Search Results - "Lam, Jacky W Y"
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Molecular Motion in Aggregates: Manipulating TICT for Boosting Photothermal Theranostics
Published in Journal of the American Chemical Society (03-04-2019)“…Planar donor and acceptor (D–A) conjugated structures are generally believed to be the standard for architecting highly efficient photothermal theranostic…”
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Aggregation-Induced Emission: Together We Shine, United We Soar
Published in Chemical reviews (11-11-2015)Get full text
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Design of AIEgens for near-infrared IIb imaging through structural modulation at molecular and morphological levels
Published in Nature communications (09-03-2020)“…Fluorescence imaging in near-infrared IIb (NIR-IIb, 1500–1700 nm) spectrum holds a great promise for tissue imaging. While few inorganic NIR-IIb fluorescent…”
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Boosting the efficiency of organic persistent room-temperature phosphorescence by intramolecular triplet-triplet energy transfer
Published in Nature communications (08-04-2019)“…Persistent luminescence is a fascinating phenomenon with exceptional applications. However, the development of organic materials capable of persistent…”
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Structural and process controls of AIEgens for NIR-II theranostics
Published in Chemical science (Cambridge) (12-06-2020)“…Aggregation-induced emission (AIE) is a cutting-edge fluorescence technology, giving highly-efficient solid-state photoluminescence. Particularly, AIE…”
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Tuning Organelle Specificity and Photodynamic Therapy Efficiency by Molecular Function Design
Published in ACS nano (22-10-2019)“…Efficient organic photosensitizers (PSs) have attracted much attention because of their promising applications in photodynamic therapy (PDT). However,…”
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Highly efficient photothermal nanoagent achieved by harvesting energy via excited-state intramolecular motion within nanoparticles
Published in Nature communications (15-02-2019)“…The exciting applications of molecular motion are still limited and are in urgent pursuit, although some fascinating concepts such as molecular motors and…”
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Manipulating Solid-State Intramolecular Motion toward Controlled Fluorescence Patterns
Published in ACS nano (25-02-2020)“…Molecules have limited mobility in the solid state because of the strong intermolecular interactions, and therefore, applications based on solid-state…”
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Tuning molecular emission of organic emitters from fluorescence to phosphorescence through push-pull electronic effects
Published in Nature communications (26-05-2020)“…Organic emitters with persistent phosphorescence have shown potential application in optoelectronic devices. However, rational design and phosphorescence…”
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Dramatic Differences in Aggregation-Induced Emission and Supramolecular Polymerizability of Tetraphenylethene-Based Stereoisomers
Published in Journal of the American Chemical Society (26-07-2017)“…Geometric (Z)- and (E)-isomers play important but different roles in life and material science. The design of new (Z)-/(E)- isomers and study of their…”
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Aggregation-Induced Emission: The Whole Is More Brilliant than the Parts
Published in Advanced materials (Weinheim) (20-08-2014)“…“United we stand, divided we fall.”–Aesop.Aggregation‐induced emission (AIE) refers to a photophysical phenomenon shown by a group of luminogenic materials…”
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A Ratiometric Fluorescent Probe Based on ESIPT and AIE Processes for Alkaline Phosphatase Activity Assay and Visualization in Living Cells
Published in ACS applied materials & interfaces (08-10-2014)“…Alkaline phosphatase (ALP) activity is regarded as an important biomarker in medical diagnosis. A ratiometric fluorescent probe is developed based on a…”
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Secondary through-space interactions facilitated single-molecule white-light emission from clusteroluminogens
Published in Nature communications (17-06-2022)“…Clusteroluminogens refer to some non-conjugated molecules that show visible light and unique electronic properties with through-space interactions due to the…”
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Real-Time Monitoring of Hierarchical Self-Assembly and Induction of Circularly Polarized Luminescence from Achiral Luminogens
Published in ACS nano (26-03-2019)“…Constructing artificial helical structures through hierarchical self-assembly and exploring the underlying mechanism are important, and they help gain insight…”
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Highly efficient singlet oxygen generation, two-photon photodynamic therapy and melanoma ablation by rationally designed mitochondria-specific near-infrared AIEgens
Published in Chemical science (Cambridge) (07-03-2020)“…Photosensitizers (PSs) with multiple characteristics, including efficient singlet oxygen ( 1 O 2 ) generation, cancer cell-selective accumulation and…”
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Facile conversion of water to functional molecules and cross-linked polymeric films with efficient clusteroluminescence
Published in Nature communications (30-05-2023)“…Exploring approaches to utilize abundant water to synthesize functional molecules and polymers with efficient clusteroluminescence properties is highly…”
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A dish-like molecular architecture for dynamic ultralong room-temperature phosphorescence through reversible guest accommodation
Published in Nature communications (02-12-2022)“…Developing dynamic organic ultralong room-temperature phosphorescent (URTP) materials is of practical importance in various applications but remains a…”
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Integration of AIEgens into covalent organic frameworks for pyroptosis and ferroptosis primed cancer immunotherapy
Published in Nature communications (02-09-2023)“…Immunogenic programmed cell death, such as pyroptosis and ferroptosis, efficiently induces an acute inflammatory response and boosts antitumor immunity…”
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Restriction of Intramolecular Motions: The General Mechanism behind Aggregation-Induced Emission
Published in Chemistry : a European journal (17-11-2014)“…Aggregation‐induced emission (AIE) has been harnessed in many systems through the principle of restriction of intramolecular rotations (RIR) based on…”
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Aggregation-Induced Emission: A Trailblazing Journey to the Field of Biomedicine
Published in ACS applied bio materials (17-12-2018)“…The emergence of the aggregation-induced emission (AIE) concept significantly changes the cognition of the scientific community toward classic photophysical…”
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