2021
DOI: 10.1039/d0cs01603a
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Smart fibers for energy conversion and storage

Abstract: This review summarizes the achievements of fiber-shaped nanogenerators, solar cells, supercapacitors and batteries.

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Cited by 130 publications
(60 citation statements)
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“…Due to the significant advantages of polymer matrix composite material, they have found potential application in sensors, flame retardants, optics, biotechnology and biomedicine, aerospace engineering technologies, and energy harvesting and storage systems. [35,94] Composites are also attractive if the piezoelectric material can only be fabricated in particulate or small crystal form and need to be embedded within a matrix to create a functional device.…”
Section: Heteroleptic Organo-amino Phosphonium Saltsmentioning
confidence: 99%
“…Due to the significant advantages of polymer matrix composite material, they have found potential application in sensors, flame retardants, optics, biotechnology and biomedicine, aerospace engineering technologies, and energy harvesting and storage systems. [35,94] Composites are also attractive if the piezoelectric material can only be fabricated in particulate or small crystal form and need to be embedded within a matrix to create a functional device.…”
Section: Heteroleptic Organo-amino Phosphonium Saltsmentioning
confidence: 99%
“…[141] In fact, perovskite solar fibers have attracted a lot of attention due to their potential to be assembled directly in smart garments via conventional knitting and weaving techniques and used to power several portable miniaturized electronics, notwithstanding the technical challenges associated with their massive production. [173][174][175] To this end, innovative ways of depositing a high-quality perovskite film on fibrous high-curvature surfaces are needed. [176] Indeed, as an example, Dong et al [177] introduced a vapor-assisted deposition of MAPbI 3 − x Cl x perovskite on a Ti/ TiO 2 wire having a total diameter of 250 µm, achieving a record PCE of 10.79% and good bending stability (500 bending cycles at R = 8 cm).…”
Section: Textile Pscsmentioning
confidence: 99%
“…1 c). Fibers, especially synthetic polymer fibers, characterized with high aspect ratio and high surface area [ 25 , 26 ], is a kind of long and thin thread of material that could be knit or woven into a fabric [ 27 , 28 ]. The fluorescent probes are directly embedded into or grafted onto fibers, showing high interface to interact with analytes and thereby exhibiting high sensitivity and fast responsibility, which may have a synergistic effect with polymer matrix [ 29 , 30 ].…”
Section: Introductionmentioning
confidence: 99%