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A newly developed Fe-doped calcium sulfide nanoparticles with magnetic property for cancer hyperthermia
Steven Yueh Hsiu Wu,
Ching Li Tseng
, Feng Huei Lin
研究成果
:
雜誌貢獻
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36
引文 斯高帕斯(Scopus)
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Mathematics
Absorption
9%
Alternatives
5%
Atmosphere
11%
Biodegradation
15%
Calcium
75%
Cancer
56%
Cell
13%
Chemical Processes
12%
Crystal Structure
12%
Cytotoxicity
16%
Electron
9%
Energy
6%
Fibroblasts
14%
Heat
26%
Heat Treatment
42%
Hyperthermia
93%
Hysteresis Loop
28%
Iron
12%
Magnetic Field
17%
Magnetic Properties
89%
Microscope
13%
Nanoparticles
81%
SQUID
16%
Engineering & Materials Science
Air
5%
Assays
10%
Biocompatibility
22%
Biodegradation
12%
Calcium
60%
Cells
8%
Coprecipitation
13%
Crystal structure
11%
Cytotoxicity
13%
Diffractometers
12%
Electron microscopes
8%
Fibroblasts
13%
Heat treatment
23%
Hot Temperature
13%
Hysteresis loops
22%
Ions
25%
Iron
8%
Magnetic fields
16%
Magnetic properties
66%
Magnetometers
11%
Nanoparticles
54%
Paramagnetism
18%
SQUIDs
13%
Sulfides
63%
Temperature
18%
X rays
8%
Physics & Astronomy
air
5%
atmospheres
6%
biocompatibility
22%
biodegradation
14%
calcium sulfides
100%
cancer
51%
crystal structure
7%
diffractometers
10%
electron microscopes
7%
examination
7%
fibroblasts
11%
heat
18%
heat treatment
22%
hyperthermia
66%
hysteresis
14%
ions
12%
iron
6%
magnetic fields
9%
magnetic properties
38%
magnetometers
9%
nanoparticles
37%
paramagnetism
11%
temperature
13%
Chemical Compounds
Biodegradation
9%
Calcium Sulfide
93%
Coprecipitation
8%
Debye-Scherrer
13%
Diamagnetic
9%
Heat
20%
Heat Treatment
23%
Hysteresis
18%
Ion
10%
Magnetic Field
17%
Magnetic Property
44%
Nanoparticle
27%
Paramagnetism
12%
X-Ray
5%