William E. Moerner

Affiliations: 
1981-1995 IBM Almaden Research Center, San Jose, CA, United States 
 1995-1998 University of California, San Diego, La Jolla, CA 
 1998- Stanford University, Palo Alto, CA 
Area:
Biophysics, Molecular Imaging
Website:
http://www.stanford.edu/group/moerner/WEM.html
Google:
"William Esco Moerner"
Bio:

http://www.nasonline.org/member-directory/members/3009545.html
http://web.stanford.edu/group/moerner/cv/moerner_current.pdf
http://scholar.google.com/citations?user=upREfesAAAAJ&hl=en
The 2008 Wolf Prize in Chemistry: William E. Moerner Allen J. Bard for the ingenious creation of a new field of science, single molecule spectroscopy and electrochemistry, with impact at the nanoscopic regime, from the molecular and cellular domain to complex material systems.
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Mean distance: 7.74
 
SNBCP

Parents

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James Gegan Miller research assistant 1975 Washington University (Physics Tree)
Albert J. Sievers grad student 1982 Cornell (Physics Tree)
 (Vibrational Relaxation Dynamics of an IR-Laser-Excited Molecular Impurity Mode in Alkali Halide Lattices)

Children

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Jian Cui research assistant 2008 Stanford
Daniel Wright grad student 2002 Stanford
Katherine A. Willets grad student 2005 Stanford
Adam E. Cohen grad student 2003-2006 Stanford
Samuel Joseph Lord grad student 2004-2010 Stanford
Matthew D. Lew grad student 2008-2014 Stanford (E-Tree)
Mikael P. Backlund grad student 2010-2015 Stanford
Sophie Brasselet post-doc UCSD/Stanford (Physics Tree)
Peter D. Dahlberg post-doc
Andreas Gahlmann post-doc Stanford
Randall H. Goldsmith post-doc Stanford
Matthew F. Paige post-doc Stanford
P. James Schuck post-doc Stanford
Thomas Basché post-doc 1991-1992 IBM Research - Almaden
John J. Stankus post-doc 1992-1994 IBM Research - Almaden
David J. Norris post-doc 1995-1997 UCSD
Robert M. Dickson post-doc 1996-1998 UCSD
Frank Jäckel post-doc 2006-2008 Stanford (Physics Tree)
Julie S. Biteen post-doc 2007-2009 Stanford
Steven Frank Lee post-doc 2009-2011 Stanford
Gabriela S. Schlau-Cohen post-doc 2011-2014 Stanford
Yoav Shechtman post-doc 2013-2016 Stanford
Saumya Saurabh post-doc 2014-2016 Stanford
Anna-Karin Gustavsson post-doc 2015-2020 Stanford
BETA: Related publications

Publications

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Möckl L, Moerner WE. (2020) Super-resolution Microscopy with Single Molecules in Biology and Beyond-Essentials, Current Trends, and Future Challenges. Journal of the American Chemical Society. 142: 17828-17844
Petrov PN, Moerner WE. (2020) Addressing systematic errors in axial distance measurements in single-emitter localization microscopy Optics Express. 28: 18616-18632
Dahlberg PD, Saurabh S, Sartor AM, et al. (2020) Cryogenic single-molecule fluorescence annotations for electron tomography reveal in situ organization of key proteins in . Proceedings of the National Academy of Sciences of the United States of America
Dahlberg PD, Perez D, Su Z, et al. (2020) Cryogenic Correlative Single-Particle Photoluminescence Spectroscopy and Electron Tomography for Investigation of Nanomaterials. Angewandte Chemie (International Ed. in English)
Möckl L, Roy AR, Moerner WE. (2020) Deep learning in single-molecule microscopy: fundamentals, caveats, and recent developments [Invited]. Biomedical Optics Express. 11: 1633-1661
Lasker K, von Diezmann L, Zhou X, et al. (2020) Selective sequestration of signalling proteins in a membraneless organelle reinforces the spatial regulation of asymmetry in Caulobacter crescentus. Nature Microbiology
Bennett HW, Gustavsson AK, Bayas CA, et al. (2020) Novel fibrillar structure in the inversin compartment of primary cilia revealed by 3D single-molecule super-resolution microscopy. Molecular Biology of the Cell. mbcE19090499
Dahlberg PD, Saurabh S, Wang J, et al. (2020) Cryogenic Superresolution Fluorescence Correlated with Cryogenic Electron Tomography: Combining Specific Labeling and High Resolution Biophysical Journal. 118: 20a-21a
Saurabh S, Chong T, Bayas C, et al. (2020) Robust Modulation of a Bacterial Kinase by Protein Phase Separation Biophysical Journal. 118: 203a
Comerci CJ, Herrmann J, Yoon J, et al. (2020) Continuous, Topologically Guided Protein Crystallization Drives Self-Assembly of a Bacterial Surface Layer Biophysical Journal. 118: 201a-202a
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