Bonnie A. Sheriff, Ph.D.

Affiliations: 
2009 Chemistry California Institute of Technology, Pasadena, CA 
Area:
solid-state quantum physics, materials science, basic surface science, Microfluidics-based assays of blood proteins, artificial antibodies
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"Bonnie Sheriff"
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SNBCP
Cross-listing: Materials Tree

Parents

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James Richard Heath grad student 2009 Caltech
 (Silicon nanowires and silicon/molecular interfaces for nanoscale electronics.)
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Publications

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Sheriff BA, Wang D, Heath JR, et al. (2008) Complementary symmetry nanowire logic circuits: experimental demonstrations and in silico optimizations. Acs Nano. 2: 1789-98
Spruell JM, Sheriff BA, Rozkiewicz DI, et al. (2008) Heterogeneous catalysis through microcontact printing. Angewandte Chemie (International Ed. in English). 47: 9927-32
Wang D, Sheriff BA, McAlpine M, et al. (2008) Development of ultra-high density silicon nanowire arrays for electronics applications Nano Research. 1: 9-21
Green JE, Choi JW, Boukai A, et al. (2007) A 160-kilobit molecular electronic memory patterned at 10(11) bits per square centimetre. Nature. 445: 414-7
Wang D, Sheriff BA, Heath JR. (2006) Complementary symmetry silicon nanowire logic: power-efficient inverters with gain. Small (Weinheim An Der Bergstrasse, Germany). 2: 1153-8
Wang D, Sheriff BA, Heath JR. (2006) Silicon p-FETs from ultrahigh density nanowire arrays. Nano Letters. 6: 1096-100
Jung GY, Johnston-Halperin E, Wu W, et al. (2006) Circuit fabrication at 17 nm half-pitch by nanoimprint lithography. Nano Letters. 6: 351-4
Beckman R, Beverly K, Boukai A, et al. (2006) Spiers Memorial Lecture. Molecular mechanics and molecular electronics. Faraday Discussions. 131: 9-22; discussion 91-
Wang D, Sheriff B, Heath J. (2006) Cover Picture: Complementary Symmetry Silicon Nanowire Logic: Power‐Efficient Inverters with Gain (Small 10/2006) Small. 2: 1107-1107
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