Scott T. Phillips, Ph.D
Affiliations: | 2008- | Chemistry | Pennsylvania State University, State College, PA, United States |
Area:
Organic materials, diagnosticsWebsite:
http://chem.psu.edu/directory/stp12Google:
"Scott Thomas Phillips"Bio:
http://www.psu.edu/dept/phillipsgroup/
http://www.psu.edu/dept/phillipsgroup/scott.html
http://www.psu.edu/dept/phillipsgroup/Scott_T._Phillips_web%20CV_020515.pdf
DOI: 10.1021/ac9013989
Mean distance: 6.42 | S | N | B | C | P |
Parents
Sign in to add mentorPaul Allan Bartlett | grad student | 1999-2004 | UC Berkeley | |
(The design of a beta-strand peptidomimetic and its applications in molecular recognition.) | ||||
Matthew D. Shair | post-doc | 2004-2006 | Harvard | |
George M. Whitesides | post-doc | 2006-2008 | Harvard |
Children
Sign in to add traineeAdam D. Brooks | grad student | Penn State | |
Hemakesh Mohapatra | grad student | Indian Institute of Technology | |
Moonhee Kim | grad student | 2011 | Penn State |
Anthony M. DiLauro | grad student | 2010-2015 | Penn State |
Hyungwoo Kim | post-doc | Penn State | |
Songyi Lee | post-doc | Pukyong National University | |
Jiatao Yan | post-doc | shanghai university | |
Jie Zong | post-doc | Penn State |
BETA: Related publications
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Publications
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Kim H, Brooks AD, DiLauro AM, et al. (2020) Poly(carboxypyrrole)s that Depolymerize from Head to Tail in the Solid State in Response to Specific Applied Signals. Journal of the American Chemical Society |
Sun X, Shabat D, Phillips ST, et al. (2018) Self-Propagating Amplification Reactions for Molecular Detection and Signal Amplification: Advantages, Pitfalls, and Challenges. Journal of Physical Organic Chemistry. 31 |
Sun X, Reuther JF, Phillips S, et al. (2017) Coupling Activity-based Detection, Target Amplification, Colorimetric and Fluorometric Signal Amplification, for Quantitative Chemosensing of Fluoride Generated from Nerve Agents. Chemistry (Weinheim An Der Bergstrasse, Germany) |
Kim H, Baker MS, Phillips ST. (2015) Polymeric materials that convert local fleeting signals into global macroscopic responses. Chemical Science. 6: 3388-3392 |
Brooks AD, Yeung K, Lewis GG, et al. (2015) A Strategy for Minimizing Background Signal in Autoinductive Signal Amplification Reactions for Point-of-Need Assays. Analytical Methods : Advancing Methods and Applications. 7: 7186-7192 |
Brooks AD, Mohapatra H, Phillips ST. (2015) Design, Synthesis, and Characterization of Small-Molecule Reagents That Cooperatively Provide Dual Readouts for Triaging and, When Necessary, Quantifying Point-of-Need Enzyme Assays. The Journal of Organic Chemistry. 80: 10437-45 |
Mohapatra H, Kim H, Phillips ST. (2015) Stimuli-Responsive Polymer Film that Autonomously Translates a Molecular Detection Event into a Macroscopic Change in Its Optical Properties via a Continuous, Thiol-Mediated Self-Propagating Reaction. Journal of the American Chemical Society |
Kim H, Mohapatra H, Phillips ST. (2015) Rapid, On-Command Debonding of Stimuli-Responsive Cross-Linked Adhesives by Continuous, Sequential Quinone Methide Elimination Reactions. Angewandte Chemie (International Ed. in English) |
Yeung K, Kim H, Mohapatra H, et al. (2015) Surface-accessible detection units in self-immolative polymers enable translation of selective molecular detection events into amplified responses in macroscopic, solid-state plastics. Journal of the American Chemical Society. 137: 5324-7 |
DiLauro AM, Lewis GG, Phillips ST. (2015) Self-Immolative Poly(4,5-dichlorophthalaldehyde) and its Applications in Multi-Stimuli-Responsive Macroscopic Plastics. Angewandte Chemie (International Ed. in English). 54: 6200-5 |