Andrew I. Share, Ph.D.

Affiliations: 
2011 Chemistry Indiana University, Bloomington, Bloomington, IN, United States 
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"Andrew Share"
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Amar H. Flood grad student 2011 Indiana University
 (Understanding the mechanism of motion in redox-driven molecular machines.)
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Publications

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Benson CR, Share AI, Marzo MG, et al. (2016) Double Switching of Two Rings in Palindromic [3]Pseudorotaxanes: Cooperativity and Mechanism of Motion. Inorganic Chemistry
Andersen SS, Share AI, Poulsen BL, et al. (2014) Mechanistic evaluation of motion in redox-driven rotaxanes reveals longer linkers hasten forward escapes and hinder backward translations. Journal of the American Chemical Society. 136: 6373-84
Manck LE, Benson CR, Share AI, et al. (2014) Self-assembly snapshots of a 2 × 2 copper(I) grid Supramolecular Chemistry. 26: 267-279
Stojanovi? S, Turner DA, Share AI, et al. (2012) A stereodynamic and redox-switchable encapsulation-complex containing a copper ion held by a tris-quinolinyl basket. Chemical Communications (Cambridge, England). 48: 4429-31
Hansen SW, Stein PC, Sørensen A, et al. (2012) Quantification of the π-π interactions that govern tertiary structure in donor-acceptor [2]pseudorotaxanes. Journal of the American Chemical Society. 134: 3857-63
Benson CR, Share AI, Flood AH. (2012) Bioinspired Molecular Machines Bioinspiration and Biomimicry in Chemistry: Reverse-Engineering Nature. 71-119
Trabolsi A, Fahrenbach AC, Dey SK, et al. (2010) A tristable [2]pseudo[2]rotaxane. Chemical Communications (Cambridge, England). 46: 871-3
Share AI, Parimal K, Flood AH. (2010) Bilability is defined when one electron is used to switch between concerted and stepwise pathways in Cu(I)-based bistable [2/3]pseudorotaxanes. Journal of the American Chemical Society. 132: 1665-75
Share AI, Flood AH. (2010) Supramolecular chemistry: Thinking inside and outside the box Nature Chemistry. 2: 349-350
McNitt KA, Parimal K, Share AI, et al. (2009) Reduction of a redox-active ligand drives switching in a Cu(I) pseudorotaxane by a bimolecular mechanism. Journal of the American Chemical Society. 131: 1305-13
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