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a low cost, all-organic na-ion battery based on polymeric cathode and anode

The current battery system is difficult to meet large-scale electrical storage applications due to cost and resource constraints.
Here we reportorganic Na-
Ion battery using p-
As cathode and n-doped poly-triamine-type redox-active poly(
Anthraquinonyl sulfide)
As an anode, transition is not included-
Metal, such as conventional batteries. Such a Na-
The ion battery works well with a voltage output of 1.
8 kg/v and achieve a considerable specific energy of 92 wh kg-1.
Structural flexibility and stability due to redox-
Active polymer, this battery has excellent rate capability, releasing a capacity of 60% at a very high rate of 16 ° c (3200u2005mA g−1)
And after 85% cycles at 8 ° c rate, excellent cycle stability was shown with a capacity of 500.
Most importantly, this type
Make organic batteries from renewable energy and Earth
Rich materials provide new possibilities for a wide range of energy storage applications.
PAQS were synthesized by the polymerization reaction of NaS and 1,5-
Chloroxone.
Remove the water from the NaS 9HO to obtain the water-free NaS (
Lingfeng chemical reagent Co. , Ltd.
China Shanghai) Co. , Ltd.
Dehydration by boiling benzene at 135 °c
After the evaporation of benzene, the amount of chemical measurement is 1,5-
Two anthraquinone (Alfa Asser)and N-methyl-2-pyrrolidone (NMP)
Add in the mixture and then return for 10 hours at 150 °c under magnetic stirring.
After the reaction is completed, filter the solid and then use de-
Ionised water and acetone and finally dried overnight in a vacuum oven at 60 °c
PTPAn was obtained by oxidation polymerization of triamine monomer (purity ≥ 99.
0%, Zhenjiang Haitong Chemical Co. , Ltd. , Ltd.
Jiangsu, China)
In a manner similar to described in the references, use the FeCl antioxidant and under the removal of dry N. . Infrared (IR)
Absorption measurement using KBr particles on AVATAR 360 spectrometer (
Nikola 5700 infrared spectrometer)
Range of 400-4000 cm.
The mechanism of solid phase reaction was carried out with the Inova 300 MHz spectrometer (Varian Inc. , USA).
SEM microphotos were observed on the nova nanosem 450 scanning electron microscope (
Dutch Flying Company).
The electro-chemical properties of PAQS and PTPAn materials were half
Cell configuration of CR2032-
Use the sodium tray to type the coin battery as the reverse electrode.
Mixed solution with electrolyte 1,2-
Ethane on Alpha (DME)and 1,3-dioxolane (DOL)(1:1 by volume)
Saturated with NaPF.
Separator for microporous membrane (Celgard 2400).
By mixing 40% PAQS powder, 50% Ketjen Black (KB)
And 10% fluoride (wt. %)
And roll the electrode mixture into ~ 0. Think about movies.
The anode is done by pressing the electrode film on the aluminum network, then stamping the electrode into a 2mm disk, and vacuum drying the anode disk at 60 °c for 24 hours.
The PTPAn cathode is composed of 60% active substances, 30% Super P carbon and 10% Poly four fluorine (wt. %)
, Manufactured in the same way as the PAQS anode. Prototype all-organic Na-
Construction of ion batteries using PAQS anode with anode and PTPAn cathode
Limited design where a design is used slightly more than the cathode material, so the battery capacity is determined by the anode material.

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