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連續聚合酶鏈反應微流體結合金奈米狹縫感測晶片用於Epstein-Barr病毒檢測 | ||||||
Continuous polymerase chain reaction microfluidics integrated with a gold-capped nanoslit sensing chip for Epstein-Barr virus detection | ||||||
中研院魏培坤教授團隊與國立臺灣大學沈弘俊教授團隊合作成功開發了一個結合DNA複製和檢測的微流控平台。此裝置可以在前端擴增基因片段,並在後端進行檢測,減少了分析所需的時間,且不會影響精確度或靈敏度。……。 【閱讀全文】 |
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A joint research team led by Academia Sinica Professor Wei Pei-Kuen and National Taiwan University Professor Sheen Horn-Jiunn has successfully developed a microfluidic platform that combines DNA replication and detection. This device can amplify gene fragments at the front end and detect them at the back end, reducing the time required for analysis without compromising accuracy or sensitivity. .……. |
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運用非交互且非線性傳輸效應揭示拓撲物質系統的表面電子態 | ||||||
Revealing topological surface states via nonreciprocal and nonlinear transport effects | ||||||
在拓撲系統中,非平凡拓撲的本體電子能帶與其引致之特殊表面電子態有著相互對應連結的關係,而如何從實驗中找尋表面電子態傳輸的特徵效應為一極具挑戰的議題。例如在拓撲外爾(Weyl)半金屬中,獨特的費米弧表面電子態在動量空間中連接了在表面上非重疊的外爾節點對(Weyl-node pair)。……。 【閱讀全文】 |
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One of the challenging subjects in topological systems is to identify the charge transport signatures associated with the unusual surface states due to nontrivial bulk band topology. In a topological Weyl semimetal, there exist unique Fermi-arc surface states connecting non-overlapping bulk Weyl-node pair projected on a surface, .……. |
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實現二維材料自旋閥中的高品質界面 | ||||||
Realizing high-quality interfaces in 2D material spin valves | ||||||
自旋電子學是一項利用電子自旋與磁矩來創新電子設備的技術,它被期待能夠提升電子元件的性能、效率以及可擴展性。自旋閥是自旋電子學的基礎元件,其結構包含兩側的鐵磁層以及中間有一非磁性間隔層,透過外部磁場調整鐵磁層的自旋方向可以造成磁阻改變,越高的磁阻變化率可以提高電子元件的靈敏度與性能。……。 【閱讀全文】 |
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Spintronics is a developing technology that uses the electron's spin and magnetic moment to revolutionize electronic devices. This technology aims to boost future electronics' performance, efficiency, and scalability. A crucial component in spintronic devices is the spin valve, which consists of a nonmagnetic spacer between two ferromagnetic layers. …… |
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