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Hengxi Chen

Researcher at University of Southern California

Publications -  12
Citations -  127

Hengxi Chen is an academic researcher from University of Southern California. The author has contributed to research in topics: Polymer & Chemistry. The author has an hindex of 1, co-authored 2 publications receiving 31 citations.

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Stretchable Nanolayered Thermoelectric Energy Harvester on Complex and Dynamic Surfaces

TL;DR: A stretchable TEG (S-TEG) (over 50% stretchability of the entire device) that is geometrically suitable for various complex and dynamic surfaces of heat sources and offers a potential energy solution for the wearable devices for health monitoring.
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Recent Advancements in Biomimetic 3D Printing Materials With Enhanced Mechanical Properties

TL;DR: An overview of recent developments in biomimetic 3D printing materials with enhanced mechanical properties is provided in this paper, where the design and fabrication inspired are from various creatures, such as lobster claw, honeycomb, nacre, balsa wood, etc.
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Well‐dispersed poly(ether‐ether‐ketone)/multi‐walled carbon nanotubes nanocomposite for harsh environment applications

TL;DR: In this article , a PEEK nanocomposite containing 10 wt% of well-dispersed carbon nanotubes (MWCNT) was successfully prepared using a solution mixing approach, which significantly increased Young's modulus, much lower water absorption, and better modulus retention under hot-wet conditions.
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Multifunctional polyethylene nanocomposites based on polyethylene-grafted α-zirconium phosphate nanoplatelets

TL;DR: In this article , a nanoplatelet functionalization methodology was developed to achieve its well exfoliation and multifunctionality in polyethylene (PE), which can be grafted with fire retarding molecules to further improve flame retardancy of PE.
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Mechanical properties of reactive polyetherimide-modified tetrafunctional epoxy systems

TL;DR: In this paper , amine functionalized reactive polyetherimide (rPEI) having two different molecular weights and loading levels were incorporated in tetraglycidyl-4, 4′-diaminodiphenyl methane (TGDDM) epoxy resin to study the structure-property relationship, including effects of reaction-induced phase separation on fracture toughness.