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Featured researches published by Zhongcan Xiao.


Nature Communications | 2017

Controllable conversion of quasi-freestanding polymer chains to graphene nanoribbons

Chuanxu Ma; Zhongcan Xiao; Honghai Zhang; Liangbo Liang; Jingsong Huang; Wenchang Lu; Bobby G. Sumpter; Kunlun Hong; J. Bernholc; An-Ping Li

In the bottom-up synthesis of graphene nanoribbons (GNRs) from self-assembled linear polymer intermediates, surface-assisted cyclodehydrogenations usually take place on catalytic metal surfaces. Here we demonstrate the formation of GNRs from quasi-freestanding polymers assisted by hole injections from a scanning tunnelling microscope (STM) tip. While catalytic cyclodehydrogenations typically occur in a domino-like conversion process during the thermal annealing, the hole-injection-assisted reactions happen at selective molecular sites controlled by the STM tip. The charge injections lower the cyclodehydrogenation barrier in the catalyst-free formation of graphitic lattices, and the orbital symmetry conservation rules favour hole rather than electron injections for the GNR formation. The created polymer–GNR intraribbon heterostructures have a type-I energy level alignment and strongly localized interfacial states. This finding points to a new route towards controllable synthesis of freestanding graphitic layers, facilitating the design of on-surface reactions for GNR-based structures.


Nano Letters | 2017

Seamless Staircase Electrical Contact to Semiconducting Graphene Nanoribbons

Chuanxu Ma; Liangbo Liang; Zhongcan Xiao; Alexander A. Puretzky; Kunlun Hong; Wenchang Lu; Vincent Meunier; Jerzy Bernholc; An-Ping Li

Electrical contact to low-dimensional (low-D) materials is a key to their electronic applications. Traditional metal contacts to low-D semiconductors typically create gap states that can pin the Fermi level (EF). However, low-D metals possessing a limited density of states at EF can enable gate-tunable work functions and contact barriers. Moreover, a seamless contact with native bonds at the interface, without localized interfacial states, can serve as an optimal electrode. To realize such a seamless contact, one needs to develop atomically precise heterojunctions from the atom up. Here, we demonstrate an all-carbon staircase contact to ultranarrow armchair graphene nanoribbons (aGNRs). The coherent heterostructures of width-variable aGNRs, consisting of 7, 14, 21, and up to 56 carbon atoms across the width, are synthesized by a surface-assisted self-assembly process with a single molecular precursor. The aGNRs exhibit characteristic vibrational modes in Raman spectroscopy. A combined scanning tunneling microscopy and density functional theory study reveals the native covalent-bond nature and quasi-metallic contact characteristics of the interfaces. Our electronic measurements of such seamless GNR staircase constitute a promising first step toward making low resistance contacts.


arXiv: Mesoscale and Nanoscale Physics | 2018

Direct writing of heterostructures in single atomically precise graphene nanoribbons.

Chuanxu Ma; Zhongcan Xiao; Jingsong Huang; Liangbo Liang; Wenchang Lu; Kunlun Hong; Bobby G. Sumpter; J. Bernholc; An-Ping Li


arXiv: Mesoscale and Nanoscale Physics | 2018

Design of Atomically Precise Nanoscale Negative Differential Resistance Devices

Zhongcan Xiao; Chuanxu Ma; Jingsong Huang; Liangbo Liang; Wenchang Lu; Kunlun Hong; Bobby G. Sumpter; An-Ping Li; J. Bernholc


Physical Review Materials | 2018

Oxidization stability of atomically precise graphene nanoribbons

Chuanxu Ma; Zhongcan Xiao; Alex A. Puretzky; Arthur P. Baddorf; Wenchang Lu; Kunlun Hong; Jerzy Bernholc; An-Ping Li


Bulletin of the American Physical Society | 2018

Oxidation of Armchair Graphene Nanoribbons

Chuanxu Ma; Alexander A. Puretzky; Arthur P. Baddorf; Zhongcan Xiao; Wei-En lu; Kunlun Hong; J. Bernholc; An-Ping Li


Bulletin of the American Physical Society | 2018

First-principle simulation and design of graphene nanoribbon-based devices

Wenchang Lu; Zhongcan Xiao; Chuanxu Ma; Jinsong Huang; Liangbo Liang; Kunlun Hong; An-Ping Li; J. Bernholc


Bulletin of the American Physical Society | 2017

Silicon nanowire sensor for DNA detection and sequencing: an ab initio simulation

Wenchang Lu; Yan Li; Miroslav Hodak; Zhongcan Xiao; J. Bernholc


Bulletin of the American Physical Society | 2017

Ab initio study of the mechanism of bottom-up synthesis of graphene nanoribbons

Zhongcan Xiao; Chuanxu Ma; Honghai Zhang; Liangbo Liang; Jingsong Huang; Wenchang Lu; Kunlun Hong; An-Ping Li; J. Bernholc


Bulletin of the American Physical Society | 2017

Band alignment in atomically precise graphene nanoribbon junctions

Chuanxu Ma; Liangbo Liang; Kunlun Hong; An-Ping Li; Zhongcan Xiao; Wenchang Lu; J. Bernholc

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Wenchang Lu

Oak Ridge National Laboratory

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An-Ping Li

Oak Ridge National Laboratory

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Chuanxu Ma

Oak Ridge National Laboratory

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J. Bernholc

North Carolina State University

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Kunlun Hong

Oak Ridge National Laboratory

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Liangbo Liang

Oak Ridge National Laboratory

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Bobby G. Sumpter

Oak Ridge National Laboratory

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Jingsong Huang

Oak Ridge National Laboratory

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Alexander A. Puretzky

Oak Ridge National Laboratory

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Arthur P. Baddorf

Oak Ridge National Laboratory

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