Can Prussian Blue Analogues be Holy Grail for Advancing Post‐Lithium Batteries?
The recent classification of lithium as a critical raw material surged the research and
development (R&D) of post‐lithium batteries (PLBs). The larger cation charge carriers of …
development (R&D) of post‐lithium batteries (PLBs). The larger cation charge carriers of …
Partial Oxidation Synthesis of Prussian Blue Analogues for Thermo-Rechargeable Battery
Y Moritomo, M Sarukura, H Iwaizumi, I Nagai - Batteries, 2023 - mdpi.com
A thermo-rechargeable battery or tertiary battery converts thermal energy into electric energy
via an electrochemical Seebeck coefficient. The manufacturing of the tertiary batteries …
via an electrochemical Seebeck coefficient. The manufacturing of the tertiary batteries …
Performance of tertiary battery made of Prussian blue analogues
I Nagai, Y Shimaura, T Shibata… - Applied Physics …, 2021 - iopscience.iop.org
Tertiary battery, which can be charged by heating and/or cooling, is a promising energy
harvesting device that performs energy conversion during the thermal cycle between low …
harvesting device that performs energy conversion during the thermal cycle between low …
Optimization of electrode parameters of NaxCo [Fe (CN) 6] 0.88/NaxCd [Fe (CN) 6] 0.99 tertiary battery
A tertiary battery, which is charged by temperature change, has two performance indexes:
the thermally induced voltage (V cell) and discharge capacity (Q cell). Among them, Q cell is …
the thermally induced voltage (V cell) and discharge capacity (Q cell). Among them, Q cell is …
An Electrolyte-Free Thermo-Rechargeable Battery Made of Prussian Blue Analog Thin Films
T Shibata, H Matsushima, I Nagai, H Ohnuki - Processes, 2024 - mdpi.com
Thermo-rechargeable batteries, or tertiary batteries, are prospective energy-harvesting
devices that are charged by changes in the battery temperature. Previous studies on tertiary …
devices that are charged by changes in the battery temperature. Previous studies on tertiary …
Interrelation between discharge capacity and charge coefficient of redox potential in tertiary batteries made of transition metal hexacyanoferrate
We fabricated eight tertiary batteries made of transition metal hexacyanoferrates and
evaluated thermally-induced voltage (V cell) and discharge capacity (Q cell) per unit weight …
evaluated thermally-induced voltage (V cell) and discharge capacity (Q cell) per unit weight …
[HTML][HTML] Current dependence of output voltage and discharge capacity of a tertiary battery
Tertiary batteries (TBs), which can be charged by a temperature change (ΔT), are
prospective energy-harvesting devices. In this work, we investigated the variations in the …
prospective energy-harvesting devices. In this work, we investigated the variations in the …
Battery resistance and its effects on performance of laminate film type Co-PBA/Ni-PBA tertiary battery
K Furuuchi, Y Taniguchi, Y Bao, H Niwa… - Japanese Journal of …, 2024 - iopscience.iop.org
Tertiary battery (TB) can be charged by heating or cooling via difference in the
electrochemical Seebeck coefficient α between cathode and anode. Here, we investigated …
electrochemical Seebeck coefficient α between cathode and anode. Here, we investigated …
Thermo-rechargeable Batteries Fabricated Using Low-cost Materials
AH Widdhiarta, Y Shimaura, I Nagai, T Shibata… - Journal of Energy and …, 2022 - lidsen.com
We fabricated three thermo-rechargeable batteries using low-cost transition metal
hexacyanoferrate and determined the thermal voltage (V cell) and discharge capacity (Q …
hexacyanoferrate and determined the thermal voltage (V cell) and discharge capacity (Q …
[HTML][HTML] Thermorechargeable battery composed of mixed electrodes
Y Taniguchi, T Aiba, T Kubo, Y Moritomo - Future Batteries, 2024 - Elsevier
A thermorechargeable battery (TB) can be charged by heating or cooling, and hence,
converts thermal energy into electric energy. The manufacture of TB, however, requires …
converts thermal energy into electric energy. The manufacture of TB, however, requires …