We conceptually selected the compounds REPb$_3$ (RE = Eu, Yb), which are unstable in air, and converted them to the stable materials in ambient conditions by the chemical processes of “nanoparticle formation” and “dimensional reduction”. The nanoparticles and the bulk counterparts were synthesized by the solvothermal and high-frequency induction furnace heating methods, respectively. The reduction of the particle size led to the valence transition of the rare earth atom, which was monitored through magnetic susceptibility and X-ray absorption near edge spectroscopy (XANES) measurements. The stability was checked by X-ray diffraction and thermogravimetric analysis over a period of seven months in oxygen and argon atmospheres and confirmed by...
This thesis details three main studies. The first is an investigation of the effect of coating Fe na...
Bimetallic catalysts exhibit high performance compared to that of their monometallic counterparts in...
Size-controlled Fe3O4 nanoparticles doped with rare earth (RE) ions (La3+, Ce3+, and Dy3+) varying f...
We conceptually selected the compounds REPb$_3$ (RE = Eu, Yb), which are unstable in air, and conver...
As the area of nanotechnology continues to grow, the development of new nanomaterials with interesti...
When alkaline earth ions in borates, phosphates or borophosphates [SrB4O7, SrB6O10, BaB8O13, MBPO5 (...
As the area of nanotechnology continues to grow, the development of new nanomaterials with interesti...
The redox behavior of 5 nm Fe-Me alloyed nanoparticles (where Me = Pt, Au, and Rh) was investigated ...
This work investigates the synthesis of bifunctional nanomaterials using the doping of paramagnetic ...
Multielement rare earth (R)–transition metal (T) intermetallics are arguably the next generation of ...
Uranium redox states and speciation in magnetite nanoparticles coprecipitated with U(VI) for uraniu...
The redox behavior of 5 nm Fe-Me alloyed nanoparticles (where Me = Pt, Au, and Rh) was investigated ...
The first liquid-phase synthesis of high-quality, small-sized rare-earth metal nanoparticles (1–3 nm...
This thesis details three main studies. The first is an investigation of the effect of coating Fe na...
用燃烧法制备了不同粒径的La2O3:Eu3+纳米微粒,研究了影响La2O3:Eu3+纳米微粒大小的实验条件,发现粒径大小随甘氨酸(Gly)与稀土离子比例的增大而减小.制备的纳米微粒由谢乐公式计算的粒径...
This thesis details three main studies. The first is an investigation of the effect of coating Fe na...
Bimetallic catalysts exhibit high performance compared to that of their monometallic counterparts in...
Size-controlled Fe3O4 nanoparticles doped with rare earth (RE) ions (La3+, Ce3+, and Dy3+) varying f...
We conceptually selected the compounds REPb$_3$ (RE = Eu, Yb), which are unstable in air, and conver...
As the area of nanotechnology continues to grow, the development of new nanomaterials with interesti...
When alkaline earth ions in borates, phosphates or borophosphates [SrB4O7, SrB6O10, BaB8O13, MBPO5 (...
As the area of nanotechnology continues to grow, the development of new nanomaterials with interesti...
The redox behavior of 5 nm Fe-Me alloyed nanoparticles (where Me = Pt, Au, and Rh) was investigated ...
This work investigates the synthesis of bifunctional nanomaterials using the doping of paramagnetic ...
Multielement rare earth (R)–transition metal (T) intermetallics are arguably the next generation of ...
Uranium redox states and speciation in magnetite nanoparticles coprecipitated with U(VI) for uraniu...
The redox behavior of 5 nm Fe-Me alloyed nanoparticles (where Me = Pt, Au, and Rh) was investigated ...
The first liquid-phase synthesis of high-quality, small-sized rare-earth metal nanoparticles (1–3 nm...
This thesis details three main studies. The first is an investigation of the effect of coating Fe na...
用燃烧法制备了不同粒径的La2O3:Eu3+纳米微粒,研究了影响La2O3:Eu3+纳米微粒大小的实验条件,发现粒径大小随甘氨酸(Gly)与稀土离子比例的增大而减小.制备的纳米微粒由谢乐公式计算的粒径...
This thesis details three main studies. The first is an investigation of the effect of coating Fe na...
Bimetallic catalysts exhibit high performance compared to that of their monometallic counterparts in...
Size-controlled Fe3O4 nanoparticles doped with rare earth (RE) ions (La3+, Ce3+, and Dy3+) varying f...