Publications
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Chen, Y., Lam, J. W. Y., Kwok, R. , Liu, B., & Tang, B. (2019). Aggregation-induced emission: fundamental understanding and future developments. Materials Horizons, 6(3), 428–433. doi: 10.1039/c8mh01331d |
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Niu, G., Zhang, R., Gu, Y., Wang, J., Ma, C., Kwok, R. , Tang, B. (2019). Highly photostable two-photon NIR AIEgens with tunable organelle specificity and deep tissue penetration. Biomaterials, 208, 72-82. doi:10.1016/j.biomaterials.2019.04.002 |
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Liu, B., He, W., Lu, H., Wang, K., Huang, M., Kwok, R., Tang, B. (2019). A facile design for multifunctional AIEgen based on tetraaniline derivatives. Science China Chemistry, 62(6), 732–738. doi: 10.1007/s11426-018-9440-0 |
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Wang, Z., Zhang, P., Liu, H., Zhao, Z., Xiong, L., He, W.,Kwok, R.; Tang, B. (2019). Robust Serum Albumin-Responsive AIEgen Enables Latent Bloodstain Visualization in High Resolution and Reliability for Crime Scene Investigation. ACS Applied Materials & Interfaces, 11(19), 17306–17312. doi: 10.1021/acsami.9b04269 |
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Zhang, T., Li, Y., Zheng, Z., Ye, R., Zhang, Y., Kwok, R., … Tang, B. (2019). In Situ Monitoring Apoptosis Process by a Self-Reporting Photosensitizer. Journal of the American Chemical Society, 141(14), 5612–5616. doi: 10.1021/jacs.9b00636 |
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He, X., Yin, F., Wang, D., Xiong, L.-H., Kwok, R., Gao, P. F., … Tang, B. (2019). AIE Featured Inorganic–Organic Core@Shell Nanoparticles for High-Efficiency siRNA Delivery and Real-Time Monitoring. Nano Letters, 19(4), 2272–2279. doi: 10.1021/acs.nanolett.8b04677 |
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Alam, P., Leung, N. L. C., Cheng, Y., Zhang, H., Liu, J., Wu, W.,Kwok, R. , Tang, B. (2019). Spontaneous and Fast Molecular Motion at Room Temperature in the Solid State. Angewandte Chemie, 131(14), 4584–4588. doi: 10.1002/ange.201813554 |
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Cheng, Y., Liu, S., Song, F., Khorloo, M., Zhang, H., Kwok, R., … Tang, B. (2019). Facile emission color tuning and circularly polarized light generation of single luminogen in engineering robust forms. Materials Horizons, 6(2), 405–411. doi: 10.1039/c8mh01092g |
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He, X., Xiong, L.-H., Zhao, Z., Wang, Z., Luo, L., Lam, J. W. Y.,Kwok, R. , Tang, B. (2019). AIE-based theranostic systems for detection and killing of pathogens. Theranostics, 9(11), 3223–3248. doi: 10.7150/thno.31844 |
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Wei, P., Li, Z., Zhang, J.-X., Zhao, Z., Xing, H., Tu, Y., Kwok, R., Tang, B. (2019). Molecular Transmission: Visible and Rate-Controllable Photoreactivity and Synergy of Aggregation-Induced Emission and Host–Guest Assembly. Chemistry of Materials, 31(3), 1092–1100. doi: 10.1021/acs.chemmater.8b04909 |
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Zhang, P., Jiang, T., Li, Y., Zhao, Z., Gong, P., Cai, L.,Kwok, R., Tang, B. (2018). Bio-orthogonal AIE Dots Based on Polyyne-Bridged Red-emissive AIEgen for Tumor Metabolic Labeling and Targeted Imaging. Chemistry – An Asian Journal, 14(6), 770–774. doi: 10.1002/asia.201801609 |
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Ni, J.-S., Lee, M. M. S., Zhang, P., Gui, C., Chen, Y., Wang, D.,Kwok, R., Tang, B. (2018). SwissKnife-Inspired Multifunctional Fluorescence Probes for Cellular Organelle Targeting Based on Simple AIEgens. Analytical Chemistry, 91(3), 2169–2176. doi: 10.1021/acs.analchem.8b04736 |
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Ni, J. S., Zhang, P., Jiang, T., Chen, Y., Su, H., Wang, D.,Kwok, R., Tang, B. (2018). Red/NIR-Emissive Benzo[ d ]imidazole-Cored AIEgens: Facile Molecular Design for Wavelength Extending and In Vivo Tumor Metabolic Imaging. Advanced Materials, 30(50), 1805220. doi: 10.1002/adma.201805220 |
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Zhang, H., Zheng, X., Kwok, R. T, Wang, J., Leung, N. L. C., Shi, L., … Tang, B. (2018). In situ monitoring of molecular aggregation using circular dichroism. Nature Communications, 9(1). doi: 10.1038/s41467-018-07299-3 |
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Dang, D., Liu, H., Wang, J., Chen, M., Liu, Y., Sung, Kwok, R. , H. H.-Y., … Tang, B. (2018). Highly Emissive AIEgens with Multiple Functions: Facile Synthesis, Chromism, Specific Lipid Droplet Imaging, Apoptosis Monitoring, and In Vivo Imaging. Chemistry of Materials, 30(21), 7892–7901. doi: 10.1021/acs.chemmater.8b03495 |
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Dang, D., Wang, Z., Liu, K., Kwok, R. ,Liu, Y., Sung, H. H. Y., Williams, I. D., … Tang, B.(2018). Manipulating the Molecular Backbone to Achieve Highly Emissive Sky-Blue AIEgens and Their Applications in Nondoped Organic Light-Emitting Diodes. Advanced Electronic Materials, 4(11), 1800354. doi: 10.1002/aelm.201800354 |
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Chen, M., Hu, X., Liu, J., Li, B., Leung, N. L. C., Viglianti, L.,Kwok, R. , … Tang, B. (2018). Rational design of red AIEgens with a new core structure from non-emissive heteroaromatics. Chemical Science, 9(40), 7829–7834. doi: 10.1039/c8sc02810a |
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Li, Y., Zhao, Z., Zhang, J., Kwok, R. , Xie, S., Tang, R., … Tang, B. (2018). A Bifunctional Aggregation-Induced Emission Luminogen for Monitoring and Killing of Multidrug-Resistant Bacteria. Advanced Functional Materials, 28(42), 1804632. doi: 10.1002/adfm.201804632 |
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Xiong, L.-H., He, X., Zhao, Z., Kwok, R. , Xiong, Y., Gao, P. F., … Tang, B. (2018). Ultrasensitive Virion Immunoassay Platform with Dual-Modality Based on a Multifunctional Aggregation-Induced Emission Luminogen. ACS Nano, 12(9), 9549–9557. doi: 10.1021/acsnano.8b05270 |
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Feng, X., Li, Y., He, X., Liu, H., Zhao, Z., Kwok, R. , … Tang, B. (2018). A Substitution-Dependent Light-Up Fluorescence Probe for Selectively Detecting Fe3 Ions and Its Cell Imaging Application. Advanced Functional Materials, 28(35), 1802833. doi: 10.1002/adfm.201802833 |
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Gu, Y., Zhao, Z., Su, H., Zhang, P., Liu, J., Niu, G., Kwok, R. ,… Tang, B. (2018). Exploration of biocompatible AIEgens from natural resources. Chemical Science, 9(31), 6497–6502. doi: 10.1039/c8sc01635f |
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Qi, J., Sun, C., Li, D., Zhang, H., Yu, W., Zebibula, A., Kwok, R. , … Tang, B. (2018). Aggregation-Induced Emission Luminogen with Near-Infrared-II Excitation and Near-Infrared-I Emission for Ultradeep Intravital Two-Photon Microscopy. ACS Nano, 12(8), 7936–7945. doi: 10.1021/acsnano.8b02452 |
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Zheng, Z., Zhang, T., Liu, H., Chen, Y., Kwok, R. , Ma, C., … Tang, B. (2018). Bright Near-Infrared Aggregation-Induced Emission Luminogens with Strong Two-Photon Absorption, Excellent Organelle Specificity, and Efficient Photodynamic Therapy Potential. ACS Nano, 12(8), 8145–8159. doi: 10.1021/acsnano.8b03138 |
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Cai, X., Hu, F., Feng, G., Kwok, R. , Liu, B., & Tang, B. (2018). Organic Mitoprobes based on Fluorogens with Aggregation-Induced Emission. Israel Journal of Chemistry, 58(8), 860–873. doi: 10.1002/ijch.201800031 |
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Niu, G., Zhang, R., Kwong, J. P. C., Lam, J. W. Y., Chen, C., Wang, J., Kwok, R. , … Tang, B. (2018). Specific Two-Photon Imaging of Live Cellular and Deep-Tissue Lipid Droplets by Lipophilic AIEgens at Ultralow Concentration. Chemistry of Materials, 30(14), 4778–4787. doi: 10.1021/acs.chemmater.8b01943 |
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Feng, X., Qi, C., Feng, H.-T., Zhao, Z., Sung, H. H. Y., Williams, I. D., Kwok, R. ,… Tang, B. (2018). Dual fluorescence of tetraphenylethylene-substituted pyrenes with aggregation-induced emission characteristics for white-light emission. Chemical Science, 9(25), 5679–5687. doi: 10.1039/c8sc01709c |
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Huang, H., Qiu, Z., Han, T., Kwok, R., Lam, J. and Tang, B. (2017). Synthesis of Functional Poly(propargyl imine)s by Multicomponent Polymerizations of Bromoarenes, Isonitriles, and Alkynes. ACS Macro Letters, 6(12), pp.1352-1356. doi:10.1021/acsmacrolett.7b00872 |
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Zhang, P., Zhao, Z., Li, C., Su, H., Wu, Y., Kwok, R., Lam, J., Gong, P., Cai, L. and Tang, B. (2017). Aptamer-Decorated Self-Assembled Aggregation-Induced Emission Organic Dots for Cancer Cell Targeting and Imaging. Analytical Chemistry, 90(2), pp.1063-1067. doi:10.1021/acs.analchem.7b03933. |
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Jiang, M., Gu, X., Kwok, R., Li, Y., Sung, H., Zheng, X., Zhang, Y., Lam, J., Williams, I., Huang, X., Wong, K. and Tang, B. (2017). Multifunctional AIEgens: Ready Synthesis, Tunable Emission, Mechanochromism, Mitochondrial, and Bacterial Imaging. Advanced Functional Materials, 28(1), p.1704589. doi:10.1002/adfm.201704589 |
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Chen, M., Chen, R., Shi, Y., Wang, J., Cheng, Y., Li, Y., Gao, X., Yan, Y., Sun, J., Qin, A., Kwok, R., Lam, J. and Tang, B. (2017). Malonitrile-Functionalized Tetraphenylpyrazine: Aggregation-Induced Emission, Ratiometric Detection of Hydrogen Sulfide, and Mechanochromism. Advanced Functional Materials, 28(6), p.1704689. doi:10.1002/adfm.201704689 |
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Zhang, W., Yu, C., Kwok, R., Lam, J. and Tang, B. (2018). A photostable AIE Luminogen with Near Infrared Emission for Monitoring Morphological Change of Plasma Membrane. Journal of Materials Chemistry B, 6(10), pp.1501-1507. doi:10.1039/c7tb02947k |
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Qin, W., Zhang, P., Li, H., Lam, J., Cai, Y., Kwok, R., Qian, J., Zheng, W. and Tang, B. (2018). Ultrabright Red AIEgens for Two-photon Vascular Imaging with High Resolution and Deep Penetration. Chemical Science, 9(10), pp.2705-2710. doi:10.1039/c7sc04820c |
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Qi, J., Sun, C., Zebibula, A., Zhang, H., Kwok, R., Zhao, X., Xi, W., Lam, J., Qian, J. and Tang, B. (2018). Real-Time and High-Resolution Bioimaging with Bright Aggregation-Induced Emission Dots in Short-Wave Infrared Region. Advanced Materials, 30(12), p.1706856. doi:10.1002/adma.201706856 |
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Dang, D., Qiu, Z., Han, T., Liu, Y., Chen, M., Kwok, R., Lam, J. and Tang, B. (2018). 1 + 1 >> 2: Dramatically Enhancing the Emission Efficiency of TPE-Based AIEgens but Keeping their Emission Color through Tailored Alkyl Linkages. Advanced Functional Materials, 28(16), p.1707210. doi:10.1002/admf.201707210 |
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Chen, Y., Zhang, W., Zhao, Z., Cai, Y., Gong, J., Kwok, R., Lam, J., Sung, H., Williams, I. and Tang, B. (2018). An Easily Accessible Ionic Aggregation-Induced Emission Luminogen with Hydrogen-Bonding-Switchable Emission and Wash-Free Imaging Ability. Angewandte Chemie International Edition, 57(18), pp.5011-5015. doi:10.1002/anie.201800772 |
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Jiang, M., Kwok, R., Li, X., Gui, C., Lam, J., Qu, J. and Tang, B. (2018). A Simple Mitochondrial Targeting AIEgen for Image-guided Two-Photon Excited Photodynamic Therapy. The Royal Society of Chemistry, 17(6), pp.2557-2565. doi: 10.1039/C7TB02609A |
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Gao, Q., Qiu, Z., Elsegood, M., Chen, M., Wang, J., Kwok, R., Lam, J. and Tang, B. (2018). Regio- and Stereoselective Polymerization of Diynes with Inorganic Comonomer: A Facile Strategy to Conjugated Poly(p-arylene dihalodiene)s with Processability and Postfunctionalizability. Macromolecules, 51(9), pp.3497-3503. doi:10.1021/acs.macromol.8b00435 |
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Qi, J., Chen, C., Zhang, X., Hu, X., Ji, S., Kwok, R., Lam, J., Ding, D. and Tang, B. (2018).Light-driven Transformable Optical Agent with Adaptive Functions for Boosting Cancer Surgery Outcomes. Nature Communications, 9(1). doi:10.1038/s41467-018-04222-8 |
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He, X., Zhao, Z., Xiong, L., Gao, P., Peng, C., Li, R., Xiong, Y., Li, Z., Sung, H., Williams, I., Kwok, R., Lam, J., Huang, C., Ma, N. and Tang, B. (2018). Redox-Active AIEgen-Derived Plasmonic and Fluorescent Core@Shell Nanoparticles for Multimodality Bioimaging. Journal of the American Chemical Society, 140(22), pp.6904-6911. doi: 10.1021/jacs.8b02350 |
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Kang, M., Kwok, R., Wang, J., Zhang, H., Lam, J., Li, Y., Zhang, P., Zou, H., Gu, X., Li, F. and Tang, B. (2018). A Multifunctional Luminogen with Aggregation-induced Emission Characteristics for Selective Imaging and Photodynamic Killing of both Cancer Cells and Gram-positive Bacteria. Journal of Materials Chemistry B, 6(23), pp.3894-3903. doi:10.1039/c8tb00572a |
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Gu, X., Kwok, R., Lam, J. and Tang, B. (2017). AIEgens for Biological Process Monitoring and Disease Theranostics. Biomaterials, 146, pp.115-135. doi:10.1016/j.biomaterials.2017.09.004 |
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Alam, P., Leung, N., Su, H., Qiu, Z., Kwok, R., Lam, J. and Tang, B. (2017). A Highly Sensitive Bimodal Detection of Amine Vapours Based on Aggregation Induced Emission of 1,2-Dihydroquinoxaline Derivatives. Chemistry - A European Journal, 23(59), pp.14911-14917. doi:10.1002/chem.201703253 |
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Han, T., Gui, C., Lam, J., Jiang, M., Xie, N., Kwok, R. and Tang, B. (2017). High-Contrast Visualization and Differentiation of Microphase Separation in Polymer Blends by Fluorescent AIE Probes. Macromolecules, 50(15), pp.5807-5815. doi:10.1021/acs.macromol.7b00973 |
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Peng, H., Zheng, X., Han, T., Kwok, R., Lam, J., Huang, X. and Tang, B. (2017). Dramatic Differences in Aggregation-Induced Emission and Supramolecular Polymerizability of Tetraphenylethene-Based Stereoisomers. Journal of the American Chemical Society, 139(29), pp.10150-10156. doi:10.1021/jacs.7b05792 |
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