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- W2904766678 endingPage "397" @default.
- W2904766678 startingPage "389" @default.
- W2904766678 abstract "Abstract The field of nanopore sensing at the single‐molecular level is in a “boom” period. Such nanopores, which are either composed of biological materials or are fabricated from solid‐state substrates, offer a unique confined space that is compatible with the single‐molecular scale. Under the influence of an electrical field, such single‐biomolecular interfaces can read single‐molecular information and, if appropriately fine‐tuned, each molecule plays its individual ionic rhythm to compose a “molecular symphony”. Over the past few decades, many research groups have worked on nanopore‐based single‐molecular sensors for a range of thrilling chemical and clinical applications. Furthermore, for the past decade, we have also focused on nanopore‐based sensors. In this Minireview, we summarize the recent developments in fundamental research and applications in this area, along with data algorithms and advances in hardware, which act as infrastructure for the electrochemical analysis." @default.
- W2904766678 created "2018-12-22" @default.
- W2904766678 creator A5034885015 @default.
- W2904766678 creator A5072202107 @default.
- W2904766678 creator A5079672191 @default.
- W2904766678 creator A5088467749 @default.
- W2904766678 date "2019-01-11" @default.
- W2904766678 modified "2023-10-09" @default.
- W2904766678 title "Nanopore‐Based Confined Spaces for Single‐Molecular Analysis" @default.
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