Systems and methods for intelligent phishing threat detection and phishing threat remediation in a cyber security threat detection and mitigation platform
US-2024414198-A1 · Dec 12, 2024 · US
US2023342457A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2023342457-A1 |
| Application number | US-202318342790-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jun 28, 2023 |
| Priority date | Nov 2, 2018 |
| Publication date | Oct 26, 2023 |
| Grant date | — |
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The present invention relates to core shell liquid metal encapsulates comprising multi-functional ligands, networks comprising such encapsulates and processes of making and using such encapsulates and networks. When subjected to strain, such network's conductivity is enhanced, thus allowing the network to serve as a healing agent that restores at least a portion of the conductivity in an adjacent conductor.
Opening claim text (preview).
What is claimed is: 1 . A stretchable conductor comprising a liquid metal selected from the group consisting of Hg, Pb, Sn, Sb, Cd, Bi, Ga, In, Al, Zn, Ag, Au, Tl and mixtures thereof, said stretchable conductor having one or more of the following properties: a) a conductivity increase of about 5 to about 10 orders of magnitude over an initial elongation of about 1% to about 300%; b) a repeatable resistance variation of less than 100% over an elongation of about 150% to about 750%; c) a repeatable resistance decrease of greater than 0% to about 20% over a range of elongation from greater than 0% to about 100%, a repeatable resistance decrease of greater than 5% to about 20% over a range of elongation from greater than 0% to about 100%, or a repeatable resistance decrease of greater than 0% to about 10% over a range of elongation from greater than 0% to about 50%. 2 . A stretchable conductor according to claim 1 , comprising a liquid metal selected from the group consisting of Ga, In, Sn, Bi, Pb, Cd, Sb and mixtures thereof, said stretchable conductor having one or more of the following properties: a) a conductivity increase of about 7 to about 9 orders of magnitude over an initial elongation of about 50% to about 125%; b) a repeatable resistance variation of less than 50% over an elongation of about 150% to about 300% c) a repeatable resistance decrease of greater than 0% to about 20% over a range of elongation from greater than 0% to about 100%, a repeatable resistance decrease of greater than 5% to about 20% over a range of elongation from greater than 0% to about 100%, or a repeatable resistance decrease of greater than 0% to about 10% over a range of elongation from greater than 0% to about 50%. 3 . A stretchable conductor according to claim 1 , comprising a liquid metal selected from the group consisting of Ga, In, Sn, Bi, Sb and mixtures thereof. 4 . A stretchable conductor according to claim 1 , said stretchable conductor comprises a core shell liquid metal encapsulate network. 5 . A process of producing a core shell liquid metal encapsulate network from a plurality of core shell liquid metal encapsulates comprising multi-functional ligands, said process comprising stimulating said multi-functional ligands by imparting energy to said ligands and/or combining said multi-functional ligands with one or more initiators. 6 . A process according to claim 5 wherein said core shell liquid metal encapsulates comprising multi-functional ligands are suspended in a continuous liquid phase prior to being stimulated and optionally deposited on a substrate and optionally dried on said substrate. 7 . A method of using a stretchable conductor according to claim 1 , comprising: applying said liquid metal encapsulate network to a substrate including coating at least a portion of one or more surfaces of said substrate with said liquid metal encapsulate network, encapsulating said substrate with said liquid metal encapsulate network; connecting at least a portion of two or more substrates with said liquid metal encapsulate network and/or using said liquid metal encapsulate network as an internal component of a substrate.
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