Mostrando 581 - 600 Resultados de 5,078 Para Buscar '"transistor"', tiempo de consulta: 1.35s Limitar resultados
  1. 581
    “…The use of field-Effect-Transistor (FET) type biosensing arrangements has been highlighted by researchers in the field of early biomarker detection and drug screening. …”
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  2. 582
    “…In this work, the trapping and de-trapping of photogenerated carriers in the MoS(2)/SiO(2) interface of a n-channel MoS(2) transistor was employed to emulate the optoelectronic synapse characteristics. …”
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  3. 583
    “…Here, we demonstrate accurate control of the emission time statistics of a dynamic single-electron transistor by measuring the waiting times between emitted electrons. …”
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  4. 584
    “…Devices based on organic field effect transistors are promising because they can be fabricated at modest cost and are low power devices. …”
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  5. 585
    “…Here, we report a wearable sensory electronic chip using label-free detection, based on a platinum/graphene aptamer extended gate field effect transistor (EG-FET) for the recognition of cortisol in biological buffers within the Debye screening length. …”
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  6. 586
    “…Here we benchmark device-to-device variation in field-effect transistors (FETs) based on monolayer MoS(2) and WS(2) films grown using metal-organic chemical vapor deposition process. …”
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  7. 587
    “…Carbon nanotube (CNT)-based field-effect transistors (FETs) are novel sensing device configurations and are very promising for their potential to drive many technological advancements in this field due to the extraordinary electrical properties of CNTs. …”
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  8. 588
    “…Semiconductors have long been perceived as a prerequisite for solid-state transistors. Although switching principles for nanometer-scale devices have emerged based on the deployment of two-dimensional (2D) van der Waals heterostructures, tunneling and ballistic currents through short channels are difficult to control, and semiconducting channel materials remain indispensable for practical switching. …”
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  9. 589
    por Tzu, Fu-Ming
    Publicado 2021
    “…The paper presents a typology of electrical open and short defects on thin-film transistors (TFT) using an electrical tester and automatic optical inspection (AOI). …”
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  10. 590
    “…Variation of the organic ink material, solvents, and printing speeds were shown to modulate the multilayer nanostructure of the organic semiconducting and dielectric layers, enabling tuneable optimisation of the transistor response. The optimised printed device exhibits rapid switching from a non-conductive to a conductive state upon application of low pressures whilst operating at very low source-drain voltages (0–5 V), a feature that is often required in applications sensitive to stray electromagnetic signals but is not provided by conventional inorganic transistors and switches. …”
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  11. 591
    “…However, the limitation regarding semiconductor fabrication challenges the mechanical flexibility of thin-film electronics. Thin-Film Transistors (TFTs) are a key component in thin-film electronics that restrict the flexibility of thin-film systems. …”
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  12. 592
    por Shi, Xin, Bao, Weiwei
    Publicado 2021
    “…In this minireview, hydrogen-bonded small molecules and polymers as well as the relationship between their chemical structures and performances in organic field-effect transistors are discussed.…”
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  13. 593
    por Meng, Yanfang, Gao, Guoyun, Zhu, Jiaxue
    Publicado 2021
    “…To achieve lower energy consumption, a promising energy-harvesting style of triboelectric nanogenerators (TENG) is incorporated into the field effect transistors (FETs) to play the important role for sensor. …”
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  14. 594
  15. 595
    “…Such transistors (often referred to as TeraFETs) include short-channel silicon complementary metal oxide (CMOS). …”
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  16. 596
  17. 597
    “…The highly sensitive detection of peanut allergens (PAs) using silicon-based electrolyte-gated transistors (Si-EGTs) was demonstrated. The Si-EGT was made using a top-down technique. …”
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  18. 598
    “…High-performance p-type thin-film transistors (pTFTs) are crucial for realizing low-power display-on-panel and monolithic three-dimensional integrated circuits. …”
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  19. 599
  20. 600
    “…Trapping phenomena degrade the dynamic performance of wide-bandgap transistors. However, the identification of the related traps is challenging, especially in presence of non-ideal defects. …”
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