材料科学
纳米流体学
纳米技术
氮化硼
纳米光子学
纳米
纳米尺度
电介质
六方氮化硼
光电子学
石墨烯
复合材料
作者
Nathan Ronceray,Yi You,Evgenii Glushkov,Martina Lihter,Benjamin Rehl,Tzu‐Heng Chen,Gwang‐Hyeon Nam,F. Borza,Kenji Watanabe,Takashi Taniguchi,Sylvie Roke,Ashok Keerthi,Jean Comtet,Boya Radha,Aleksandra Rađenović
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2023-08-31
卷期号:22 (10): 1236-1242
被引量:19
标识
DOI:10.1038/s41563-023-01658-2
摘要
Liquids confined down to the atomic scale can show radically new properties. However, only indirect and ensemble measurements operate in such extreme confinement, calling for novel optical approaches that enable direct imaging at the molecular level. Here we harness fluorescence originating from single-photon emitters at the surface of hexagonal boron nitride for molecular imaging and sensing in nanometrically confined liquids. The emission originates from the chemisorption of organic solvent molecules onto native surface defects, revealing single-molecule dynamics at the interface through the spatially correlated activation of neighbouring defects. Emitter spectra further offer a direct readout of the local dielectric properties, unveiling increasing dielectric order under nanometre-scale confinement. Liquid-activated native hexagonal boron nitride defects bridge the gap between solid-state nanophotonics and nanofluidics, opening new avenues for nanoscale sensing and optofluidics.
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