2023
DOI: 10.1016/j.jallcom.2022.168288
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Applications of electrospun nanofibers in solid oxide fuel cells – A review

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Cited by 21 publications
(5 citation statements)
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“…In general, these are mainly the low-temperature methods to maintain the high surface area of the nanosized materials. Among the variety of methods available to improve the conventional perovskite electrodes by extending the triple-phase boundary (TPB), it is worth mentioning spray pyrolysis in its different modifications highlighted in the review [273], and used for LSM in [218,219,[274][275][276][277], and for LSCF in [223,[278][279][280][281]; electrospinning represented in reviews [282][283][284], and used for LSM in [285,286], and for LSCF in [286][287][288][289][290][291][292] template method used for LSM in [293], and for LSCF in [294][295][296][297]; infiltration method considered in the reviews [298][299][300][301][302], and used for LSM in [26,54,148,154,232,[303][304][305][306][307]…”
Section: Conventional and Advanced Techniques To Fabricate Electrode ...mentioning
confidence: 99%
“…In general, these are mainly the low-temperature methods to maintain the high surface area of the nanosized materials. Among the variety of methods available to improve the conventional perovskite electrodes by extending the triple-phase boundary (TPB), it is worth mentioning spray pyrolysis in its different modifications highlighted in the review [273], and used for LSM in [218,219,[274][275][276][277], and for LSCF in [223,[278][279][280][281]; electrospinning represented in reviews [282][283][284], and used for LSM in [285,286], and for LSCF in [286][287][288][289][290][291][292] template method used for LSM in [293], and for LSCF in [294][295][296][297]; infiltration method considered in the reviews [298][299][300][301][302], and used for LSM in [26,54,148,154,232,[303][304][305][306][307]…”
Section: Conventional and Advanced Techniques To Fabricate Electrode ...mentioning
confidence: 99%
“…103,148,156 However, it is imperative to mention that the complex 3D spatial microstructure electrodes commonly consist of porous materials, which tend to exhibit inferior mechanical strength and issues such as breakage and distortion could not be neglected. [156][157][158] Consequently, it remains a challenge to maintain the morphology and electrochemical cell stability during long-term operation.…”
Section: Reviewmentioning
confidence: 99%
“…[ 60 ] The electrocatalytic activity of nanofiber electrodes is greatly enhanced due to their unique microstructure resulting in improved electrochemical performance of cell. [ 65 ] These stimulating properties of nanoscale materials have allowed scientists to use them in areas such as energy and health for the benefit of mankind. [ 66 ]…”
Section: Nanomaterials and Size Effectsmentioning
confidence: 99%