Nickel-iron oxide was deposited on highly cleaned glass substrates using spray pneumatic technique. The effect of iron percentage on structural, optical and electrical properties has been studied. The crystalline size of the deposited thin films was calculated using Debye-Scherer formula and found in the range between 8.8 and 27.6 nm. The optical properties have been discussed in this work. The absorbance (A), the transmittance (T) and the reflectance (R) were measured and calculated. Band gap energy is considered one of the most important optical parameter, therefore measured and found ranging between 3.81 and 3.98 eV. The NiO:Fe thin film reduces the light reflection for visible range light. The increase of the electrical conductiv...
Nickel oxide (NiO) thin film has been deposited on a glass substrate at a temperature of 390˚C ± 10˚...
Electochromic material came to public attention around 30 years ago, nickel oxide(NiO) thin film(whi...
Non-stoichiometric Ni1-xO thin films were prepared on glass substrate by direct current reactive mag...
Nickel-iron oxide was deposited on highly cleaned glass substrates using spray pneumatic technique. ...
Nickel oxide was deposited on highly cleaned glass substrates using spray pneumatic technique. The e...
Nickel oxide was deposited on highly cleaned glass substrates using spray pneumatic technique. The e...
Undoped Nickel oxide (NiO) thin films were deposited on 500 ˚C heated glass using spray pyrolysis t...
Undoped Nickel oxide (NiO) thin films were deposited on 500 ˚C heated glass using spray pyrolysis t...
A simple and cheap chemical deposition method was used to produce a nickel oxide (NiO) thin film on ...
Nickel oxide thin films were deposited by a simple and low-cost spray pyrolysis technique using thre...
Nickel oxide thin films were deposited by a simple and low-cost spray pyrolysis technique using thre...
Nickel oxide thin films were deposited by a simple and low-cost spray pyrolysis technique using thre...
Mixed Fe2O3 - NiO thin films have been prepared by chemical Spray pyrolysis technique onto glass sub...
Mixed Fe2O3- NiO thin films have been prepared by chemical Spray pyrolysis technique onto glass subs...
Mixed Fe2O3- NiO thin films have been prepared by chemical Spray pyrolysis technique onto glass subs...
Nickel oxide (NiO) thin film has been deposited on a glass substrate at a temperature of 390˚C ± 10˚...
Electochromic material came to public attention around 30 years ago, nickel oxide(NiO) thin film(whi...
Non-stoichiometric Ni1-xO thin films were prepared on glass substrate by direct current reactive mag...
Nickel-iron oxide was deposited on highly cleaned glass substrates using spray pneumatic technique. ...
Nickel oxide was deposited on highly cleaned glass substrates using spray pneumatic technique. The e...
Nickel oxide was deposited on highly cleaned glass substrates using spray pneumatic technique. The e...
Undoped Nickel oxide (NiO) thin films were deposited on 500 ˚C heated glass using spray pyrolysis t...
Undoped Nickel oxide (NiO) thin films were deposited on 500 ˚C heated glass using spray pyrolysis t...
A simple and cheap chemical deposition method was used to produce a nickel oxide (NiO) thin film on ...
Nickel oxide thin films were deposited by a simple and low-cost spray pyrolysis technique using thre...
Nickel oxide thin films were deposited by a simple and low-cost spray pyrolysis technique using thre...
Nickel oxide thin films were deposited by a simple and low-cost spray pyrolysis technique using thre...
Mixed Fe2O3 - NiO thin films have been prepared by chemical Spray pyrolysis technique onto glass sub...
Mixed Fe2O3- NiO thin films have been prepared by chemical Spray pyrolysis technique onto glass subs...
Mixed Fe2O3- NiO thin films have been prepared by chemical Spray pyrolysis technique onto glass subs...
Nickel oxide (NiO) thin film has been deposited on a glass substrate at a temperature of 390˚C ± 10˚...
Electochromic material came to public attention around 30 years ago, nickel oxide(NiO) thin film(whi...
Non-stoichiometric Ni1-xO thin films were prepared on glass substrate by direct current reactive mag...