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Featured researches published by Yongze Cao.


NANO | 2014

EFFECTS OF HIGH MAGNETIC FIELD ON THE STRUCTURAL EVOLUTION AND MAGNETIC PROPERTIES OF NANOCRYSTALLINE Ni FILMS

Jiaojiao Du; Guojian Li; Qiang Wang; Yongze Cao; Yonghui Ma; Jicheng He

This paper studies the effects of a high magnetic field on the structural evolution and magnetic properties of nanocrystalline Ni films prepared on quartz substrates by a molecular beam vapor deposition (MBVD) method. Atomic force microscope, X-ray diffractometer, transmission electron microscope and vibrating sample magnetometer were used to study the microstructures and magnetic properties of the Ni films. The results indicate that high magnetic field has no obvious influence on crystal structures except changing the lattice constant of the Ni films. However, the high magnetic field can refine particle size. The film deposited under magnetic field tends to grow through columnar mode because of the magnetized particles aligning along the direction of magnetic field. Furthermore, the ordered and dense arrangement of Ni atoms results in more spins contained in per unit volume and improves the saturation magnetization (Ms). Ms of the 6 T Ni film increases by 70% (578 emu/cm3) than that of the film without magnetic field (341 emu/cm3), and the coercivity is also slightly increased for the 6 T film.


Frontiers of Materials Science | 2015

Effects of different magnetic flux densities on microstructure and magnetic properties of molecular-beam-vapor-deposited nanocrystalline Fe 64 Ni 36 thin films

Yongze Cao; Qiang Wang; Guojian Li; Yonghui Ma; Jiaojiao Du; Jicheng He

The nanocrystalline Fe64Ni36 thin films were prepared by molecular-beam-vapor deposition under different magnetic flux densities. The microstructure and magnetic properties of thin films were examined by AFM, TEM, HRTEM and VSM. The results show that with the increase of magnetic flux densities, the changing trend of the average particle size is the same as the coercive force except 6 T. Under 6 T condition, the thin film became the mixture of bcc and fcc phases, which leads to slight increase of the coercive force. In addition, the HRTEM result shows the short-range ordered clusters (embryos) or nucleation rate of thin films increase with increasing magnetic flux densities.


Science of Advanced Materials | 2013

Improving the Magnetic Properties of Molecular-Beam-Vapor-Deposited Ni 45 Fe 55 Nanocrystalline Films by In-Situ High Magnetic Field Application

Qiang Wang; Yongze Cao; Guojian Li; Kai Wang; Jiaojiao Du; Jicheng He


Journal of Magnetism and Magnetic Materials | 2013

Effects of high magnetic field on the structure evolution, magnetic and electrical properties of the molecular beam vapor deposited FexNi1−x (0.3≤x<0.8) thin films

Yongze Cao; Qiang Wang; Guojian Li; Jiaojiao Du; Jicheng He


Vacuum | 2014

Tunable phase formation in Ni–Fe thin films at nanoscale using high magnetic fields

Guojian Li; Yongze Cao; Qiang Wang; Jiaojiao Du; Yue Zhao; Jicheng He


Physics Letters A | 2012

Size and composition dependence of the frozen structures in Co-based bimetallic clusters

Guojian Li; Qiang Wang; Yongze Cao; Jiaojiao Du; Jicheng He


Vacuum | 2015

Microstructural evolution and magnetic properties of nanocrystalline Fe films prepared in a high magnetic field

Jiaojiao Du; Guojian Li; Qiang Wang; Yonghui Ma; Yongze Cao; Jicheng He


Journal of Magnetism and Magnetic Materials | 2014

Effects of a high magnetic field on structure evolution and properties of the molecular beam vapor deposited Fe60Ni40 nanoparticles thin films

Yongze Cao; Qiang Wang; Guojian Li; Jiaojiao Du; Xiaoguang Wang; Jicheng He


Materials Letters | 2012

Size effect on the frozen structures of Co clusters

Guojian Li; Tie Liu; Qiang Wang; Yingjie Zhang; Yongze Cao; Jiaojiao Du; Jicheng He


Thin Solid Films | 2015

Effects of magnetic flux densities on microstructure evolution and magnetic properties of molecular-beam-vapor-deposited nanocrystalline Fe30Ni70 thin films

Yongze Cao; Qiang Wang; Guojian Li; Yonghui Ma; Jiaojiao Du; Jicheng He

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Guojian Li

Northeastern University

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Jiaojiao Du

Northeastern University

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Jicheng He

Northeastern University

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Qiang Wang

Northeastern University

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Yonghui Ma

Northeastern University

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Kai Wang

Northeastern University

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Tie Liu

Northeastern University

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Yue Zhao

Northeastern University

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