| Literature DB >> 29067720 |
Souleymane Kamara1, Quang-Hung Tran1, Vincent Davesne2, Gautier Félix1, Lionel Salmon2, Kunwoo Kim3, CheolGi Kim3, Azzedine Bousseksou2, Ferial Terki1.
Abstract
A promising and original method to study the spin-transition in bistable spin-crossover (SCO) materials using a magnetoresistive multiring sensor and its self-generated magnetic field is reported. Qualitative and quantitative studies are carried out combining theoretical and experimental approaches. The results show that only a small part of matter dropped on the sensor surface is probed by the device. At a low bias-current range, the number of detected nanoparticles depends on the amplitude of the current. However, in agreement with the theoretical model, the stray voltage from the particles is proportional to the current squared. By changing both the bias current and the concentration of particle droplet, the thermal hysteresis of an ultrasmall volume, 1 × 10-4 mm3 , of SCO particles is measured. The local probe of the experimental setup allows a highest resolution of 4 × 10-14 emu to be reached, which is never achieved by experimental methods at room temperature.Entities:
Keywords: magnetic susceptibility; magneto-resistive sensors; self-magnetic field; spin-crossover
Year: 2017 PMID: 29067720 DOI: 10.1002/adma.201703073
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849