![]() Sio2 and zno core shell driver#Here are some applications of transparent displays: displaying driver related information on the windscreen to enhance the driver’s precision and comfort 1, 2, displaying advertisement on shop front windows or displaying information on eye glasses including entertainment purposes. The ability to display photos and texts on a transparent display would have attractive and useful applications. Transparent displays are ‘see-through’ screens: a person can simultaneously view both the graphics on the screen and real-world content. The results were compared to the experimental data and show a high accordance. To shed light on the impact of the structure on the optical properties Si-SiO 2 and Ag nanomaterials representing perfect arrays of nanoparticles, quasi-arrays and randomly oriented nanoparticles were calculated/simulated using the finite-difference time-domain (FDTD) method. The composite thin film can be also separated from the glass and can be used as a flexible display. Importantly, the texts and pictures can be well presented on both sides of the fabricated monitor. This monitor reveals very attractive features such as simplicity, wide viewing angle, scalability to larger sizes and low cost. A video projector was used and text and pictures were sent on the monitor. After drying the film, the typical features representing a transparent monitor were studied. ![]() For the fabrication of a blue color transparent monitor the solution processed Si-SiO 2 nanoparticles were dispersed in polystyrene and then coated on a transparent glass surface. ![]() For this purpose, the Si-SiO 2 nanoparticles were synthesized and with controlling the size of particles, the dominant emission wavelength was controlled. In this monitor, a quasi-array of nanoparticles was used to obtain a very sharp scattering profile. A novel type of transparent monitor with high-resolution images based on Si-SiO 2 core-shell nanoparticles is presented in this contribution. ![]()
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