Fazhu Ding’s scientific contributions

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Publications (2)


Reliability and Durability of Thermoelectric Materials and Devices
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December 2023

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Figure 1. (A) The preparation process of Bi 2 Se 3+x /PVDF composite films; and (B) a digital photograph of the flexible Bi 2 Se 3+x /PVDF films.
Figure 2. (A, B) XRD patterns of the Bi 2 Se 3+x /PVDF composite films; (C) XPS spectra fitting curve for Bi 2 Se 3.2 powder; and (D) Se/Bi molar ratio of ICP-MS measurement for Bi 2 Se 3+x (x = 0, 0.2, 0.3, 0.4) powder.
Figure 3. (A, B) Surface and cross-section SEM image of Bi 2 Se 3.2 /PVDF composite films; and (C-E) in-plane TEM image, HRTEM image of the region in (C), and the SAED corresponding to the main phase.
Figure 4. Temperature-dependent thermoelectric properties of Bi 2 Se 3+x /PVDF composite films: (A) Seebeck coefficient; (B) electrical conductivity; (C) power factor; and (D) Hall carrier concentration and mobility at room temperature.
Figure 5. Mechanical stability test of Bi 2 Se 3.2 /PVDF composite films.

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Improved thermoelectric performance in n-type flexible Bi 2 Se 3+x /PVDF composite films

July 2021

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75 Reads

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5 Citations

Bismuth selenide materials (Bi 2 Se 3) have high performance around room temperature, demonstrating potential in thermoelectric applications. Presently, most vacuum preparation techniques used to fabricate the film materials, such as magnetron sputtering and molecular beam epitaxy, usually require complex and expensive equipment. This limits the practical applications of flexible thermoelectric films. Here, we prepared Bi 2 Se 3+x nanoplate/ polyvinylidene fluoride composite films with good flexibility using a facile chemical reaction method. Their thermoelectric performance and microstructures were systematically studied. The composite films exhibit a highly preferred orientation along (015). The carrier concentration and mobility were optimized by adding excessive element Se, eventually leading to an improvement in thermoelectric performance. The optimized power factor is 5.2 μW/K 2 m at 300 K. Furthermore, the performance remains stable after 2500 bending cycles at a radius of 1 cm, suggesting promising applications in wearable/portable electronics.

Citations (1)


... 65 nm (Fig. 1b and Fig. S1). The small size of hybrid nanoparticles can play the key roles in high stability performance in according to the characters of nanomaterials [55][56][57][58]. The zeta potential of GF/CuES was also determined to be − 22 mV through dynamic light scattering (DLS). ...

Reference:

Mitochondria- and anaerobic glycolysis-targeted self-assembled copper complex nanoparticles for boosting cuproptosis-immunotherapy
Improved thermoelectric performance in n-type flexible Bi 2 Se 3+x /PVDF composite films