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Chemistry

D-Index
62
Citations
13662
World Ranking
8823
National Ranking
2522

Research.com Recognitions

  • 1998 - Robert Boyle Prize for Analytical Science, Royal Society of Chemistry (UK)
  • 1994 - Chirality Medal, Società Chimica Italiana United States
  • 1970 - Fellow of Alfred P. Sloan Foundation

Overview

William H. Pirkle was affiliated with the University of Illinois at Urbana-Champaign in the United States. During their career, they received multiple awards recognizing their contributions to the field of chemistry and analytical science.

Notable among these honors were the Robert Boyle Prize for Analytical Science awarded by the Royal Society of Chemistry (UK) in 1998, the Chirality Medal from Società Chimica Italiana in 1994, and being named a Fellow of the Alfred P. Sloan Foundation in 1970.

Although detailed records of their publications, frequent co-authors, or specific research topics are not available, the awards indicate a focus on analytical science and chiral chemistry. These areas typically involve the study of molecular structures and chemical analysis techniques, which may have been central to their research activities.

Pirkle's academic tenure at a major research university situated in the United States implies engagement with both teaching and research within the chemical sciences. The absence of detailed paper listings or subfield data limits precise characterization of their scientific output and collaborations.

Overall, William H. Pirkle's professional history reflects a career recognized by esteemed scientific bodies, indicative of a significant presence in their discipline during their active years.

Best Publications

  • Considerations of chiral recognition relevant to the liquid chromatography separation of enantiomers

    William H. Pirkle;Thomas C. Pochapsky

  • Broad spectrum resolution of optical isomers using chiral high-performance liquid chromatographic bonded phases

    William H. Pirkle;David W. House;John M. Finn

  • A widely useful chiral stationary phase for the high-performance liquid chromatography separation of enantiomers

    William H. Pirkle;John M. Finn;James L. Schreiner;Bruce C. Hamper

  • Nuclear magnetic resonance determination of enantiomeric composition and absolute configuration of .gamma.-lactones using chiral 2,2,2-trifluoro-1-(9-anthryl)ethanol

    William H. Pirkle;David L. Sikkenga;Mark S. Pavlin

  • Design, synthesis, and evaluation of an improved enantioselective naproxen selector

    William H. Pirkle;Christopher J. Welch;Bo Lamm

  • A rational approach to the design of highly-effective chiral stationary phases

    William H. Pirkle;Ho Hyun Myung;Bernadine Bank

  • Chiral molecular recognition in small bimolecular systems: a spectroscopic investigation into the nature of diastereomeric complexes

    William H. Pirkle;Thomas C. Pochapsky

  • An Improved Chiral Stationary Phase for the Chromatographic Separation of Underivatized Naproxen Enantiomers

    William H. Pirkle;Christopher J. Welch

  • CHIRAL HIGH-PRESSURE LIQUID CHROMATOGRAPHIC STATIONARY PHASES. 3. GENERAL RESOLUTION OF ARYLALKYLCARBINOLS

    William H. Pirkle;John M. Finn

  • Useful and easily prepared chiral stationary phases for the direct chromatographic separation of the enantiomers of a variety of derivatized amines, amino acids, alcohols, and related compounds

    William H. Pirkle;Thomas C. Pochapsky;George S. Mahler;Debbi E. Corey

  • Chiral high-performance liquid chromatographic stationary phases. 1. Separation of the enantiomers of sulfoxides, amines, amino acids, alcohols, hydroxy acids, lactones, and mercaptans

    Unknown

  • Progress in the design of selectors for buckminsterfullerene

    Christopher J. Welch;William H. Pirkle

  • Enantioseparations by electrochromatography with packed capillaries

    Christian Wolf;Patrick L. Spence;William H. Pirkle;Ellen M. Derrico

  • Use of simultaneous face to face and face to edge π-π interactions to facilitate chiral recognition

    William H. Pirkle;Christopher J. Welch

  • Broad-spectrum synthesis of enantiomerically pure lactones. 1. Synthesis of sex pheromones of the carpenter bee, rove beetle, Japanese beetle, black-tailed deer, and Oriental hornet

    William H. Pirkle;Paul E. Adams

  • A chiral stationary phase for the facile resolution of amino acids, amino alcohols and amines as the N-3,5-dinitrobenzoyl derivatives

    William H. Pirkle;Myung Ho Hyun

  • Chromatographic separation of the enantiomers of acylated amines on chiral stationary phases

    William H. Pirkle;Christopher J. Welch

  • Chiral stationary phase designed for β-blockers

    W.H. Pirkle;J.A. Burke

  • The Nonequivalence of Physical Properties of Enantiomers in Optically Active Solvents. Differences in Nuclear Magnetic Resonance Spectra. I

    Unknown

  • A CHIRAL RECOGNITION MODEL FOR THE CHROMATOGRAPHIC RESOLUTION OF N‐ACYLATED 1‐ARYL‐1‐AMINOALKANES

    William H. Pirkle;Christopher J. Welch;Myung Ho Hyun

  • Direct liquid chromatographic separation of benzodiazepinone enantiomers

    William H. Pirkle;Athanasios Tsipouras

  • Chiral HPLC (high-performance liquid chromatographic) stationary phases. 4. Separation of the enantiomers of bi-.beta. naphthols and analogs

    William H. Pirkle;James L. Schreiner

  • NMR Chiral Solvating Agents

    William H. Pirkle;Dennis J. Hoover

Frequent Co-Authors

Christopher J. Welch
Christopher J. Welch Indiana Consortium for Analytical Science & Engineering
Nobuyuki Harada
Nobuyuki Harada Tohoku University
Volker Schurig
Volker Schurig University of Tübingen
Scott R. Wilson
Scott R. Wilson University of Illinois at Urbana-Champaign
Daniel W. Armstrong
Daniel W. Armstrong The University of Texas at Arlington
Carlo Rosini
Carlo Rosini University of Basilicata
Christian Wolf
Christian Wolf Georgetown University
Yoshio Okamoto
Yoshio Okamoto Nagoya University
Wolfgang Lindner
Wolfgang Lindner University of Vienna
Nina Berova
Nina Berova Columbia University

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