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A New Porous Reaction Layer for Developing Addressable Molecular Libraries

Libo Hu, Jennifer L. Bartels, Jeremy W. Bartels, Karl Maurer and Kevin D. Moeller

J. Am. Chem. Soc., 2009, 131(46), 16638–16639

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Building Addressable Libraries: a Site-selective Allyl Alkylation Reaction

Jun Tian, Karl Maurer and Kevin D. Moeller
Tetrahedron Letters, 2008, 49(39), 5664-5667

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Building Addressable Libraries: A Site-Selective Click-Reaction Strategy for Rapidly Assembling Mass Spec Cleavable Linkers

Jennifer L. Bartels, Peng Lu, Amy Walker, Karl Maurer, and Kevin D. Moeller.
Chem. Comm. 2009, 5573 – 5575.

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Building Addressable Libraries: Amino Acid Derived Fluorescent Linkers

Takamasa Tanabe, Bo Bi, Libo Hu, Karl Maurer, and Kevin D. Moeller

Langmuir, 2012, 28 (3), 1689-1693

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Building Addressable Libraries: Site-Selective Formation of an N-Acyliminium Ion Intermediate

David Kesselring, Karl Maurer and Kevin D. Moeller
Org. Lett., 2008, 10 (12), 2501–2504

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Building Addressable Libraries: Site-Selective Lewis-Acid (Sc(III)) Catalyzed Reactions

Bo Bi, Karl Maurer, and Kevin D. Moeller.
Angew. Chem. Int. Ed. Eng. 2009, 48, 5872

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Building Addressable Libraries: Site-Selective Suzuki Reactions on Microelectrode Arrays

Libo Hu, Karl Maurer and Kevin D. Moeller

Org. Lett., 2009, 11 (6), pp 1273–1276

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Building Addressable Libraries: Site-Selective Use of Pd(0) Catalysts on Microelectrode Arrays

Libo Hu, Melissae Stuart, Jun Tian, Karl Maurer, and Kevin D. Moeller

J. Am. Chem. Soc., 2010, 132 (46), pp 16610–16616
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Building Addressable Libraries: The Use of “Safety-Catch” Linkers on Microelectrode Arrays

Bo Bi, Karl Maurer, and Kevin D. Moeller

J. Am. Chem. Soc., 2010, 132 (49), 17405-17407

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Chemoselectivity and the Chan–Lam Coupling Reaction: Adding Amino Acids to Polymer-Coated Microelectrode Arrays

Matthew D. Graaf and Kevin D. Moeller, J. Org. Chem., 2016, 81, pp 1527–1534

Developing Microelectrode Arrays for the Point-of-Care Multiplex Detection of Metabolites

Developing Microelectrode Arrays for the Point-of-Care Multiplex Detection of Metabolites

Yu-Chia Chang, Benoit Arnould, Jennifer M. Heemstra and Kevin D. Moeller*

Electroorganic Synthesis and the Construction of Addressable Molecular Surfaces

Electroorganic Synthesis and the Construction of Addressable Molecular Surfaces

Nai-Hua Yeh, Yu Zhu, and Kevin D. Moeller*, ChemElectroChem 20196, pp 4134-4143

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Microelectrode Arrays and Ceric Ammonium Nitrate: A Simple Strategy for Developing New Site-Selective Synthetic Methods

David Kesselring, Karl Maurer and Kevin D. Moeller
J. Am. Chem. Soc., 2008, 130 (34), 11290–11291

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Microelectrode Arrays and the Use of PEG-Functionalized Diblock Copolymer Coatings

Uppal, Sakshi; Graaf, Matthew D. and Moeller, Kevin D. Biosensors, 20144 (3), pp. 318-328

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Microelectrode Arrays, Electrocatalysis, and the Need for Proper Characterization

Albert Huang, Ruby Krueger, Kevin D Moeller

Publication Date: Nov 17, 2023

Microelectrode arrays, electrosynthesis, and the optimization of signaling on an inert, stable surface

Microelectrode arrays, electrosynthesis, and the optimization of signaling on an inert, stable surface

Kendra Drayton-White‡, Siyue Liu‡, Yu-Chia Chang, Sakashi Uppal and Kevin D. Moeller*

Publish date: 20 Oct 2022

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Microelectrode Arrays: A General Strategy for Using Oxidation Reactions to Site-selectively Modify Electrode Surfaces

Nguyen, Bichlien H.; Kesselring, David; Tesfu, Eden and Moeller, Kevin D. Langmuir 2014, 30, 8, pp 2280-2286

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Moving Known Libraries to an Addressable Array: A Site-Selective Hetero-Michael Reaction

Melissae Stuart, Karl Maurer, Kevin D. Moeller
Bioconj. Chem. 2008, 19, 1514-1517

New Methods for the Site-Selective Placement of Peptides on a Microelectrode Array: Probing VEGF-v107 Binding as Proof of Concept

New Methods for the Site-Selective Placement of Peptides on a Microelectrode Array: Probing VEGF-v107 Binding as Proof of Concept

Graaf, M. D.Marquez, B. V.Yeh, N. – H.Lapi, S. E.Moeller, K. D. ACS Chem. Biol. 201611, pp 2829– 2837

Organic Electrochemistry and a Role Reversal: Using Synthesis To Optimize Electrochemical Methods

Organic Electrochemistry and a Role Reversal: Using Synthesis To Optimize Electrochemical Methods

Nai-Hua Yeh, Matthew Medcalf, and Kevin D. Moeller*

J. Am. Chem. Soc.2018140 (24), pp 7395–7398

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Site-Selective, Cleavable Linkers: Quality Control and the Characterization of Small Molecules on Microelectrode Arrays

Bi, Bo; Huang, Richard Y.-C.; Maurer, Karl; Chen, Ceng; Moeller, Kevin D.

Journal of Organic Chemistry 2011, 76(21), 9053-9059

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Site-Selectively Functionalizing Microelectrode Arrays: The Use of Cu(I)-Catalysts

Jennifer Bartels, Peng Lu, Karl Maurer, Amy V. Walker, and Kevin D. Moeller

Langmuir, 2011, 27 (17), pp 11199–11205

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The Use of a Detectable, Mass-spectrometry-cleavable Linker for Quality Control on an Addressable Microelectrode Array

Ceng Chen, Peng Lu, Amy Walker, Karl Maurer, and Kevin D. Moeller
Electrochem. Commun., 2008, 10, 973–976