Structural and Optical Properties of Nickel-Doped Zinc
- Classification:Chemical Auxiliary Agent
- CAS No.:117-84-0
- Other Names:Dioctyl Phthalate
- MF:C24H38O4
- EINECS No.:201-557-4
- Purity:99.9%
- Type:Adsorbent
- Usage:Plastic Auxiliary Agents, Plastic Auxiliary Agents, Rubber Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Shape:Powder
- Payment:T/T
- Certificate::COA
In this study, undoped and Ni-doped ZnS nanoparticles were fabricated using a hydrothermal method to explore their structural, optical, and surface properties. X-ray
In this study, undoped and Ni-doped ZnS nanoparticles were fabricated using a hydrothermal method to explore their structural, optical, and surface properties. X-ray
Structural and Optical Properties of Nickel-Doped Zinc Sulfide
- Classification:Chemical Auxiliary Agent
- CAS No.:117-84-0
- Other Names:DOP
- MF:C24H38O4
- EINECS No.:201-557-4
- Purity:99.99, 99%
- Type:non-toxic calcium zinc stabilizer
- Usage:Petroleum Additives, Plastic Auxiliary Agents, Rubber Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Place of Origin::China
Structural and Optical Properties of Nickel-Doped Zinc Sulfide Sultan Alhassan 1, *, Alhulw H. Alshammari 1,Satam Alotibi 2,Khulaif Alshammari 1,W. S. Mohamed 1 and N.
XRD analysis was carried out to determine the structural properties, such as phase formation and crystal structure of the prepared product. Debye-Scherrer equation was used to
Structural, magnetic and electrical properties of zinc doped
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- cas no 117-84-0
- Other Names:DOP, diocty phthalate, 1,2-phthalate
- MF:C6H4(COOC8H17)2
- EINECS No.:201-557-4
- Purity:99.6%
- Type:Adsorbent, plasticizer
- Usage:Plastic Auxiliary Agents, Plastic Auxiliary Agents, Rubber Auxiliary Agents
- MOQ:200kgs
- Package:200kgs/battle
- Storage:Dry Place
The sol–gel process was used to synthesize zinc doped nickel ferrite Zn x Ni 1−x Fe 2 O 4 (x=0.0, 0.2, 0.4, 0.6, 0.8, 1.0) to investigate the effect of Zn doping on structural,
The attractive properties of nickel doped ZnO materials are highly demanded in high-energy potential applications. The nickel doped zinc oxide materials are hexagonal wurtzite
Influence of zinc doping on structural, electrical, magnetic
- Classification:Chemical Auxiliary Agent
- CAS No.:117-84-0
- Other Names:DOP, Dioctyl phthalate
- MF:C24H38O4, C24H38O4
- EINECS No.:201-557-4
- Purity:99%min
- Type:non-toxic calcium zinc stabilizer
- Usage:Leather Auxiliary Agents, Paper Chemicals, Petroleum Additives, Plastic Auxiliary Agents, Rubber Auxiliary Agents, Textile Auxiliary Agents, Leather Auxiliary Agent,Plastic Auxiliary Agent,
- MOQ::10 Tons
- Package:25kg/drum
- Shape:Powder
- Model:Dop Oil For Pvc
Pure Ni–Zn ferrites were prepared by the precursor-combustion method using Ni1-xZnxFe2(C4H4O4)3.6N2H4 (x = 0.1, 0.3, 0.5, 0.7, 0.9) precursors. The fascinating property of
4 days agoAli et al. 62 studied the magneto-structural properties of Zr 4+-Co 2+ co-doped nickel ferrite nanoparticles made via the microemulsion method. Their results suggest that the
Improving structural and magnetic properties of
- Classification:Chemical Auxiliary Agent, Chemical Auxiliary Agent
- cas no 117-84-0
- Other Names:Chemical Auxiliary Agent
- MF:C24H38O4, C24H38O4
- EINECS No.:201-557-4
- Purity:99.0%Min
- Type:Adsorbent, plasticizer
- Usage:Coating Auxiliary Agents, Leather Auxiliary Agents, Plastic Auxiliary Agents, Rubber Auxiliary Agents
- MOQ::10 Tons
- Package:25kg/drum
- Shape:Powder
- Place of Origin::China
- Item:T/T,L/C
Notably, the magnetic properties of the thin films were analyzed using a vibrating sample magnetometer (VSM), revealing diamagnetic behavior for pure zinc stannate and ferromagnetic properties for
Adding Zn to Magnesium Zinc ferrite MZF-nano-ferrite enhanced density and improved the gamma shielding properties. The µm properties were determined experimentally at 0.081, 0.356, 0.662, 0.911, 1.332, and 2.614 MeV. The gamma shielding properties for the MZF-nano-ferrite sample are highest compared with other samples at low energy.