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Suo Hon Lim

Researcher at Agency for Science, Technology and Research

Publications -  6
Citations -  1321

Suo Hon Lim is an academic researcher from Agency for Science, Technology and Research. The author has contributed to research in topics: Ultimate tensile strength & Coercivity. The author has an hindex of 4, co-authored 5 publications receiving 1180 citations.

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A stable solution-processed polymer semiconductor with record high-mobility for printed transistors

TL;DR: This optimised polymer semiconductor represents a significant progress in semiconductor development, dispelling prevalent skepticism surrounding practical usability of organic semiconductors for high-performance microelectronic devices, opening up application opportunities hitherto functionally or economically inaccessible with silicon technologies, and providing an excellent structural framework for fundamental studies of charge transport in organic systems.
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Dual-Phase Spinel MnCo2O4 and Spinel MnCo2O4/Nanocarbon Hybrids for Electrocatalytic Oxygen Reduction and Evolution

TL;DR: An electrically rechargeable zinc-air battery using dp-MnCo2O4/CNT hybrid catalysts on the cathode was successfully operated for 64 discharge-charge cycles (or 768 h equivalent), significantly outperforming the Pt/C counterpart, which could only survive up to 108 h under similar conditions.
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Antimicrobial functionalization of silicone surfaces with engineered short peptides having broad spectrum antimicrobial and salt-resistant properties

TL;DR: The findings of this study clearly indicate the potential for the development of AMP-based coating platforms to prevent CAUTIs and the feasibility of immobilizing two newly engineered arginine/lysine/tryptophan-rich AMPs with broad antimicrobial spectra and salt-tolerant properties on silicone surfaces to addressCAUTIs.
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Temperature and Chemical Bonding‐Directed Self‐Assembly of Cobalt Phosphide Nanowires in Reaction Solutions into Vertical and Horizontal Alignments

TL;DR: The preparation of vertically or horizontally aligned self-assemblies of CoP nanowires is demonstrated for the first time by aging them in the reaction solution for a sufficient time at 20 or 0 °C to explore the controlled self-assembly of various highly anisotropic nanostructures into long-range ordered structures with collective properties.
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High Throughput Multi-Property Evaluation of Additively Manufactured Co-Fe-Ni Materials Libraries

TL;DR: In this paper , the magnetic, mechanical, and electrical properties of Co-Fe-Ni alloy samples processed by laser additive manufacturing (AM) were carried out, and novel alloy compositions possessing promising combinations of properties were identified by accelerated methodologies.