Hanbin Liao
Nanyang Technological University
22 Papers
1 Citations
Hanbin Liao is an academic researcher from Nanyang Technological University. The author has contributed to research in topics: Catalysis & Electrocatalyst. The author has an hindex of 18, co-authored 22 publications. Previous affiliations of Hanbin Liao include Beijing University of Chemical Technology & Peking University.
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Papers
Iron-facilitated dynamic active-site generation on spinel CoAl2O4 with self-termination of surface reconstruction for water oxidation
Tianze Wu,Shengnan Sun,Jiajia Song,Shibo Xi,Yonghua Du,Bo Chen,W. A. Sasangka,Hanbin Liao,Chee Lip Gan,Chee Lip Gan,Günther G. Scherer,Lin Zeng,Haijiang Wang,Hui Li,Alexis Grimaud,Zhichuan J. Xu +15 more
- 01 Sep 2019
TL;DR: In this article, a strategy using Fe substitution was proposed to enable the inactive spinel CoAl2O4 to become highly active and superior to the benchmark IrO2. But, it was not shown that the Fe substitution can facilitate surface reconstruction into active Co oxyhydroxides under OER conditions.
Heterostructured Electrocatalysts for Hydrogen Evolution Reaction Under Alkaline Conditions
TL;DR: An overview of the current developments in alkaline HER catalysts is provided, as well as the design principles for the future development of heterostructured nano- or micro-sized electrocatalysts are provided.
Synthesis of amino-functionalized graphene as metal-free catalyst and exploration of the roles of various nitrogen states in oxygen reduction reaction
TL;DR: In this article, a solvothermal method to synthesize amino-functionalized graphene (AG) from graphite oxide (GO) only in the presence of ammonia solution was proposed.
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Covalency competition dominates the water oxidation structure–activity relationship on spinel oxides
Yuanmiao Sun,Hanbin Liao,Jiarui Wang,Bo Chen,Shengnan Sun,Shengnan Sun,Samuel Jun Hoong Ong,Shibo Xi,Caozheng Diao,Yonghua Du,Yonghua Du,Jiaou Wang,Mark B. H. Breese,Shuzhou Li,Hua Zhang,Zhichuan J. Xu +15 more
- 01 Jul 2020
TL;DR: In this paper, the authors demonstrate that the OER activity on spinel oxides is intrinsically dominated by the covalency competition between tetrahedral and octahedral sites, and the design principle is used to predict and confirm the superior activity of [Mn]T[Al 0.5Mn 1.5]OO4.
A Flexible Microwave Shield with Tunable Frequency-Transmission and Electromagnetic Compatibility
Hualiang Lv,Hualiang Lv,Zhihong Yang,Samuel Jun Hoong Ong,Chao Wei,Hanbin Liao,Shibo Xi,Yonghua Du,Guangbin Ji,Zhichuan J. Xu +9 more
Abstract: Wireless techniques have improved life quality for many. However, the drawbacks like instable signal and high loss in air of electromagnetic interference hinder its further development. One solution is to develop a smart material or device, which can selectively receive a specific frequency (fs) of electromagnetic wave with less loss, and simultaneously show effective shielding against unwanted waves (frequency is denoted as fp). A bottleneck has been reached, such that using materials alone is unable to achieve the above due to the limitation of the intrinsic physical properties of materials. Here, a strategy combining the material structure design with a voltage control is proposed to overcome the limitation of materials toward the aforementioned task. The efforts are focused on exploring a suitable electrically tunable material with a sensitive response to an external voltage and the flexibility to be engineered to the needed macrostructure. As a result, the fs region can be fine‐tuned to 8–8.4, 8–9.3, and 8–10.3 GHz.
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