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Dive into the research topics where Zhengqing John Qi is active.

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Featured researches published by Zhengqing John Qi.


Micromachining and Microfabrication Process Technology XIX | 2014

Facile fabrication of nanogap electrodes for suspended graphene characterization using direct ion beam patterning

Zhengqing John Qi; A. T. Charlie Johnson

Graphene is a two-dimensional sheet of carbon atoms with exceptional electronic and mechanical properties, giving it tremendous potential in nanoelectromechanical system devices. Here, we present a method to easily and reproducibly fabricate suspended graphene nanoribbons across nanogap electrodes of various separation lengths, demonstrating a technique with aggressive gap scalability and device geometry control. Fabrication is based on using a focused gallium ion beam to create a slit between joined electrodes prepatterened on a 100 nm thick silicon nitride membrane. The transparency of the nitride membrane provides reduced ion backscattering and adds milling resolution. Large-area monolayer graphene grown by atmospheric pressure chemical vapor deposition was transferred onto the silicon nitride chip and patterned into a free-standing ribbon geometry via electron beam lithography on organic ebeam resist followed by an O2 plasma etch. We find that commonly used inorganic negative tone resist that requires a buffered oxide etch for resist removal will attack the adhesion layer (Cr2O3) between the electrode and nitride membrane, which is exposed immediately after milling, so an organic resist was selected to avoid this. Using this technique, we fabricate freestanding graphene devices contacted by electrodes of sub-100 nm separation length and preform a comparative study on the effects of current annealing on device resistance. The gap resolution of this technique is limited by the gallium ion beam, which allows for sub-100 nm gaps. Sub-10 nm gaps are feasible with He ion beams, proving direct applications in probing the high field transport properties of graphene nanoribbons at post-CMOS length scales.


ACS Nano | 2013

Continuous Growth of Hexagonal Graphene and Boron Nitride In-Plane Heterostructures by Atmospheric Pressure Chemical Vapor Deposition

Gang Hee Han; Julio A. Rodríguez-Manzo; Chan-Woo Lee; Nicholas J. Kybert; Mitchell B. Lerner; Zhengqing John Qi; Eric N. Dattoli; Andrew M. Rappe; Marija Drndic; A. T. Charlie Johnson


Nano Letters | 2014

Correlating Atomic Structure and Transport in Suspended Graphene Nanoribbons

Zhengqing John Qi; Julio A. Rodríguez-Manzo; Andrés R. Botello-Méndez; Sung Ju Hong; Eric A. Stach; Yung Woo Park; Jean-Christophe Charlier; Marija Drndic; A. T. Charlie Johnson


ACS Nano | 2015

Electronic Transport of Recrystallized Freestanding Graphene Nanoribbons

Zhengqing John Qi; Colin Daniels; Sung Ju Hong; Yung Woo Park; Vincent Meunier; Marija Drndic; A. T. Charlie Johnson


Applied Physics Letters | 2012

Graphene-protein bioelectronic devices with wavelength-dependent photoresponse

Ye Lu; Mitchell B. Lerner; Zhengqing John Qi; Joseph J. Mitala; Jong Hsien Lim; Bohdana M. Discher; A. T. Charlie Johnson


ACS Nano | 2016

In Situ Transmission Electron Microscopy Modulation of Transport in Graphene Nanoribbons

Julio A. Rodríguez-Manzo; Zhengqing John Qi; Alexander Crook; Jae-Hyuk Ahn; A. T. Charlie Johnson; Marija Drndic


Small | 2015

Electronic Transport in Heterostructures of Chemical Vapor Deposited Graphene and Hexagonal Boron Nitride

Zhengqing John Qi; Sung Ju Hong; Julio A. Rodríguez-Manzo; Nicholas J. Kybert; Rajatesh R. Gudibande; Marija Drndic; Yung Woo Park; A. T. Charlie Johnson


Proceedings of SPIE | 2013

Direct electron beam patterning of sub-5nm monolayer graphene interconnects

Zhengqing John Qi; Julio A. Rodríguez-Manzo; Sung Ju Hong; Yung Woo Park; Eric A. Stach; Marija Drndic; A. T. Charlie Johnson


Archive | 2015

Scalable, printable, patterned sheet of high mobility graphene on flexible substrates

A. T. Johnson; Rajatesh R. Gudibande; Zhengqing John Qi


Microscopy and Microanalysis | 2015

Fabrication and Simultaneous Electrical Measurement of Graphene Nanoribbon Devices Inside a S/TEM

Julio A. Rodríguez-Manzo; Zhengqing John Qi; Matthew Puster; Adrian Balan; A. T. Charlie Johnson; Marija Drndic

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Marija Drndic

University of Pennsylvania

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Sung Ju Hong

Seoul National University

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Yung Woo Park

Seoul National University

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A. T. Johnson

University of Pennsylvania

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Adrian Balan

University of Pennsylvania

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