
Hongrui Zhang
Articles
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Jul 15, 2024 |
nature.com | Sajid Husain |Isaac Harris |Peter Meisenheimer |Sukriti Mantri |Xinyan Li |Pravin Kavle | +12 more
AbstractAntiferromagnets have attracted significant attention in the field of magnonics, as promising candidates for ultralow-energy carriers for information transfer for future computing. The role of crystalline orientation distribution on magnon transport has received very little attention. In multiferroics such as BiFeO3 the coupling between antiferromagnetic and polar order imposes yet another boundary condition on spin transport.
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Apr 4, 2024 |
nature.com | Peter Meisenheimer |Shiyu Zhou |Hongrui Zhang |Xiaoxi Huang |Sajid Husain |Xianzhe Chen | +5 more
AbstractBismuth ferrite (BiFeO3) is a multiferroic material that exhibits both ferroelectricity and canted antiferromagnetism at room temperature, making it a unique candidate in the development of electric-field controllable magnetic devices. The magnetic moments in BiFeO3 are arranged into a spin cycloid, resulting in unique magnetic properties which are tied to the ferroelectric order. Previous understanding of this coupling has relied on average, mesoscale measurements.
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Jul 31, 2023 |
e3s-conferences.org | Hongrui Zhang
E3S Web of Conferences 406, 01018 (2023)A Review: Biocompatibility and Drug Delivery Applications of Mannan Nanogel* School of The University of Manchester, Manchester, England, UK * Corresponding author: [email protected] delivery researches has drawn tons of attention to achieve the targeted therapies that work for many diseases. Nanogels, a type of polymeric hydrogels with a nanoscale size, are promising materials for drug delivery applications.
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