Single-molecule magnets (SMMs) possess many unique magnetic properties and thus attract a wide range of attention. However, the applications of SMMs always need a strict atmosphere, i.e. low temperature, high vacuum and strong magnetic field. In this work, we report the preparation and characterization of sensitivity enhanced graphene Hall elements (GHEs) decorated with Tb-core SMMs. By comparing the magnetic sensing and electronic tests of the GHEs before and after the SMMs modifications, the sensitivity of the GHEs increases by 44.9% in voltage mode and 59.0% in current mode compared with pristine GHEs. The increase of sensitivity may result from the magnetic center introduction of SMMs at roomtemperature. Moreover, the magnetic molecules...
Hall elements were fabricated based on high quality chemical vapor deposition grown graphene, and th...
Recently, there has been a growing interest towards the use of magnetic micro/nanoparticles in biome...
The aim of this Thesis is to increase the fundamental understanding of magnetic molecules, as the ul...
Hall elements are by far the most widely used magnetic sensor. In general, the higher the mobility a...
The encapsulation of graphene-based Hall sensors on foil is shown to be an effective method for impr...
The development of high-performance magnetic field sensors is important for magnetic sensing and ima...
Graphene micro-Hall probes were developed for a scanning Hall probe microscope system and used for t...
High sensitivity and flexible Graphene Hall elements (GHEs) were demonstrated. The average and maxim...
Graphene is an excellent material for Hall sensors due to its atomically thin structure, high carrie...
A graphene Hall element (GHE) is an optimal system for a magnetic sensor because of its perfect two-...
175 pagesGraphene is a material consisting of a single layer of carbon atoms, with distinctive elect...
Hall elements fabricated on chemical vapor deposited graphene exhibited high current- and voltage-re...
The encapsulation of graphene in hexagonal boron nitride provides graphene on substrate with excelle...
The realization of quantitative, noninvasive sensors for ambient magnetic imaging with high spatial ...
Epitaxial graphene on silicon carbide, or epigraphene, provides an excellent platform for Hall sensi...
Hall elements were fabricated based on high quality chemical vapor deposition grown graphene, and th...
Recently, there has been a growing interest towards the use of magnetic micro/nanoparticles in biome...
The aim of this Thesis is to increase the fundamental understanding of magnetic molecules, as the ul...
Hall elements are by far the most widely used magnetic sensor. In general, the higher the mobility a...
The encapsulation of graphene-based Hall sensors on foil is shown to be an effective method for impr...
The development of high-performance magnetic field sensors is important for magnetic sensing and ima...
Graphene micro-Hall probes were developed for a scanning Hall probe microscope system and used for t...
High sensitivity and flexible Graphene Hall elements (GHEs) were demonstrated. The average and maxim...
Graphene is an excellent material for Hall sensors due to its atomically thin structure, high carrie...
A graphene Hall element (GHE) is an optimal system for a magnetic sensor because of its perfect two-...
175 pagesGraphene is a material consisting of a single layer of carbon atoms, with distinctive elect...
Hall elements fabricated on chemical vapor deposited graphene exhibited high current- and voltage-re...
The encapsulation of graphene in hexagonal boron nitride provides graphene on substrate with excelle...
The realization of quantitative, noninvasive sensors for ambient magnetic imaging with high spatial ...
Epitaxial graphene on silicon carbide, or epigraphene, provides an excellent platform for Hall sensi...
Hall elements were fabricated based on high quality chemical vapor deposition grown graphene, and th...
Recently, there has been a growing interest towards the use of magnetic micro/nanoparticles in biome...
The aim of this Thesis is to increase the fundamental understanding of magnetic molecules, as the ul...