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Miao-Ling Huang

Researcher at Zhejiang Normal University

Publications -  5
Citations -  49

Miao-Ling Huang is an academic researcher from Zhejiang Normal University. The author has contributed to research in topics: Conductance & Break junction. The author has an hindex of 3, co-authored 4 publications receiving 30 citations.

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Achieving Efficient Multichannel Conductance in Through-Space Conjugated Single-Molecule Parallel Circuits

TL;DR: A novel through-space conjugated single-molecule parallel circuit comprised of a pair of closely parallel aligned p -quaterphenyl chains tethered by a vinyl bridge and end-capped with four methylmercapto (SMe) anchors that is an ideal model for understanding electron transport process through parallel π-stacked molecular systems.
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Detecting Electron Transport of Amino Acids by Using Conductance Measurement.

TL;DR: The current work reveals the important role of the anchoring group in the electron transport in different amino acids junctions, which may show that the backbone of NH2–C–COOH is the primary means of electrons transport in the molecular junction of aspartic acid and glutamic acid.
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Side-Group Effect on Electron Transport of Single Molecular Junctions

TL;DR: The investigation of the influence of the nitro side-group on the single molecular conductance of pyridine-based molecules by scanning tunneling microscopy break junction shows the important role of side-groups on the electron transport of single-molecule junctions.
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Conductance Measurement of Pyrazine Molecular Junction with Cu and Ag Electrodes.

TL;DR: The result shows that the conductance of pyrazine with Ag electrode is larger than that with Cu electrode, which can contribute to the different efficiency of electron transport along the molecular junction between Ag and Cu electrodes.
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Iridium nanoclusters for highly efficient p-nitroaniline fluorescence sensor

TL;DR: In this article , a facile strategy was proposed for the preparation of two fluorescent iridium nanoclusters of IrNCs-1 and IrNCS-2 by heating IrCl3 in N,N-dimethylacetamide (DMA) and N-Methylformanilide (MFA), respectively.