ly/2eZlEjS
    38 Capacity Decay Mitigation by Asymmetric Positive/Negative Electrolyte Volumes in Vanadium Redox Flow Batteries
    http://bit.ly/2eZqSvO
    39 Optimal Sizing of Vanadium Redox Flow Battery Systems for Residential Applications Based on Battery Electrochemical Characteristics
    http://bit.ly/2eZmY67
    40 Doping structure and degradation mechanism of polypyrrole-Nafion® composite membrane for vanadium redox flow batteries
    http://rsc.li/2eZpEkj
 
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