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Keyword [solid state method]
Result: 61 - 80 | Page: 4 of 7
61.
Synthesis And Performance Of LiMnPO
4
By Solid State Method
62.
Study On The Synthesis And Performance Of New Alkali Metals/Alkali Earth Metals Sulfides Crystals
63.
Preparation And Properties Of Metal Ion Doped Phosphate Phosphors For LEDs
64.
Preparation Of Perovskite Typed Mixed Ionic And Electronic Conductor And Advances Of Its Application In Catalytic Pyrolysis Of Lignin
65.
Study On Preparation And Photocatalytic Properties Of Some Semiconductor Photocatalysts
66.
Studies On The Preparation And Properties Of CoTiNb
2
O
8
-based Microwave Dielectric Ceramics
67.
Preparation And Properties Of Yttrium Aluminium Garnet Powders And Transparent Ceramics
68.
Synthesis And Modification Of LiNi
0.5
Mn
1.5
O
4
Cathode Material For Lithium-ion Batteries
69.
Preparation And Modification Of LiNi
0.6
Co
0.2
Mn
0.2
O
2
As Cathode Material For Lithium Ion Battery
70.
Investigation On The Process And Electrical Performance Of Ultrafine-LiNi
0.5
Mn
1.5
O
4
Synthesis By Enhanced Solid State Method
71.
Fabrication And Luminescence Properties Of Ions Of Rare-earth Activated Ba
3
La
6
(SiO
4
)
6
And K
2
MgSiO
4
Fluorescent Material
72.
Fabrication And Luminescence Properties Of RE
2
Zr
2
O
7
(RE=Y,La) Nano Luminescent Materials
73.
Recovery And Reuse Of Li(Co,Ni,Mn)O
2
Cathode Material In Waste Lithium Ion Battery
74.
Preparation And Properties Of Cathode Material LiNi
0.8
Co
0.15
Al
0.05
O
2
For Lithium Ion Battery
75.
Preparation And Properties Study Of NBT-KBT-KNN Energy-storage Ceramic
76.
Studies On Preparation And Properties Of PbTiO
3
Ferroelectric By Transition Elements Doping
77.
The Preparation Of Eu
3+
Doped Phosphate And Molybdate Phosphors And The Studies Of Cations Effect On Their Luminescent Properties
78.
Preparation And Luminescent Properties Of Rare Earth Eu
3+
Doped Orthophosphate And Borophosphate Red Phosphors For LEDs
79.
Research On The Synthesis And Luminescent Properties Of Aluminate And Gallate Phosphors
80.
Synthesis And Magnetic Properties Of FePt Nanoparticles By Solid-state Method
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