Can Prussian Blue Analogues be Holy Grail for Advancing Post‐Lithium Batteries?

MS Palaganas, JS Garcia, GDD Sanglay… - Batteries & …, 2024 - Wiley Online Library
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 …

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 …

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 …

Optimization of electrode parameters of NaxCo [Fe (CN) 6] 0.88/NaxCd [Fe (CN) 6] 0.99 tertiary battery

T Shibata, K Nakamura, S Nozaki, H Iwaizumi… - Sustainable Materials …, 2022 - Elsevier
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 …

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 …

Interrelation between discharge capacity and charge coefficient of redox potential in tertiary batteries made of transition metal hexacyanoferrate

Y Shimaura, T Shibata, Y Moritomo - Japanese Journal of …, 2022 - iopscience.iop.org
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 …

[HTML][HTML] Current dependence of output voltage and discharge capacity of a tertiary battery

E Ozaki, T Shibata, I Nagai, H Ohnuki, Y Moritomo - AIP Advances, 2024 - pubs.aip.org
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 …

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 …

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 …

[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 …