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MXene-based 3D printable conductive ink, preparation method and applications thereof
Reference #: 01661
The University of South Carolina is offering licensing opportunities for MXene-based 3D printable conductive ink, preparation method and applications thereof.
Background:
This innovation involves a new method to create a special type of ink that can be used in 3D printing processes. This ink, made from a Titanium carbide (Ti3C2Tx)...
Published: 7/10/2026
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Updated: 5/9/2024
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Inventor(s): Nader Taheri-Qazvini, Farivash Gholamirad, Monirosadat Sadati
Keywords(s):
Category(s): Advanced Materials
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Auxetic metamaterials guided by blue-phase liquid crystals disclination network
Reference #: 01569
The University of South Carolina is offering licensing opportunities for Auxetic metamaterials guided by blue-phase liquid crystals disclination network
Background:
Metamaterials with a negative Poisson ratio are known as auxetic structures. Interestingly, auxetic and near-zero Poisson’s ratio (ZPR) responses are ubiquitous...
Published: 7/10/2026
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Updated: 8/2/2022
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Inventor(s): Monirosadat Sadati, Sepideh Norouzi, Nader Taheri-Qazvini, Jose Adrian Martinez Gonzalez
Keywords(s): 3D printing, Auxetic structure, Blue phase liquid crystals, Metamaterials, Zero Poisson’s ratio
Category(s): Advanced Materials, Engineering and Physical Sciences, Health Sciences
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Chiral photonic inks for 3D printing of iridescent architectures
Reference #: 01549
The University of South Carolina is offering licensing opportunities for Chiral photonic inks for 3D printing of iridescent architectures
Background:
Currently, most colorings used in various applications are limited in range and come from artificial chemical formulations.
Invention Description:
The present innovation provides...
Published: 7/10/2026
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Updated: 1/12/2022
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Inventor(s): Monirosadat Sadati, Kyle George
Keywords(s):
Category(s): Engineering and Physical Sciences, Environmental and Sustainability
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