Publications by authors named "Chuan-Wei Kuo"

Organic thin-film transistors (OTFTs), benefiting from a low-temperature process (≤120 °C), offer a promising approach for the monolithic integration of MicroLED structures through organic-last integration. Previous research has demonstrated that small-molecule/polymer binder-based organic semiconductor deposition, utilizing the vertical phase separation mechanism, can achieve good device uniformity while preserving high field-effect carrier mobility. However, the stability of OTFTs under light exposure at the device level remains underexplored.

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Background: Medical records are a valuable source for understanding patient health conditions. Doctors often use these records to assess health without solely depending on time-consuming and complex examinations. However, these records may not always be directly relevant to a patient's current health issue.

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Acupuncture manipulation with needling direction is important for the therapeutic effect based on traditional Chinese medicine theory. However, there is controversy over directional manipulation and therapeutic effect, despite some research showing that acupuncture manipulations may have something to do with therapeutic effect. Moreover, research usually focuses on the therapeutic effects on the acupoints and acupuncture time rather than exploring the manipulation method.

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Meridians constitute the theoretical foundation of acupuncture in traditional Chinese medicine (TCM), and they have been described for 2000 years. Classical TCM advocates for the directionality of meridians. Finding an accurate method to verify this directionality is an important goal of TCM doctors and researchers.

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Article Synopsis
  • This study examines how moisture affects the electrical properties of amorphous In-Ga-Zn-O thin-film transistors (a-IGZO TFTs), which are crucial for stable performance in humid environments.
  • It highlights that water electrolysis under the influence of electric fields causes hydrogen to diffuse into the transistor's channel, leading to negative shifts in threshold voltage, especially in shorter devices.
  • The research proposes a new model to explain these electrical changes and suggests that minimizing the tip electric field could improve future applications in flexible displays and gas sensors.
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