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David George Churchill

Korea Advanced Institute of Science and Technology · 材料科学

研究室紹介

Professor David George Churchill's research lab specializes in the design and synthesis of functional metal complexes and fluorescent probes for applications in bioimaging and environmental sensing. The lab focuses on developing highly selective and sensitive fluorescent sensors—particularly those based on dinuclear zinc and BODIPY systems—for detecting biologically and environmentally relevant species such as copper(II), hypochlorite, and biothiols. Key research directions include the rational design of turn-on/turn-off probes, the study of metal-ligand interactions in dinuclear systems, and the exploration of transition metal catalysis with early transition metals like molybdenum and tungsten. The work combines synthetic inorganic chemistry, physical organic chemistry, and photophysical characterization to address challenges in molecular recognition and sensing in aqueous and biological environments.

fluorescent probesmetal complexesbiothiol sensingBODIPYcopper detection

Research Overview

Papers
371
Total Citations
8,217
Papers (5y)
53
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
53total
2022
2023
2024
2025
2026
Citations per year (5y)
345total
20222023202420252026

Selected Papers

15
1
Article|171 citations·2009
Aqueous Fluorometric and Colorimetric Sensing of Phosphate Ions by a Fluorescent Dinuclear Zinc Complex
Snehadrinarayan Khatua, Shin Hei Choi, Junseong Lee, Kibong Kim, Youngkyu Do, David G. Churchill
SJR Q1Inorganic Chemistry

A fluorescent dinuclear zinc complex (1) has been prepared by an easy "one pot" method in which the lysine-based Schiff base ligand is generated in situ. The compound is characterized in detail by various spectroscopic techniques and single-crystal X-ray diffraction. Crystal data: monoclinic, C2, a = 18.31(13) A, b = 8.45(7) A, c = 11.20(8) A, beta = 90.11(6) degrees, V = 1733.6(2) A(3). Z = 2, R1 = 0.0442, wR2 = 0.1068, Flack(x) parameter = 0.03(2). Compound 1 is highly fluorescent, in both the

SpectroscopyChemistry
2
Article|165 citations·2013
Facilemeso-BODIPY Annulation and Selective Sensing of Hypochlorite in Water
Sudesh T. Manjare, Jin Kim, Yunho Lee, David G. Churchill
SJR Q1Organic Letters

Annulated BODIPY chalcogenide (Se, Te) systems were synthesized from their respective bis(o-formylphenyl)dichalcogenide intermediates. The annulated BODIPY selenide product was confirmed by X-ray diffraction. The red-shifted telluride version was found to be sensitive and selective for hypochlorite detection, reversible upon treatment with biothiols.

SpectroscopyChemistry
3
Article|163 citations·2018
Enhanced Doubly Activated Dual Emission Fluorescent Probes for Selective Imaging of Glutathione or Cysteine in Living Systems
Sandip V. Mulay, Youngsam Kim, Minsuk Choi, Dong Yun Lee, Jonghoon Choi, Yunho Lee, Sangyong Jon, David G. Churchill
SJR Q1Analytical Chemistry

The development of novel fluorescent probes for monitoring the concentration of various biomolecules in living systems has great potential for eventual early diagnosis and disease intervention. Selective detection of competitive species in biological systems is a great challenge for the design and development of fluorescent probes. To improve on the design of fluorescent coumarin-based biothiol sensing technologies, we have developed herein an enhanced dual emission doubly activated system ( DAC

BiochemistryBiochemistry, Genetics and Molecular Biology
4
Article|151 citations·2003
Normal and Inverse Primary Kinetic Deuterium Isotope Effects for C−H Bond Reductive Elimination and Oxidative Addition Reactions of Molybdenocene and Tungstenocene Complexes: Evidence for Benzene σ-Complex Intermediates
David G. Churchill, K.E. Janak, Joshua S. Wittenberg, Gerard Parkin
SJR Q1Journal of the American Chemical Society

The overall reductive elimination of RH from the ansa-molybdenocene and -tungstenocene complexes [Me(2)Si(C(5)Me(4))(2)]Mo(Ph)H and [Me(2)Si(C(5)Me(4))(2)]W(R)H (R = Me, Ph) is characterized by an inverse primary kinetic isotope effect (KIE) for the tungsten system but a normal KIE for the molybdenum system. Oxidative addition of PhH to [[Me(2)Si(C(5)Me(4))(2)]M] also differs for the two systems, with the molybdenum system exhibiting a substantial intermolecular KIE, while no effect is observed

Organic ChemistryChemistry
5
Article|131 citations·1999
The Ansa Effect in Permethylmolybdenocene Chemistry: A [Me2Si] Ansa Bridge Promotes Intermolecular C−H and C−C Bond Activation
David G. Churchill, Jun Ho Shin, T. Hascall, Juliet M. Hahn, B.M. Bridgewater, Gerard Parkin
SJR Q2Organometallics

Access to the [Me 2 Si] ansa -bridged permethylmolybdenocene system is provided by the synthesis of [Me 2 Si(C 5 Me 4 ) 2 ]MoCl 2 from the reaction of MoCl 5 with a mixture of [Me 2 Si(C 5 Me 4 ) 2 ]Li 2 and NaBH 4, followed by treatment with CHCl 3 . Comparison with the chemistry of the non- ansa Cp* 2 MoX 2 system indicates that incorporation of the [Me 2 Si] ansa bridge promotes intermolecular C−H and C−C bond activation reactions.

Inorganic ChemistryChemistry
6
Article|126 citations·2009
Highly Selective Fluorescence Detection of Cu2+in Water by Chiral Dimeric Zn2+Complexes through Direct Displacement
Snehadrinarayan Khatua, Shin Hei Choi, Junseong Lee, Jung Oh Huh, Youngkyu Do, David G. Churchill
SJR Q1Inorganic Chemistry

Fluorescent dinuclear chiral zinc complexes were synthesized in a "one-pot" method in which the lysine-based Schiff base ligand was generated in situ. This complex acts as a highly sensitive and selective fluorescent ON-OFF probe for Cu(2+) in water at physiological pH. Other metal ions such as Hg(2+), Cd(2+), and Pb(2+) gave little fluorescence change.

SpectroscopyChemistry
7
Article|125 citations·2013
Portfolio greedy search and simulation for large-scale combat in starcraft
David G. Churchill, Michael Buro

Real-time strategy video games have proven to be a very challenging area for applications of artificial intelligence research. With their vast state and action spaces and real-time constraints, existing AI solutions have been shown to be too slow, or only able to be applied to small problem sets, while human players still dominate RTS AI systems. This paper makes three contributions to advancing the state of AI for popular commercial RTS game combat, which can consist of battles of dozens of uni

Artificial IntelligenceComputer Science
8
Article|123 citations·2015
Exceptional time response, stability and selectivity in doubly-activated phenyl selenium-based glutathione-selective platform
Youngsam Kim, Sandip V. Mulay, Minsuk Choi, Seungyoon B. Yu, Sangyong Jon, David G. Churchill
SJR Q1Chemical ScienceOA

A phenyl-selenium-substituted coumarin probe was synthesized for the purpose of achieving highly selective and extremely rapid detection of glutathione (GSH) over cysteine (Cys)/homocysteine (Hcy) without background fluorescence. The fluorescence intensity of the probe with GSH shows a ∼100-fold fluorescent enhancement compared with the signal generated for other closely related amino acids, including Cys and Hcy. Importantly, the substitution reaction with the sulfhydryl group of GSH at the 4-p

BiochemistryBiochemistry, Genetics and Molecular Biology
9
Article|122 citations·2012
Fast Heuristic Search for RTS Game Combat Scenarios
David G. Churchill, Abdallah Saffidine, Michael Buro
Proceedings of the AAAI Conference on Artificial Intelligence and Interactive Digital EntertainmentOA

Heuristic search has been very successful in abstract game domains such as Chess and Go. In video games, however, adoption has been slow due to the fact that state and move spaces are much larger, real-time constraints are harsher, and constraints on computational resources are tighter. In this paper we present a fast search method — Alpha-Beta search for durative moves— that can defeat commonly used AI scripts in RTS game combat scenarios of up to 8 vs. 8 units running on a single core in under

Artificial IntelligenceComputer Science
10
Article|120 citations·2013
Highly Selective Excited State Intramolecular Proton Transfer (ESIPT)-Based Superoxide Probing
Dhiraj P. Murale, Hwajin Kim, Wan Sung Choi, David G. Churchill
SJR Q1Organic Letters

Two novel fluorescent probe conjugates of 2-(benzothiazol-2-yl)-phenol (HBT) enable ratiometric and selective superoxide detection by an established excited state intramolecular proton transfer (ESIPT) mechanism giving a 60-fold intensity increase.

Physical and Theoretical ChemistryChemistry
11
Article|109 citations·2013
Selective and Sensitive Superoxide Detection with a New Diselenide-Based Molecular Probe in Living Breast Cancer Cells
Sudesh T. Manjare, Sungsoo Kim, Won Do Heo, David G. Churchill
SJR Q1Organic Letters

A diselenide-based BODIPY probe was prepared; it was found to be sensitive and selective for superoxide in giving [-Se(O)Se(O)-] oxidation. Probing was reversible through the use of biothiols; (77)Se NMR and other types of spectroscopy were employed. Practical medicinal utility was demonstrated in MCF-7/ADR cancer cells.

BiochemistryBiochemistry, Genetics and Molecular Biology
12
Article|106 citations·2016
Enhanced Fluorescence Turn‐on Imaging of Hypochlorous Acid in Living Immune and Cancer Cells
Sandip V. Mulay, Minsuk Choi, Youn Jeong Jang, Youngsam Kim, Sangyong Jon, David G. Churchill
SJR Q1Chemistry - A European Journal

Two closely related phenyl selenyl based boron-dipyrromethene (BODIPY) turn-on fluorescent probes for the detection of hypochlorous acid (HOCl) were synthesized for studies in chemical biology; emission intensity is modulated by a photoinduced electron-transfer (PET) process. Probe 2 intrinsically shows a negligible background signal; however, after reaction with HOCl, chemical oxidation of selenium forecloses the PET process, which evokes a significant increase in fluorescence intensity. The fl

SpectroscopyChemistry
13
Article|101 citations·2011
Build Order Optimization in StarCraft
David G. Churchill, Michael Buro
Proceedings of the AAAI Conference on Artificial Intelligence and Interactive Digital EntertainmentOA

In recent years, real-time strategy (RTS) games have gained interest in the AI research community for their multitude of challenging subproblems — such as collaborative pathfinding, effective resource allocation and unit targeting, to name a few. In this paper we consider the build order problem in RTS games in which we need to find concurrent action sequences that, constrained by unit dependencies and resource availability, create a certain number of units and structures in the shortest possibl

Artificial IntelligenceComputer Science
14
Article|86 citations·2010
Crystallographic, Photophysical, NMR Spectroscopic and Reactivity Manifestations of the “8-Heteroaryl Effect” in 4,4-Difluoro-8-(C4H3X)-4-bora-3a,4a-diaza-s-indacene (X = O, S, Se) (BODIPY) Systems
Kibong Kim, Changbum Jo, Shanmugam Easwaramoorthi, Jooyoung Sung, Dong Ho Kim, David G. Churchill
SJR Q1Inorganic Chemistry

We have synthesized and fully characterized three novel, yet closely related, heterocyclically meso-substituted (BODIPY) fluorophores 4,4-difluoro-8-(C(4)H(3)X)-4-bora-3a,4a-diaza-s-indacene (X = O, 2-/3-furyl (7/10); Se, 2-selenenyl (9)) through the use of 2-D NMR (COSY, HSQC, and HMBC), single crystal X-ray diffraction, mass spectrometry, elemental analysis, UV-vis spectroscopy, and fluorescent decay lifetimes, for comparison to the previously reported thienyl species (X = S, 2-/3-thienyl (8/1

Materials ChemistryMaterials Science
15
Article|84 citations·2014
Novel and selective detection of Tabun mimics
Yoon Jeong Jang, Olga G. Tsay, Dhiraj P. Murale, Jeong A Jeong, Aviv Segev, David G. Churchill
SJR Q1Chemical Communications

Detection of nerve agent-related molecules based on BODIPY-salicylaldehyde oxime conjugation was studied. Fluorescence intensity of the B-SAL-OXIME species increases in the presence of DECP, whereas it decreases in the presence of DCP and DEMP (limit of detection = 997 nM). Benzonitrile formation in the novel fluorescent B-SAL-OXIME system was elucidated using model substrates.

Plant ScienceAgricultural and Biological Sciences

Research Areas

Materials ChemistryOrganic ChemistrySpectroscopyArtificial IntelligenceBiochemistryPlant Science

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