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Dive into the research topics where David F. Bocian is active.

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Featured researches published by David F. Bocian.


Journal of Chemical Physics | 1977

Vibrational spectra, potential functions, and conformations of cycloheptanone

David F. Bocian; Herbert L. Strauss

The vibrational spectra of cycloheptanone are presented in detail. Analysis of the spectra shows that cycloheptanone is a nonrigid pseudorotating molecule with a twist‐chair average structure. The pseudorotation energy surface is calculated and indicates that the symmetric twist‐chair conformer and the two adjacent twist chairs are at practically the same energy. The other twist‐chair forms are separated by barriers of different heights. This complicated picture fits the observed pseudorotation spectrum in detail, giving about the correct shape to the observed band below 30 cm−1 and accounting for the curious observed band at about 90 cm−1. The 90 cm−1 band is assigned as a superposition of Δn=7, 9, and 11 transitions. The agreement between calculation and experiment provides support for our dynamical model of pseudorotation in seven‐membered rings.


international electron devices meeting | 2004

Modulation of drain current by redox-active molecules incorporated in Si MOSFETs

Srivardhan Gowda; Guru Mathur; Qiliang Li; Shyam Surthi; Qian Zhao; Jonathan S. Lindsey; David F. Bocian; Veena Misra

Redox-active molecular monolayers were incorporated in MOSFETs to modulate the device characteristics. The discrete molecular states were manifested in the drain current characteristics indicating the presence of distinct energy levels at room temperature.


international electron devices meeting | 2003

Hybrid silicon/molecular memories: co-engineering for novel functionality

Srivardhan Gowda; Guru Mathur; Qihang Li; Shyam Surthi; Qian Zhao; Jonathan S. Lindsey; K. Mobley; David F. Bocian; Veena Misra

The properties of silicon in hybrid CMOS/molecular capacitors were successfully engineered to produce multiple bit and long retention-time devices. Charge storage molecules were attached to silicon substrates to produce multiple bit and long retention time characteristics that may be attractive for nanoscale high density memory applications.


Journal of the American Chemical Society | 2003

Measurements of Electron-Transfer Rates of Charge-Storage Molecular Monolayers on Si(100). Toward Hybrid Molecular/Semiconductor Information Storage Devices

Kristian M. Roth; Amir A. Yasseri; Liu Zm; Dabke Rb; Malinovskii; Schweikart Kh; Lianhe Yu; Tiznado H; Zaera F; Jonathan S. Lindsey; Werner G. Kuhr; David F. Bocian


Archive | 2000

High density non-volatile memory device

David F. Bocian; Werner G. Kuhr; Jonathan S. Lindsey


Archive | 2000

Tightly coupled porphyrin macrocycles for molecular memory storage

Daniel Tomasz Gryko; Peter Christian Clausen; David F. Bocian; Werner G. Kuhr; Jonathan S. Lindsey


Archive | 1999

High density non-volatile memory device incorporating thiol-derivatized porphyrins

Daniel Tomasz Gryko; Peter Christian Clausen; Kristian M. Roth; David F. Bocian; Werner G. Kuhr; Jonathan S. Lindsey


Archive | 2002

Multistate triple-decker dyads in three distinct architectures for information storage applications

Jonathan S. Lindsey; David F. Bocian; Karl-Heinz Schweikart; Werner G. Kuhr


Journal of Organic Chemistry | 2000

Investigation of Tightly Coupled Porphyrin Arrays Comprised of Identical Monomers for Multibit Information Storage

Christian Clausen; Dorota Gryko; Amir A. Yasseri; Diers; David F. Bocian; Werner G. Kuhr; Jonathan S. Lindsey


Archive | 2001

Molehole embedded 3-d crossbar architecture used in electrochemical molecular memory device

Werner G. Kuhr; David F. Bocian; Zhiming Liu; Amir A. Yasseri

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Jonathan S. Lindsey

North Carolina State University

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Werner G. Kuhr

University of California

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Veena Misra

North Carolina State University

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Qian Zhao

North Carolina State University

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Shyam Surthi

North Carolina State University

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Zhiming Liu

University of California

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Guru Mathur

North Carolina State University

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