James Murray

Institute for Basic Research (IBS), Korea 
Chemical Biology, Supramolecular Chemistry, Nanomaterials
"James Murray"
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Aich P, An J, Yang B, et al. (2018) Self-assembled adhesive biomaterials formed by a genetically designed fusion protein. Chemical Communications (Cambridge, England)
Kim KL, Park KM, Murray J, et al. (2018) Direct Profiling the Post-Translational Modification Codes of a Single Protein Immobilized on a Surface Using Cu-free Click Chemistry. Acs Central Science. 4: 614-623
Kim KL, Sung G, Sim J, et al. (2018) Supramolecular latching system based on ultrastable synthetic binding pairs as versatile tools for protein imaging. Nature Communications. 9: 1712
Kim NH, Hwang W, Baek K, et al. (2018) Smart SERS Hot Spots: Single Molecules Can Be Positioned in a Plasmonic Nanojunction Using Host-guest Chemistry. Journal of the American Chemical Society
Park KM, Baek K, Ko YH, et al. (2018) Mono-allyloxylated Cucurbit[7]uril Acts as an Unconventional Amphiphile to Form Light-responsive Vesicles. Angewandte Chemie (International Ed. in English)
Park KM, Kim J, Ko YH, et al. (2018) Dye-Cucurbit[n]uril Complexes as Sensor Elements for Reliable Pattern Recognition of Biogenic Polyamines Bulletin of the Chemical Society of Japan. 91: 95-99
Li M, Lee A, Kim KL, et al. (2017) Autophagy Caught in the Act: a Supramolecular FRET Pair Based on an Ultrastable Synthetic Host-guest Complex Visualizes Autophagosome-lysosome Fusion. Angewandte Chemie (International Ed. in English)
Park KM, Murray J, Kim K. (2017) Ultrastable Artificial Binding Pairs as a Supramolecular Latching System: A Next Generation Chemical Tool for Proteomics. Accounts of Chemical Research. 50: 644-646
Murray J, Kim K, Ogoshi T, et al. (2017) The aqueous supramolecular chemistry of cucurbit[n]urils, pillar[n]arenes and deep-cavity cavitands. Chemical Society Reviews
Park KM, Roh JH, Sung G, et al. (2017) Self-Healable Suparmolecular Hydrogel Formed by Nor-Seco-Cucurbit[10]uril as a Supramolecular Crosslinker. Chemistry, An Asian Journal
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