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Dive into the research topics where Yuangang Li is active.

Publication


Featured researches published by Yuangang Li.


Small | 2014

Microstructured Graphene Arrays for Highly Sensitive Flexible Tactile Sensors

Bowen Zhu; Zhiqiang Niu; Hong Wang; Wan Ru Leow; Hua Wang; Yuangang Li; Liyan Zheng; Jun Wei; Fengwei Huo; Xiaodong Chen

A highly sensitive tactile sensor is devised by applying microstructured graphene arrays as sensitive layers. The combination of graphene and anisotropic microstructures endows this sensor with an ultra-high sensitivity of -5.53 kPa(-1) , an ultra-fast response time of only 0.2 ms, as well as good reliability, rendering it promising for the application of tactile sensing in artificial skin and human-machine interface.


Advanced Materials | 2013

Sericin for resistance switching device with multilevel nonvolatile memory.

Hong Wang; Fanben Meng; Yurong Cai; Liyan Zheng; Yuangang Li; Yuanjun Liu; Yueyue Jiang; Xiaotian Wang; Xiaodong Chen

Resistance switching characteristics of natural sericin protein film is demonstrated for nonvolatile memory application for the first time. Excellent memory characteristics with a resistance OFF/ON ratio larger than 10(6) have been obtained and a multilevel memory based on sericin has been achieved. The environmentally friendly high performance biomaterial based memory devices may hold a place in the future of electronic device development.


Angewandte Chemie | 2014

A synergistic capture strategy for enhanced detection and elimination of bacteria.

Yong‐Qiang Li; Bowen Zhu; Yuangang Li; Wan Ru Leow; Rubayn Goh; Bing Ma; Eileen Fong; Mark Boon Yang Tang; Xiaodong Chen

Despite the advanced detection and sterilization techniques available today, the sensitive diagnosis and complete elimination of bacterial infections remain a significant challenge. A strategy is reported for efficient bacterial capture (ca. 90%) based on the synergistic effect of the nanotopography and surface chemistry of the substrate on bacterial attachment and adhesion. The outstanding bacterial-capture capability of the functionalized nanostructured substrate enables rapid and highly sensitive bacterial detection down to trace concentrations of pathogenic bacteria (10 colony-forming units mL(-1)). In addition, this synergistic biocapture substrate can be used for efficient bacterial elimination and shows great potential for clinical antibacterial applications.


Small | 2014

Bioengineered Tunable Memristor Based on Protein Nanocage

Fanben Meng; Barindra Sana; Yuangang Li; Yuanjun Liu; Sierin Lim; Xiaodong Chen

Bioengineered protein-based nanodevices with tunable and reproducible memristive performance are fabricated by combining the unique high loading capacity of Archaeoglobus fulgidus ferritin with OWL-generated nanogaps. By tuning the iron amount inside ferritin, the ON/OFF ratio of conductance switching can be modulated accordingly. Higher molecular loading exhibits better memristive performance owing to the higher electrochemical activity of the ferric complex core.


Small | 2014

Optoelectronics of Organic Nanofibers Formed by Co‐Assembly of Porphyrin and Perylenediimide

Yuangang Li; Weina Wang; Wan Ru Leow; Bowen Zhu; Fanben Meng; Liyan Zheng; Jia Zhu; Xiaodong Chen

Organic nanofibers are formed by simple ionic co-assembly of positively charged porphyrin (electron donor) and negatively charged perylenediimide (electron acceptor) derivatives in aqueous solution. Two kinds of electron transfer routes between electron donor and electron acceptor under light excitation in nanofibers are confirmed by DFT calculations and experimental data.


Small | 2014

Graphene carrier for magneto-controllable bioelectrocatalysis

Pengbo Wan; Shengyan Yin; Lili Liu; Yuangang Li; Yuanjun Liu; Xiaotian Wang; Wanru Leow; Bing Ma; Xiaodong Chen

A magnetically driven fuel-free graphene carrier loaded with redox-active cargo-ferrocene as an electron mediator is fabricated for magneto-controllable bioelectrocatalysis. The activation and deactivation of redox-active cargos redox activity by magnetically driven positioning of the graphene carrier with loaded ferrocene near and away from the conductive support can be employed for magneto-switchable bioelectrocatalyzed oxidation of glucose by glucose oxidase between active and inactive electrocatalytic states, respectively.


Advanced Functional Materials | 2015

Configurable Resistive Switching between Memory and Threshold Characteristics for Protein-Based Devices

Hong Wang; Yuanmin Du; Yingtao Li; Bowen Zhu; Wan Ru Leow; Yuangang Li; Jisheng Pan; Tao Wu; Xiaodong Chen


Small | 2014

Artificial Skin: Microstructured Graphene Arrays for Highly Sensitive Flexible Tactile Sensors (Small 18/2014)

Bowen Zhu; Zhiqiang Niu; Hong Wang; Wan Ru Leow; Hua Wang; Yuangang Li; Liyan Zheng; Jun Wei; Fengwei Huo; Xiaodong Chen


Advanced Functional Materials | 2015

Memory Devices: Configurable Resistive Switching between Memory and Threshold Characteristics for Protein‐Based Devices (Adv. Funct. Mater. 25/2015)

Hong Wang; Yuanmin Du; Yingtao Li; Bowen Zhu; Wan Ru Leow; Yuangang Li; Jisheng Pan; Tao Wu; Xiaodong Chen


Small | 2014

Bioelectrocatalysis: Graphene Carrier for Magneto-Controllable Bioelectrocatalysis (Small 4/2014)

Pengbo Wan; Shengyan Yin; Lili Liu; Yuangang Li; Yuanjun Liu; Xiaotian Wang; Wanru Leow; Bing Ma; Xiaodong Chen

Collaboration


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Xiaodong Chen

Nanyang Technological University

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Bowen Zhu

Nanyang Technological University

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Wan Ru Leow

Nanyang Technological University

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Bing Ma

Nanyang Technological University

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Hong Wang

Nanyang Technological University

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Yuanjun Liu

Nanyang Technological University

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Eileen Fong

Nanyang Technological University

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Rubayn Goh

Nanyang Technological University

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