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Showing 1 to 20 of 104 for “"Electronic Applications"”.

  1. Two-dimensional materials for electronic applications

    … attracted great interest to search for potential applications of this unique material and other members of the two-dimensional materials family in electronics, optoelectronics and their interface with the biological systems. At this early stage of 2D materials research, many opportunities and …

    mit Repository record for Two-dimensional materials for electronic applications (opens in a new tab)

  2. Two-dimensional crystals : spectroscopy and electronic applications

    … for next generation of ultrafast and ubiquitous electronics. One critical distinction between 2D crystals and 3D crystals is that 2D crystals are all-surface materials. Therefore, it is essential to understand how 2D materials interact with their environments and how this interaction impacts …

    mit Repository record for Two-dimensional crystals : spectroscopy and electronic applications (opens in a new tab)

  3. Novel Quantum Materials for Spintronic and Opto-Electronic Applications

    … role in the development of spintronics and opto-electronics, as their properties can greatly influence device performance. For instance, in spintronics, materials such as ferromagnetic half-metals, Giant Magnetoresistants (GMR), and magnetic semiconductors have been extensively studied due to …

    must-thes Repository record for Novel Quantum Materials for Spintronic and Opto-Electronic Applications (opens in a new tab)

  4. Single-crystal growth of organic semiconductors and organic electronic applications

    … growth of organic semiconductors and their applications in organic electronics. In Chapter 2, a self-assembled monolayer of C60 derivatives with five carboxylic acids was employed to make C60 thin-film transistors. The highly-crystalline C60 monolayer enabled more ordered deposition of C60 …

    columbia-diss Repository record for Single-crystal growth of organic semiconductors and organic electronic applications (opens in a new tab)

  5. Metal-assisted chemical etching of semiconductor nanostructures for electronic applications

    … has attracted tremendous attention in device applications such as light emitting diodes, solar cells, biosensors, supercapacitors, thermo-electrics, and 2.5 D and 3D transistors. The detailed research on MacEtch has been accomplished by many researchers since its discovery by Li and Bohn in …

    uiuc Repository record for Metal-assisted chemical etching of semiconductor nanostructures for electronic applications (opens in a new tab)

  6. Translating semiconductor device physics into nanoparticle films for electronic applications

    … of semiconductor nanocrystal quantum dot (QD) electronic devices, and photovoltaic devices in particular. This involves a variety of characterization techniques and their adaptations, as well as careful evaluation of their results to assure the validity of assumptions. Chapter 1 provides an …

    mit Repository record for Translating semiconductor device physics into nanoparticle films for electronic applications (opens in a new tab)

  7. Commercialization of silicon on lattice-engineered substrate for electronic applications

    … Monolithic integration of Si devices with III-V electronic devices using SOLES could be used to produce single chip wireless IC, catering the need of the most prosperous consumer markets, the mobile phone market and the WLAN/WMAN/WWAN wireless connectivity market. A cost model has been developed …

    mit Repository record for Commercialization of silicon on lattice-engineered substrate for electronic applications (opens in a new tab)

  8. Polycyclic Aromatic Hydrocarbon (PAH)-Based Conjugated Macrocycles and Polymers For Electronic Applications

    … for the assembly of conjugated systems for electronic applications. The body of this dissertation focuses on the synthesis, structure-property and device studies of PAH-based conjugated systems, including PAH–based conjugated macrocycles, conjugated polymers and conjugated foldamers. Novel …

    umkc Repository record for Polycyclic Aromatic Hydrocarbon (PAH)-Based Conjugated Macrocycles and Polymers For Electronic Applications (opens in a new tab)

  9. Theory and simulations of low-dimensional flexible materials toward nano-electronic applications

    … dimension) that can be used for nanotechnology applications. In recent years, there has been a flurry of experimental and theoretical activities aimed at exploring topological insulators in classical contexts. The aim is to develop novel types of robustness within optical and mechanical …

    mit Repository record for Theory and simulations of low-dimensional flexible materials toward nano-electronic applications (opens in a new tab)

  10. Evaluating Thermal and Mechanical Properties of Electrically Conductive Adhesives for Electronic Applications

    … of electrically conductive adhesives for electronic interconnection applications. Three model conductive adhesives, designated as ECA1, ECA2 and ECA3, supplied by Emerson & Cuming, were investigated, in conjunction with printed circuit board (PCB) substrates with metallizations of Au/Ni/Cu …

    vt Repository record for Evaluating Thermal and Mechanical Properties of Electrically Conductive Adhesives for Electronic Applications (opens in a new tab)

  11. Small molecules based on novel electron-deficient acceptor units for organic electronic applications

    … unit and how they have been used for different applications including ambipolar OFETs and both donor and acceptor materials for bulk heterojunction OPV devices.A study in improving the mobility of OFET devices is presented in chapter 4. Different inorganic nanoparticles were added to organic …

    strathclyde Repository record for Small molecules based on novel electron-deficient acceptor units for organic electronic applications (opens in a new tab)

  12. Chemical vapor deposition of conjugated polymeric thin films for photonic and electronic applications

    (cont.) Conjugated polymers have delocalized electrons along the backbone, facilitating electrical conductivity. As thin films, they are integral to organic semiconductor devices emerging in the marketplace, such as flexible displays and plastic solar cells, as well as next-generation microphotonic …

    mit Repository record for Chemical vapor deposition of conjugated polymeric thin films for photonic and electronic applications (opens in a new tab)

  13. Van der Waals Heterostructures and 2D Materials with Native Oxide for Emerging Electronic Applications

    … (ILX) by reducing the hybridisation of the electronic states between the two 2D layers. In addition, the interface between the semiconductor and oxide in oxidised HfS2 and GaS is probed using complementary characterisation techniques. The results clearly demonstrate the role of the oxidation …

    cambridge Repository record for Van der Waals Heterostructures and 2D Materials with Native Oxide for Emerging Electronic Applications (opens in a new tab)

  14. Functional Oxides in Optical and Electronic Applications by Atmospheric Pressure Spatial Chemical Vapour Deposition

    Oxide thin films possess a variety of electronic, optical, and magnetic properties, making them valuable in multiple fields, particularly in electronics and memory technology. These thin films are used in resistive random-access memory (RRAM) due to their ability to alter resistance states, which …

    cambridge Repository record for Functional Oxides in Optical and Electronic Applications by Atmospheric Pressure Spatial Chemical Vapour Deposition (opens in a new tab)

  15. Projection of TaSiOx/In0.53Ga0.47As Tri-gate transistor performance for future Low-Power Electronic Applications

    … and voltage scaling required for low-power electronic operation without degradation of device characteristics, the adoption of alternate channel materials with low bandgap with superior transport properties will play a crucial role to improve the computation ability of the standard …

    vt Repository record for Projection of TaSiOx/In0.53Ga0.47As Tri-gate transistor performance for future Low-Power Electronic Applications (opens in a new tab)

  16. Heteroepitaxial Ge on Si via High-Bandgap III-V Buffers for Low-Power Electronic Applications

    … and voltage scaling required for low-power electronic operation without the degradation of transistor drive current requires the adoption of narrow bandgap channel materials with superior transport properties. However, the use of such materials as bulk substrates remains cost-prohibitive. …

    vt Repository record for Heteroepitaxial Ge on Si via High-Bandgap III-V Buffers for Low-Power Electronic Applications (opens in a new tab)

  17. Characterization of Graphene Field-Effect Transistors for High Performance Electronics

    … limits achievable bandgaps, preventing digital electronic applications. This, however, does not rule out analog electronic applications at high frequencies, where the full potential of improved carrier speeds in graphene can be exploited. In this thesis, the high-bias characteristics of graphene …

    columbia-diss Repository record for Characterization of Graphene Field-Effect Transistors for High Performance Electronics (opens in a new tab)

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