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Zhongzhou Du

Showing results (1-10 of 13) with videos related to

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Sensors (Basel, Switzerland)|April 16, 2015
Magnetic nanoparticle thermometer: an investigation of minimum error transmission path and AC bias errorZhongzhou Du, Rijian Su, Wenzhong Liu, et al.
The Review of Scientific Instruments|March 2, 2021
Improving magnetic nanothermometry accuracy through mixing-frequency excitationSilin Guo, Jay Liu, Zhongzhou Du, et al.
Nanomaterials (Basel, Switzerland)|December 17, 2020
Empirical Expression for AC Magnetization Harmonics of Magnetic Nanoparticles under High-Frequency Excitation Field for ThermometryZhongzhou Du, Dandan Wang, Yi Sun, et al.
Nanoscale|September 26, 2023
Simultaneous estimation of magnetic moment and Brownian relaxation time distributions of magnetic nanoparticles based on magnetic particle spectroscopy for biosensing applicationYi Sun, Zhongzhou Du, Haochen Zhang, et al.
IEEE Transactions on Nanobioscience|November 9, 2021
Empirical Expression of AC Susceptibility of Magnetic Nanoparticles and Potential Application in BiosensingZhongzhou Du, Yanying Cui, Yi Sun, et al.
Nanomaterials (Basel, Switzerland)|August 23, 2020
An Improved Method for Estimating Core Size Distributions of Magnetic Nanoparticles via Magnetization HarmonicsYi Sun, Na Ye, Dandan Wang, et al.
Nanoscale Advances|November 24, 2025
Estimation of effective anisotropy constant distribution of magnetic nanoparticles based on magnetic particle spectroscopyHaochen Zhang, Yi Sun, Haozhe Wang, et al.
Physical Review. E|June 16, 2022
Fast reconstruction of multiphase microstructures based on statistical descriptorsDongDong Chen, Zhi Xu, XiaoRui Wang, et al.
Nanomaterials (Basel, Switzerland)|October 14, 2022
A Temperature Imaging Method for Multi-Chip High Power LEDs Based on the Magnetic Nanoparticle ThermometerZhongzhou Du, Bin Hu, Na Ye, et al.
Nanotechnology|January 21, 2012
A noninvasive, remote and precise method for temperature and concentration estimation using magnetic nanoparticlesJing Zhong, Wenzhong Liu, Zhongzhou Du, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Sensors (Basel, Switzerland)|April 16, 2015
Magnetic nanoparticle thermometer: an investigation of minimum error transmission path and AC bias errorZhongzhou Du, Rijian Su, Wenzhong Liu, et al.
The Review of Scientific Instruments|March 2, 2021
Improving magnetic nanothermometry accuracy through mixing-frequency excitationSilin Guo, Jay Liu, Zhongzhou Du, et al.
Nanomaterials (Basel, Switzerland)|December 17, 2020
Empirical Expression for AC Magnetization Harmonics of Magnetic Nanoparticles under High-Frequency Excitation Field for ThermometryZhongzhou Du, Dandan Wang, Yi Sun, et al.
Nanoscale|September 26, 2023
Simultaneous estimation of magnetic moment and Brownian relaxation time distributions of magnetic nanoparticles based on magnetic particle spectroscopy for biosensing applicationYi Sun, Zhongzhou Du, Haochen Zhang, et al.
IEEE Transactions on Nanobioscience|November 9, 2021
Empirical Expression of AC Susceptibility of Magnetic Nanoparticles and Potential Application in BiosensingZhongzhou Du, Yanying Cui, Yi Sun, et al.
Nanomaterials (Basel, Switzerland)|August 23, 2020
An Improved Method for Estimating Core Size Distributions of Magnetic Nanoparticles via Magnetization HarmonicsYi Sun, Na Ye, Dandan Wang, et al.
Nanoscale Advances|November 24, 2025
Estimation of effective anisotropy constant distribution of magnetic nanoparticles based on magnetic particle spectroscopyHaochen Zhang, Yi Sun, Haozhe Wang, et al.
Physical Review. E|June 16, 2022
Fast reconstruction of multiphase microstructures based on statistical descriptorsDongDong Chen, Zhi Xu, XiaoRui Wang, et al.
Nanomaterials (Basel, Switzerland)|October 14, 2022
A Temperature Imaging Method for Multi-Chip High Power LEDs Based on the Magnetic Nanoparticle ThermometerZhongzhou Du, Bin Hu, Na Ye, et al.
Nanotechnology|January 21, 2012
A noninvasive, remote and precise method for temperature and concentration estimation using magnetic nanoparticlesJing Zhong, Wenzhong Liu, Zhongzhou Du, et al.
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