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dc.contributor.author | Kumar, Mohit | - |
dc.contributor.author | Seo, Hyungtak | - |
dc.date.issued | 2023-02-16 | - |
dc.identifier.uri | https://dspace.ajou.ac.kr/dev/handle/2018.oak/33131 | - |
dc.description.abstract | Unlike the structure-specific piezoelectric effect, flexoelectricity is a universal phenomenon that can offer a wide range of energy-efficient, cost-effective, mechano-opto-electro-coupled applications. Even though the flexoelectric effect has been extensively studied at nanoscale, a fundamental, yet unresolved, the issue is how it can be exploited at larger scales for potential applications. Herein, the long-range (>millimeter) stimulated and regulated impact of the localized inhomogeneous strain-induced flexoelectric potential on centrosymmetric metal/titanium oxide heterojunction with nanoscale precision (≈5.8 nm) is demonstrated. The noticed phenomenon is attributed to the long-range interaction between flexoelectric and build-in potentials, which is further utilized to develop mechanically regulated (enhancement > 104%), self-powered (i.e., 0 V), ultrafast (>10 million bits per second), and broadband (λ = 365–1720 nm) pyro-photosensors having high responsivity (≈1.18 mA W−1). As prospective applications, proof-of-concept ultrafast night movement monitors (>720 km h−1), high-performing stationery, and dynamic obstacle sensors with possible impact alerts are developed. These findings lay the groundwork for the micro-to-millimeter-range flexo-opto-electrical coupling in centrosymmetric materials, which can have a wide variety of practical applications. | - |
dc.description.sponsorship | This study was supported by the National Research Foundation of Korea [NRF\u20102018R1D1A1B07049871, NRF\u20102019R1A2C2003804, and NRF\u20102022M3I7A3037878] of the Ministry of Science and ICT, Republic of Korea. | - |
dc.language.iso | eng | - |
dc.publisher | John Wiley and Sons Inc | - |
dc.subject.mesh | Centrosymmetric | - |
dc.subject.mesh | Flexoelectric | - |
dc.subject.mesh | Flexoelectric effects | - |
dc.subject.mesh | Long range interactions | - |
dc.subject.mesh | Longer-range interaction | - |
dc.subject.mesh | Millimeter range | - |
dc.subject.mesh | Movement monitoring | - |
dc.subject.mesh | Night-photomonitoring | - |
dc.subject.mesh | Ultra-fast | - |
dc.subject.mesh | Ultrafast night movement monitoring | - |
dc.title | Millimeter-range Induced Flexo-Pyrophotronic Effect in Centrosymmetric Heterojunction for Ultrafast Night-Photomonitoring | - |
dc.type | Article | - |
dc.citation.title | Advanced Functional Materials | - |
dc.citation.volume | 33 | - |
dc.identifier.bibliographicCitation | Advanced Functional Materials, Vol.33 | - |
dc.identifier.doi | 10.1002/adfm.202210621 | - |
dc.identifier.scopusid | 2-s2.0-85144133340 | - |
dc.identifier.url | http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1616-3028 | - |
dc.subject.keyword | flexoelectric effects | - |
dc.subject.keyword | long-range interaction | - |
dc.subject.keyword | night-photomonitoring | - |
dc.subject.keyword | photodetectors | - |
dc.subject.keyword | ultrafast night movement monitoring | - |
dc.description.isoa | false | - |
dc.subject.subarea | Chemistry (all) | - |
dc.subject.subarea | Materials Science (all) | - |
dc.subject.subarea | Condensed Matter Physics | - |
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