An <i>n</i>-Type Ionic Thermoelectric Device Enabled by Synergistic Interactions Between Electrodes and PVA Hydrogel. [PDF]
Ye C, Shan X.
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Engineering thermoelectric performance in copper-doped graphene nanoribbons for energy-aware electronics. [PDF]
Maky HY, Karimi G, Ajeel FN.
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First-Principles Insights into the Structural, Electronic, Optical, and Thermoelectric Properties of Novel Halide Double Perovskites Rb<sub>2</sub>InCuX<sub>6</sub> (X = F, Cl, Br). [PDF]
Israr N +9 more
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Research on Thermoelectric and Optoelectronic Properties of Two-Dimensional VSi<sub>2</sub>N<sub>4</sub>, VGe<sub>2</sub>N<sub>4</sub>, and Janus VSiGeN<sub>4</sub>. [PDF]
You Q +7 more
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Investigation of the electronic, magnetic, and thermoelectric characteristics of the transition metal-based double perovskites Ba<sub>2</sub>XNbO<sub>6</sub> (X = V, Cr, Mn, and Fe) for spintronic applications. [PDF]
Rafique S +7 more
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Figure of merit for ionic thermoelectric materials. [PDF]
Zhu K +8 more
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Bandgap tuning through the substitution of alkali metal cations in A<sub>2</sub>AlCuF<sub>6</sub> (A = K, Rb, and Cs) for optoelectronic and renewable energy applications. [PDF]
Yaqoob M +6 more
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Multifunctional ionic thermoelectric elastomer enhanced by Le Chatlier principle in synergistic supramolecular hydrogen bonding system. [PDF]
Jin Y +8 more
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Wearable Thermoelectric Materials and Devices for Self‐Powered Electronic Systems
Advanced Materials, 2021Yanhua Jia, Qinglin Jiang, Peipei Liu
exaly

