David A. Stone, Ph.D.

Affiliations: 
Pennsylvania State University, State College, PA, United States 
Area:
Polymer Synthesis, Materials Chemistry, and Biomedicine
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Harry R. Allcock grad student 2006 Penn State
 (Development of phosphazene-based materials for advanced applications.)
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Publications

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Stone DA, Wanasekara ND, Jones DH, et al. (2012) All-organic, stimuli-responsive polymer composites with electrospun fiber fillers Acs Macro Letters. 1: 80-83
Wanasekara ND, Stone DA, Wnek GE, et al. (2012) Stimuli-responsive and mechanically-switchable electrospun composites Macromolecules. 45: 9092-9099
Stone DA, Wanasekara ND, Jones DH, et al. (2011) All-Organic, Stimuli-Responsive Polymer Composites with Electrospun Fiber Fillers. Acs Macro Letters. 1: 80-83
Tevis ID, Palmer LC, Herman DJ, et al. (2011) Self-assembly and orientation of hydrogen-bonded oligothiophene polymorphs at liquid-membrane-liquid interfaces. Journal of the American Chemical Society. 133: 16486-94
Stone DA, Hsu L, Wheeler NR, et al. (2011) Mechanical enhancement via self-assembled nanostructures in polymer nanocomposites Soft Matter. 7: 2449-2455
Stone DA, Korley LTJ. (2010) Bioinspired Polymeric Nanocomposites Macromolecules. 43: 9217-9226
Stone DA, Welna DT, Allcock HR. (2007) Synthesis and characterization of lithium-ion conductive membranes with low water permeation Chemistry of Materials. 19: 2473-2482
Stone DA, Allcock HR. (2006) A new polymeric intermediate for the synthesis of hybrid inorganic-organic polymers Macromolecules. 39: 4935-4937
Welna DT, Stone DA, Allcock HR. (2006) Lithium-ion conductive polymers as prospective membranes for lithium-seawater batteries Chemistry of Materials. 18: 4486-4492
Allcock HR, Welna DT, Stone DA. (2005) Synthesis of pendent functionalized cyclotriphosphazene polyoctenamers: Amphiphilic lithium ion conductive materials Macromolecules. 38: 10406-10412
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