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Chemistry

D-Index
51
Citations
11726
World Ranking
13811
National Ranking
3584

Overview

Robert M. Clegg was affiliated with the University of Illinois at Urbana-Champaign in the United States. Their academic career involved research pursuits, although there are no recent publications listed for this individual.

Throughout their career, Robert M. Clegg did not have documented frequent co-authors or consistent publication venues. There are no recorded main fields of study, subfields, or specific research topics associated with their work in the source data available.

There were no book publications or awards listed in connection with Robert M. Clegg. This absence of documented contributions across various categories implies a limited publicly available record or incomplete archival of their research outputs and collaborations.

Robert M. Clegg is deceased. The available data reflects an overview without details of specific scientific contributions, reflecting only known affiliations and the lack of recent or detailed publication records.

Best Publications

  • Fluorescence resonance energy transfer and nucleic acids.

    Robert M. Clegg

  • Fluorescence resonance energy transfer

    Robert M Clegg

  • Fluorescence lifetime imaging microscopy (FLIM): Spatial resolution of microstructures on the nanosecond time scale

    Theodorus W.J. Gadella;Thomas M. Jovin;Robert M. Clegg

  • Fluorescence energy transfer shows that the four-way DNA junction is a right-handed cross of antiparallel molecules

    Alastair I. H. Murchie;Robert M. Clegg;Eberhard von Krtzing;Derek R. Duckett

  • Binding characteristics of Hoechst 33258 with calf thymus DNA, poly[d(A-T)] and d(CCGGAATTCCGG): Multiple stoichiometries and determination of tight binding with a wide spectrum of site affinities

    Frank G. Loontiens;Peter Regenfuss;Annelies Zechel;Lieve Dumortier

  • Polar plot representation for frequency-domain analysis of fluorescence lifetimes.

    Glen I. Redford;Robert M. Clegg

  • Translational diffusion of lipids in liquid crystalline phase phosphatidylcholine multibilayers. A comparison of experiment with theory.

    Winchil L. C. Vaz;Robert M. Clegg;Dieter Hallmann

  • Observing the helical geometry of double-stranded DNA in solution by fluorescence resonance energy transfer.

    Robert M. Clegg;Alastair I. H. Murchie;Annelies Zechel;David M. J. Lilley

  • Fluorescence resonance energy transfer analysis of the structure of the four-way DNA junction.

    Robert M. Clegg;Alastair I. H. Murchie;Annelies Zechel;Carsten Carlberg

  • Two-photon fluorescence lifetime imaging of the skin stratum corneum pH gradient.

    Kerry M. Hanson;Martin J. Behne;Nicholas P. Barry;Theodora M. Mauro

  • Time resolved imaging microscopy. Phosphorescence and delayed fluorescence imaging.

    G. Marriott;R.M. Clegg;D.J. Arndt-Jovin;T.M. Jovin

  • A four-way junction accelerates hairpin ribozyme folding via a discrete intermediate.

    Elliot Tan;Timothy J. Wilson;Michelle K. Nahas;Robert M. Clegg

  • Observation of intersubunit movement of the ribosome in solution using FRET

    Dmitri N. Ermolenko;Zigurts K. Majumdar;Robyn P. Hickerson;P. Clint Spiegel

  • Ion‐induced folding of the hammerhead ribozyme: a fluorescence resonance energy transfer study

    Gurminder S. Bassi;Alastair I. H. Murchie;Frank Walter;Robert M. Clegg

  • Kinking of DNA and RNA helices by bulged nucleotides observed by fluorescence resonance energy transfer

    Christoph Gohlke;Alastair I. H. Murchie;David M. J. Lilley;Robert M. Clegg

  • The solution structure of the four-way DNA junction at low-salt conditions: a fluorescence resonance energy transfer analysis

    R. M. Clegg;A. I. H. Murchie;D. M. J. Lilley

  • The structure of the four-way junction in DNA.

    D. M. J. Lilley;R. M. Clegg

  • Fluorescence characteristics of 5-carboxytetramethylrhodamine linked covalently to the 5' end of oligonucleotides: Multiple conformers of single-stranded and double-stranded dye-DNA complexes

    G. Vámosi;C. Gohlke;R.M. Clegg

  • Chapter 1 Förster resonance energy transfer—FRET what is it, why do it, and how it's done

    Robert M. Clegg

  • Base-sequence specificity of Hoechst 33258 and DAPI binding to five (A/T)4 DNA sites with kinetic evidence for more than one high-affinity Hoechst 33258-AATT complex.

    Sophia Y. Breusegem;Robert M. Clegg;Frank G. Loontiens

  • The antibiotic viomycin traps the ribosome in an intermediate state of translocation

    Dmitri N Ermolenko;P Clint Spiegel;Zigurts K Majumdar;Zigurts K Majumdar;Robyn P Hickerson;Robyn P Hickerson

  • Binding of Hoechst 33258 and 4',6'-diamidino-2-phenylindole to self-complementary decadeoxynucleotides with modified exocyclic base substituents.

    Frank G. Loontiens;Larry W. McLaughlin;Stephan Diekmann;Robert M. Clegg

Frequent Co-Authors

Thomas M. Jovin
Thomas M. Jovin Max Planck Society
David M.J. Lilley
David M.J. Lilley University of Dundee
Enrico Gratton
Enrico Gratton University of California, Irvine
Donna J. Arndt-Jovin
Donna J. Arndt-Jovin Max Planck Society
Harry F. Noller
Harry F. Noller University of California, Santa Cruz
Govindjee
Govindjee University of Illinois at Urbana-Champaign
Paul J. Hagerman
Paul J. Hagerman University of California, Davis
Peter Schneider
Peter Schneider University of Bonn
Nadrian C. Seeman
Nadrian C. Seeman New York University
Nathan Sharon
Nathan Sharon Weizmann Institute of Science

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