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Dive into the research topics where J. Wallace Parce is active.

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Featured researches published by J. Wallace Parce.


Nature | 2003

High-performance thin-film transistors using semiconductor nanowires and nanoribbons

Xiangfeng Duan; Chunming Niu; Vijendra Sahi; Jian Chen; J. Wallace Parce; Stephen Empedocles; Jay L. Goldman

Thin-film transistors (TFTs) are the fundamental building blocks for the rapidly growing field of macroelectronics. The use of plastic substrates is also increasing in importance owing to their light weight, flexibility, shock resistance and low cost. Current polycrystalline-Si TFT technology is difficult to implement on plastics because of the high process temperatures required. Amorphous-Si and organic semiconductor TFTs, which can be processed at lower temperatures, but are limited by poor carrier mobility. As a result, applications that require even modest computation, control or communication functions on plastics cannot be addressed by existing TFT technology. Alternative semiconductor materials that could form TFTs with performance comparable to or better than polycrystalline or single-crystal Si, and which can be processed at low temperatures over large-area plastic substrates, should not only improve the existing technologies, but also enable new applications in flexible, wearable and disposable electronics. Here we report the fabrication of TFTs using oriented Si nanowire thin films or CdS nanoribbons as semiconducting channels. We show that high-performance TFTs can be produced on various substrates, including plastics, using a low-temperature assembly process. Our approach is general to a broad range of materials including high-mobility materials (such as InAs or InP).


Archive | 2003

Nanostructure and nanocomposite based compositions and photovoltaic devices

Erik C. Scher; Mihai Buretea; Calvin Y. H. Chow; Stephen Empedocles; Andreas P. Meisel; J. Wallace Parce


Archive | 2006

Large-Area Nanoenabled Macroelectronic Substrates and Uses Therefor

Xiangfeng Duan; Chunming Niu; Stephen Empedocles; Linda T. Romano; Jian Chen; Vijendra Sahi; Lawrence Bock; David P. Stumbo; J. Wallace Parce; Jay L. Goldman


Archive | 1997

Variable control of electroosmotic and/or electrophoretic forces within a fluid-containing structure via electrical forces

Calvin Y. H. Chow; J. Wallace Parce


Archive | 2005

Nanocrystal doped matrixes

J. Wallace Parce; Paul Bernatis; Robert S. Dubrow; William P. Freeman; Joel Gamoras; Shihai Kan; Andreas P. Meisel; Baixin Qian; Jeffery A. Whiteford; Jonathan Ziebarth


Annual Review of Biophysics and Biomolecular Structure | 2000

Electrokinetically controlled microfluidic analysis systems.

Luc J. Bousse; Claudia B. Cohen; Theo Nikiforov; Andrea W. Chow; Anne R. Kopf-Sill; Robert S. Dubrow; J. Wallace Parce


Archive | 2011

Methods and devices for forming nanostructure monolayers and devices including such monolayers

Jian Chen; Xiangfeng Duan; Chao Liu; Madhuri L. Nallabolu; J. Wallace Parce; Srikanth Ranganathan


Archive | 2004

System and process for producing nanowire composites and electronic substrates therefrom

Mihai Buretea; Jian Chen; Calvin Y. H. Chow; Chunming Niu; Yaoling Pan; J. Wallace Parce; Linda T. Romano; David P. Stumbo


Archive | 2005

Nanowire-based membrane electrode assemblies for fuel cells

Chunming Niu; Calvin Y. H. Chow; Stephen Empedocles; J. Wallace Parce


Archive | 2005

Post-deposition encapsulation of nanostructures: compositions, devices and systems incorporating same

Jeffery A. Whiteford; Mihai Buretea; William P. Freeman; Andreas P. Meisel; Kyu S. Min; J. Wallace Parce; Erik C. Scher

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