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Chemistry

D-Index
84
Citations
16595
World Ranking
2883
National Ranking
980

Overview

Richard A. Andersen is affiliated with Lawrence Berkeley National Laboratory in the United States. Their research primarily focuses on neuroscience, with particular attention to cognitive neuroscience and cellular and molecular neuroscience. Additional areas of study include electrical and electronic engineering, biomedical engineering, and pathology and forensic medicine.

Their work encompasses several main topics, such as:

  • EEG and Brain-Computer Interfaces
  • Neuroscience and Neural Engineering
  • Advanced Memory and Neural Computing
  • Muscle activation and electromyography studies
  • Spinal Cord Injury Research
  • Advanced NMR Techniques and Applications
  • Magnetism in coordination complexes

Richard A. Andersen has authored multiple papers in prominent publication venues. Selected recent papers include:

  • Decoding grasp and speech signals from the cortical grasp circuit in a tetraplegic human, 2021, bioRxiv (Cold Spring Harbor Laboratory)
  • Master classes of the tenth international brain-computer interface meeting: showcasing the research of BCI trainees, 2025, Journal of Neural Engineering
  • Geometry and electronic structure of Yb( iii )[CH(SiMe 3 ) 2 ] 3 from EPR and solid-state NMR augmented by computations, 2024, Physical Chemistry Chemical Physics
  • Multi-channel intra-cortical micro-stimulation robustly evokes stable, somatosensory percepts; with reaction times significantly faster than natural occurring stimuli in a human participant, 2023, Brain stimulation
  • The temporal binding window between ICMS and vision depends on biological relevance of visual stimuli, 2023, Brain stimulation

Frequent co-authors associated with Richard A. Andersen include:

  • Charles Y. Liu
  • David A. Bjånes
  • Kelsie Pejsa
  • Luke Bashford
  • Stephanie Cernera

They have contributed repeatedly to key journals and venues, such as:

  • Brain stimulation
  • Journal of Neural Engineering
  • bioRxiv (Cold Spring Harbor Laboratory)
  • Physical Chemistry Chemical Physics
  • Neurosurgery

Best Publications

  • Preparation and Reactions of Base-Free Bis(1,2,4-tri-tert-butylcyclopentadienyl)uranium Oxide, Cp‘2UO

    Guofu Zi;Evan L. Werkema;Marc D. Walter;Jochen P. Gottfriedsen

  • Electron-transfer reactions of trivalent uranium. Preparation and structure of the uranium metallocene compounds (MeC5H4)3U:NPh and [(MeC5H4)3U]2[.mu.-.eta.1,.eta.2-PhNCO]

    John G. Brennan;Richard A. Andersen

  • Divalent lanthanide chemistry. Bis (pentamethylcyclopentadienyl) europium(II) and -ytterbium(II) derivatives: crystal structure of bis (pentamethylcyclopentadienyl) (tetrahydrofuran ytterbium(II) -hemitoluene at 176 K

    T. Don Tilley;Richard A. Andersen;Brock Spencer;Helena Ruben

  • Reactivity of a Terminal Ti(IV) Imido Complex toward Alkenes and Alkynes: Cycloaddition vs C−H Activation

    Jennifer L. Polse;Richard A. Andersen;Robert G. Bergman

  • Hydrogen for fluorine exchange in C6F6 and C6F5H by monomeric [1,3,4-(Me3C)3C5H2]2CeH: experimental and computational studies.

    Laurent Maron;Evan L. Werkema;Lionel Perrin;Odile Eisenstein

  • Coordination of 2,2'-bipyridyl and 1,10-phenanthroline to substituted ytterbocenes: An experimental investigation of spin coupling in lanthanide complexes

    Madeleine Schultz;James M. Boncella;David J. Berg;T. Don Tilley

  • Hydrogen for Fluorine Exchange in C 6 F 6 and C 6 F 5 H by Monomeric [1,3,4-(Me 3 C) 3 C 5 H 2 ] 2 CeH: Experimental and Computational Studies

    Laurent Maron;Odile Eisenstein;Richard A. Andersen;Evan L. Werkema

  • Zinc−Zinc Bonded Zincocene Structures. Synthesis and Characterization of Zn2(η5-C5Me5)2 and Zn2(η5-C5Me4Et)2

    Abdessamad Grirrane;Irene Resa;Amor Rodríguez;Ernesto Carmona

  • Divalent lanthanide chemistry. Preparation and crystal structures of sodium tris[bis(trimethylsilyl)amido]europate(II) and sodium tris[bis(trimethylsilyl)amido]ytterbate(II), NaM[N(SiMe3)2]3

    T. Don Tilley;Richard A. Andersen;Allan Zalkin

  • Preparation of the First Molecular Carbon Monoxide Complex of Uranium, (Me3SiC5H4)3UCO

    John G. Brennan;Richard A. Andersen;John L. Robbins

  • Tris((hexamethyldisilyl)amido)uranium(III): preparation and coordination chemistry

    Richard A. Andersen

  • Tertiary phosphine complexes of the f-block metals. Crystal structure of Yb[N(SiMe3)2]2[Me2PCH2CH2PMe2]: evidence for a ytterbium-.gamma.-carbon interaction

    T. Don Tilley;Richard A. Andersen;Allan Zalkin

  • Structure of tris(bis(trimethylsilyl)amido)neodymium(III), Nd[N(Si(CH3)3)2]3

    Richard A. Andersen;David H. Templeton;Allan Zalkin

  • Pentamethylcyclopentadienyl derivatives of the trivalent lanthanide elements neodymium, samarium, and ytterbium

    T. Don. Tilley;Richard A. Andersen

  • Exceptionally low-temperature carbon--hydrogen/carbon--deuterium exchange reactions of organic and organometallic compounds catalyzed by the Cp*(PMe(3))IrH(ClCH(2)Cl)(+) cation.

    Jeffery T. Golden;Richard A. Andersen;Robert G. Bergman

  • [(MeC5H4)3U]2[.mu.-1,4-N2C6H4]: a bimetallic molecule with antiferromagnetic coupling between the uranium centers

    Robert K. Rosen;Richard A. Andersen;Norman M. Edelstein

  • Self-contained kondo effect in single molecules

    Corwin H. Booth;Marc D. Walter;Million Daniel;Wayne W. Lukens

  • Preparation of monomeric (Me[sub 5]C[sub 5])[sub 2]VO and (Me[sub 5]C[sub 5])[sub 2]Ti(O)(L) and their decomposition to (Me[sub 5]C[sub 5])[sub 4]M[sub 4]([mu]-O)[sub 6]

    Milton R. Smith;Phillip T. Matsunaga;Richard A. Andersen

  • Preparation and hydrogen-deuterium exchange of alkyl and hydride bis(trimethylsilyl)amido derivatives of the actinide elements

    Stephen J. Simpson;Howard W. Turner;Richard A. Andersen

  • Electron-transfer reactions of divalent ytterbium metallocenes. Synthesis of the series [(Me5C5)2Yb]2[.mu.-E] (E = oxygen, sulfur, selenium, or tellurium) and crystal structure of [(Me5C5)2Yb]2[.mu.-Se]

    David J. Berg;Carol J. Burns;Richard A. Andersen;Allan. Zalkin

  • Platinum(II) complexes of dimethyl sulfide

    Unknown

Frequent Co-Authors

Robert G. Bergman
Robert G. Bergman University of California, Berkeley
Allan Zalkin
Allan Zalkin University of California, Berkeley
Laurent Maron
Laurent Maron Federal University of Toulouse Midi-Pyrénées
Marc D. Walter
Marc D. Walter Technische Universität Braunschweig
John F. Hartwig
John F. Hartwig University of California, Berkeley
T. Don Tilley
T. Don Tilley University of California, Berkeley
Odile Eisenstein
Odile Eisenstein University of Montpellier
Wayne W. Lukens
Wayne W. Lukens Lawrence Berkeley National Laboratory
Carol J. Burns
Carol J. Burns Los Alamos National Laboratory
David H. Templeton
David H. Templeton University of California, Berkeley

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