繁体中文

Enhanced dielectric, electrical, and electro-optic properties: investigation of the interaction of dispersed CdSe/ZnS quantum dots in 8OCB liquid crystals in the intermediate phase

260
2024-03-04 13:52:02
查看翻譯

author
Elsa Lani, Aloka Sinha

abstract
At present, the progress in developing new liquid crystal materials for next-generation applications mainly focuses on improving the physical properties of liquid crystal systems.

Recent research progress has shown that functionalized nanoparticles embedded in LC matrix can significantly alter the properties of LC materials based on the interaction between host molecules and guest particles. In this regard, this study reports the effects of core-shell CdSe/ZnS quantum dot dispersion on the dielectric, electrical, and electro-optical properties of 8OCB LC doped with different concentrations. The doped samples exhibit ion release behavior, and this effect becomes more pronounced when the doping concentration in the liquid chromatography system increases to 0.2 wt%. It is explained that due to the enhanced interaction between QD ligands and rod-shaped LC molecules, quantum dots have obtained the form of growing handle shaped ellipsoids.

Among all the studied samples, significant temperature changes were observed in the diffusion constant, conductivity, ion mobility, and average relaxation time of ions. In addition, the thermal distribution of dielectric anisotropy, threshold voltage, and opening elastic constant all show a decreasing trend, with an increasing doping concentration. The dual relaxation mechanisms of corresponding nematic and dimeric materials were experimentally studied, providing two rotational viscosities in both the original and quantum dot dispersed LC samples. The transmittance voltage curve reveals the presence of residual values in dispersed samples and is related to the volatile memory effect. In the original liquid chromatography system, the photoluminescence intensity of low doped samples was slightly enhanced and further decreased with increasing doping concentration.

All these findings indicate that functionalized quantum dots make a significant contribution to the studied performance in terms of the interaction between LC and doped materials. This study will further elucidate the potential application of quantum dots in future liquid chromatography-based devices and the selection of optimal quantum dot concentrations based on their properties.

Graph Summary

Source: Laser Net

相關推薦
  • Ultra short pulse laser technology shines a sword, winning 3.5 million euros in financing

    Recently, Italian startup Lithium Lasers announced that the company has successfully raised 3.5 million euros in ultra short pulse laser technology.This company, founded in 2019, focuses on developing an ultra short pulse laser (USPL) called FemtoFlash, which is aimed at multiple industries such as aerospace, healthcare, automotive, and consumer electronics, particularly suitable for material proc...

    2024-04-26
    查看翻譯
  • Polyart Launches New Generation Polyart Laser Synthetic Paper

    Polyart has launched a new generation of Polyart laser printers, designed specifically for dry toner printing technology, with a completely improved coating formula and many exciting new advantages. These include reducing nationalism, moisture resistance, and better paper touch.Say hello to the good paper jogging on the printer output. More importantly, our new formula provides better scratch resi...

    2023-11-16
    查看翻譯
  • Researchers have developed the world's smallest silicon chip quantum photodetector

    Researchers at the University of Bristol have made significant breakthroughs in expanding quantum technology by integrating the world's smallest quantum photodetector onto silicon chips. The paper "A Bi CMOS Electron Photon Integrated Circuit Quantum Photodetector" was published in Science Advances.In the 1960s, scientists and engineers were able to miniaturize transistors onto inexpensive microch...

    2024-05-21
    查看翻譯
  • New discoveries bring progress in photon calculation

    International researchers led by Philip Walther from the University of Vienna have made significant breakthroughs in the field of quantum technology, successfully demonstrating quantum interference between multiple single photons using a new resource-saving platform. This work, published in Science Advances, represents a significant advancement in the field of quantum computing and paves the way f...

    2024-04-27
    查看翻譯
  • Sivers Semiconductors, an optoelectronic semiconductor company, splits off its photonics business and goes public independently

    Recently, Sivers Semiconductors, a leading supplier of integrated chips and photonics modules for communication and sensing solutions, announced a significant strategic initiative:It will divest its subsidiary Sivers Photonics Ltd, which has signed a non binding letter of intent (LOI) with byNordic Acquisition Corporation and plans to achieve independent listing through a merger. This move aims ...

    2024-08-26
    查看翻譯