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Combining Optical Transparency with Electrical Conductivity...
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TRANSPARENT ELECTRONICS
INTRODUCTION • INVISIBLE ELECTRONICS • TRANSPARENT CONDUCTING OXIDE (TCO) • (In2O3, SnO2, CdO, ZnO ) • DRAMATICAL CHANGE IN THE LOOK AND USE • OF ELECTRONIC DEVICES
COMBINING OPTICAL TRANSPARENCY WITH ELECTRICAL CONDUCTIVITY • DEGENERATE DOPING • BURSTEIN - MOSS(BM) SHIFT
FACTORS CAUSING ADVERSE EFFECT • INTER-BAND AND INTRA- BAND TRANSITIONS • PLASMA OSCILLATIONS • IONIZED IMPURITY SCATTERING
ELECTRICAL PROPERTIES OF TCO • SIMILAR CHEMICAL, STRUCTURAL AND ELECTRONIC PROPERTIES • POST TRANSITION METALS • INTERACTION BETWEEN THE S ORBIT OF METALS AND P ORBIT OF OXYGEN
CARRIER GENERATION IN TCO TWO METHODS:- • SUBSTITUTIONAL DOPING • OXYGEN REDUCTION
SUBSTITUTIONAL DOPING • DOPING WITH ALIOVALENT IONS • DOPING WITH GROUP III, IV AND VII ELEMENTS • ELECTRON VELOCITY AND DENSITY AT FERMI LEVEL RESULT IN THE TREND In>Y>Sc>Ga
OXYGEN REDUCTION • REMOVAL OF OXYGEN ATOM FROM A METAL OXIDE • RELATIVELY UNIFORM CHARGE DENSITIES • FORMATION OF F-CENTER IN LIGHT METAL OXIDES
TRANSPARENT ELECTRONIC DEVICES • SELECTION, DESIGN, SIMULATION, FABRICATION, INTEGRATION, CHARACTERIZATION AND OPTIMIZATION • PASSIVE, LINEAR DEVICES • TWO TERMINAL ELECTRONIC DEVICES • TRANSPARNT THIN-FILM TRANSISTORS (TTFTs)
TRANSPARENT THIN FILM CAPACITORS TTFI(INDUCTOR)
APPLICATIONS LAPTOPS MOBILE PHONES TRANSPARENT CONDUCTORS TRANSPARENT WASHER SOLAR PANELS
FUTURE SCOPE • SOLAR WINDOWS • IMPROVING STABILITY OF TRANSPARENT SOLAR CELLS • TECHNOLOGICAL ADVANCES
CONCLUSION AND REMARKS • GREAT IMPACT ON HUMAN MACHINE INTERACTION • LEAD TO NEW APPLICATIONS • CAUSE ENVIORNMENTAL CHALLENGES AS CURRENTLY USING EC DEVICE