Studies Of Physical Behavior Of Transition Metal Doped Sno2 For Biomedical Applications
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Abstract
In this modern technological world with remarkable success as a DMS material, tin
newlineoxide (SnO2) has vastly been explored among other oxide semiconductors for the last
newlinefew decades. The theoretical understanding and the advanced experimental facilities
newlinehave made SnO2 to be in the lime light of research community. The development of
newlinepoint defects such as oxygen vacancies is a blessing for the material to exhibit n-type
newlineconductivity and room temperature ferromagnetism for spintronic applications and also
newlineto have potential application as a biosensor. Hence the two important factors like: the
newlinesynthesis of nanoparticles with understanding the defects and utilization of these for
newlinebiosensing applications are the motivations for the current thesis work. Subsequently the
newlineresearch work has been planned.
newlineTo queue up in the contest of developing and altering underlying features of SnO2
newlinedifferent types of samples have been prepared, such as:
newlineand#61623; Nanocrystalline undoped SnO2 samples were synthesized by the auto
newlinecombustion method then calcined at different temperatures (650°C to 950°C) for
newline5 hrs.
newlineand#61623; SnxNi1-xO2 and SnxMn1-xO2 samples (x = 0.03 to 0.15) were prepared via auto
newlinecombustion method and calcined at a constant temperature (850°C) for 5 hrs.
newlineand#61623; Undoped SnO2/Al and Transition metal (Ni) doped SnO2/Al samples
newline(electrodes) were fabricated by chemically wet and dry technique (CWD).
newlineThe prepared samples have been characterized by recording and analyzing the data of
newlineXRD, UV-visible spectroscopy, Raman, FTIR, and Vibratory Sample Magnetometer
newline(VSM) measurement. At first the XRD analysis revealed single phase rutile structure for
newlineundoped and doped SnO2 system. In case of Ni doped SnO2 samples, Ni integration is
newlineobtained till x=0.12% while total integration of Mn is observed in SnxMn1-xO2 samples.
newlineThe SEM analysis of the SnO2 samples has revealed that the particles are non-uniform
newlinewhile spherical grains have been noticed for both Ni- and Mn- doped SnO2 samples.
newlineFrom UV- visible absorption spectroscopy no variation in band gap is observe