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■ Abbreviation / Long Form : NiR / Nile red

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Total Number of Papers: 14
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Abbreviation:   NiR  (>> Co-occurring Abbreviation)
Long Form:   Nile red
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No. Year Title Co-occurring Abbreviation
2022 An Artificial Light-Harvesting System with Controllable Efficiency Enabled by an Annulene-Based Anisotropic Fluid. LC
2022 Coemissive luminescent nanoparticles combining aggregation-induced emission and quenching dyes prepared in continuous flow. CEAA, FRET, NPs, TPE
2022 Construction of an Artificial Light-Harvesting System with Efficient Photocatalytic Activity in an Aqueous Solution Based on a FRET-Featuring Metallacage. FRET, LHSs, TPE
2022 Emissive Platinum(II) Macrocycles as Tunable Cascade Energy Transfer Scaffolds. ESY
2022 Fluorescent TPE Macrocycle Relayed Light-Harvesting System for Bright Customized-Color Circularly Polarized Luminescence. BDA, CPL, TPE, TPEM
2022 Highly Efficient Artificial Light-Harvesting Systems Constructed in an Aqueous Solution Based on Twisted Cucurbit[14]Uril. RB
2022 Novel Strategy of Constructing Artificial Light-Harvesting System with Two-Step Sequential Energy Transfer for Efficient Photocatalysis in Water. CDC, EY, PPTA, WP5
2021 The Preparation of a Water-Soluble Phospholate-Based Macrocycle for Constructing Artificial Light-Harvesting Systems. CTX, ESY, NPs, WPCTX
2021 Uncommon Supramolecular Phosphorescence-Capturing Assembly Based on Cucurbit[8]uril-Mediated Molecular Folding for Near-Infrared Lysosome Imaging. NiB, RTP
10  2019 A Supramolecular Artificial Light-Harvesting System with Two-Step Sequential Energy Transfer for Photochemical Catalysis. ESY, TPEDA, WP5
11  2019 Fabricating a fluorescence resonance energy transfer system with AIE molecular for sensitive detection of Cu(II) ions. AIE, FRET
12  2018 Achieving highly sensitive detection of Cu2+ based on AIE and FRET strategy in aqueous solution. AIE, FRET
13  2018 Highly Efficient Artificial Light-Harvesting Systems Constructed in Aqueous Solution Based on Supramolecular Self-Assembly. ESY, WP6
14  2017 A Supramolecular Artificial Light-Harvesting System with an Ultrahigh Antenna Effect. OPV-I, SCD