K
K.M.K. Swamy
Researcher at Ewha Womans University
Publications - 56
Citations - 4134
K.M.K. Swamy is an academic researcher from Ewha Womans University. The author has contributed to research in topics: Fluorescence & Rhodamine. The author has an hindex of 34, co-authored 54 publications receiving 3459 citations.
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Journal ArticleDOI
Pyrophosphate-selective fluorescent chemosensor at physiological pH: formation of a unique excimer upon addition of pyrophosphate.
TL;DR: A new fluorescent chemosensor that displays an excellent selectivity for pyrophosphate over adenosine triphosphate or phosphate in 100% aqueous solution is reported.
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Boronic acid-linked fluorescent and colorimetric probes for copper ions
K.M.K. Swamy,Sung Kyun Ko,Soo Kyung Kwon,Ha Na Lee,Chun Mao,Joung Min Kim,Keun-Hyeung Lee,Jinheung Kim,Injae Shin,Juyoung Yoon +9 more
TL;DR: The first examples of boronic acid-linked fluorescent and colorimetric chemosensors for copper ions are reported; the monoboronic Acid-conjugated rhodamine probe displays a highly selective fluorescent enhancement with Cu2+ among the various metal ions.
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Rhodamine urea derivatives as fluorescent chemosensors for Hg2
TL;DR: In this paper, a new rhodamine derivatives bearing urea group have been synthesized for the detection of metal ions, and the dimeric system 2 displayed a selective fluorescent enhancement and colorimetric change upon the addition of Hg 2+, in which the spirolactam (nonfluorescent) to ring opened amide process was utilized.
Journal ArticleDOI
Fluorescent Molecular Logic Gates Using Microfluidic Devices
Songzi Kou,Songzi Kou,Han Na Lee,Danny van Noort,K.M.K. Swamy,Sohyun Kim,Jung Hyun Soh,Kang-Mu Lee,Seong-Won Nam,Juyoung Yoon,Sungsu Park +10 more
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A Selective Imidazoline-2-thione-Bearing Two-Photon Fluorescent Probe for Hypochlorous Acid in Mitochondria
Qingling Xu,Cheol Ho Heo,Jin A. Kim,Hye Sue Lee,Ying Hu,Dayoung Kim,K.M.K. Swamy,Gyoungmi Kim,Sang Jip Nam,Hwan Myung Kim,Juyoung Yoon +10 more
TL;DR: A two-photon fluorescent off/on probe bearing imidazoline-2-thione as an OCl(-) recognition unit and triphenylphosphine as a mitochondrial-targeting group was synthesized and examined for its ability to image mitochondrial OCl (-) in situ.