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Peter S. White

Researcher at University of North Carolina at Chapel Hill

Publications -  641
Citations -  36290

Peter S. White is an academic researcher from University of North Carolina at Chapel Hill. The author has contributed to research in topics: Crystal structure & Ligand. The author has an hindex of 72, co-authored 637 publications receiving 34509 citations. Previous affiliations of Peter S. White include National Park Service & University of Chicago.

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Stepwise oxidation of benzylamine coordinated to the [Tp'W(CO)(PhC2Me)]+ moiety

TL;DR: The structure of the imine complex [TpW(CO)(PhC2Me)(NHCHPh)][BF4] (4) has been confirmed by an X-ray diffraction study.
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Synthesis and properties of a stable, cationic, rhodium Lewis-acid catalyst for hydrosilation, Mukaiyama aldol and cyclopropanation reactions

TL;DR: The remarkably stable cationic, three-coordinate, 14-electron 14electron Rhodium complex has been synthesized, isolated and used as a catalyst for cyclopropanation reactions as discussed by the authors.
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The influence of carbon - nutrient balance on herb and woody plant abundance in temperate forest understories

TL;DR: In this paper, the authors present a general structural carbon - nutrient balance hypothesis parallel to Bryant et al.'s defensive chemistry hypothesis, which suggests that because herb species require a lower investment of carbon per unit length of stem than do woody plants, herbs should be at a competitive advantage where the leaf area of plants in the ground layer is limited by light rather than soil resources such as nutrients or water.
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Forest structure as a predictor of tree species diversity in the North Carolina Piedmont

TL;DR: In this article, a set of geographically distributed Forest inventory and analysis (FIA) plots (n = 972) were used to predict tree species diversity based on structural attributes using support vector regression (SVR) models.
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The preparation of SeI3SbF6 and TeI3SbF6; the X-ray crystal structures of SBr3AsF6, SeI3AsF6, SeI3SbF6, and TeI3SbF6; some considerations of the energetics of the formation of SBr3AsF6 and SeI3AsF6.

TL;DR: The crystal structures of the compounds SBr3AsF6 (1), SeI3Sf6 (2, SeI 3SbF6(3), and TeI 3 SbF5 (4) are reported and the quantitative preparation of the hitherto unknown 3 and 4 from Sf5 and the re...