2021
DOI: 10.1038/s41578-021-00290-3
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Processing and application of high-temperature superconducting coated conductors

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Cited by 178 publications
(84 citation statements)
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“…The MOD process has advantages such as low system cost and the least solution waste, but its products have larger pinning particles than that obtained in PLD growth, and the pinning at higher fields is less effective. The coated conductors manufactured with different routes can be used for different applications according to their performance ( Obradors and Puig, 2014 ; MacManus-Driscoll and Wimbush, 2021 ).…”
Section: Materials Challenges and Current State Of Practical Applicationsmentioning
confidence: 99%
“…The MOD process has advantages such as low system cost and the least solution waste, but its products have larger pinning particles than that obtained in PLD growth, and the pinning at higher fields is less effective. The coated conductors manufactured with different routes can be used for different applications according to their performance ( Obradors and Puig, 2014 ; MacManus-Driscoll and Wimbush, 2021 ).…”
Section: Materials Challenges and Current State Of Practical Applicationsmentioning
confidence: 99%
“…Для нанесения буферных слоев и слоя ВТСП чаще используются методы: RCE -реактивное термическое со-испарение, PLD -импульсное лазерное осаждение, PVD -испарение электронным пучком в вакууме, MOCVD -метод химического осаждения из паровой фазы, MOD -метод металлогранического разложения. Описания различных методик можно найти в монографии [35], а также в обзорной статье [36].…”
Section: втсп-ленты второго поколения: архитектура композитов и технологии изготовленияunclassified
“…For many of the compounds the superconducting critical temperature T C exceeds the normal boiling point of nitrogen which, accompanied by large critical currents and fields, confers to the cuprates much potential for a variety technological applications [57]. These span from high-current coated conductors [58], which can be used for example for the generation of high magnetic fields [59], to high sensitivity sensors such as bolometers [60,61] and transition edge detectors [62] or quantum interference devices [8,63] such as quantum antennas [9] and magnetometric sensors [64]. Another key property most cuprates share is that they exhibit a d-wave pairing.…”
Section: D-wave Cuprates: Unique Properties and Opportunities For Pro...mentioning
confidence: 99%