Defect-mediated negative differential resistance and photoconductive enhancement in graphene oxide decorated SnSe<sub>2</sub> nanosheets. [PDF]
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Single-particle electrochemical imaging for assessing the heterogeneous response of individual nanocrystals. [PDF]
Yang Y, Wang Y, Lu J.
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Comparative efficacy of various exercise therapies for metabolic syndrome a systematic review and network meta-analysis. [PDF]
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Photoreflectance of InSb at the E1 and E1 + Δ1 transitions
Solid State Communications, 1994Abstract The Photoreflectance at high interband transitions ( E 1 and E 1 + Δ 1 ) is obtained at 8 K for InSb bulk samples. For a p -type sample, the lineshape is well reproduced by Aspens third derivative model, while for an undoped sample, the photoreflectance spectra is better reproduced by a first derivative of an exciton lineshape ...
Y. Beaulieu, J.B. Webb, J.L. Brebner
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Fluorescence of prostaglandin E1
Analytical Chemistry, 1968The chemical structure of PGE1 (prostaglandin E1) is diagrammed. Because this structure suggested the possibility of several resonance forms of the molecule a study was undertaken to determine their possible fluorescence. The laboratory procedures involved are explained. Increased concentrations of PGE1 were found to produce increased fluorescence.
C L, Gantt +3 more
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Work on the structure of prostaglandin E1 (PGE1), isolated from natural sources, was completed 25 years ago (1). Shortly after, methods for the chemical synthesis of PG with their natural configuration were developed in the laboratories of the UpJohn Company (2) and of E. J. Corey (3) and, by the late sixties, PGE1 became widely available.
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