TS//RELIDO/UNCLASSIFIED MIX

20260731

26.212 log

Loss Prevention and Tracking

 

stealth and laser cutting denial https://blogbarley.blogspot.com/2026/01/266-photonic-weapon-denial-sheath.html

tracking stolen hardware https://blogbarley.blogspot.com/2026/07/26188-smoke.html applicable to vehicle theft tracking

Diamond graphene [Diamane] nanomesh integrated into support pole for loss prevention: 

Primary Terminology in Recent Literature

1. Diamane (Two-Dimensional Diamond)

The most widely accepted term for a fully fully-passivated $sp^3$-hybridized two-dimensional carbon film formed by bonding bilayer or few-layer graphene together (Qin et al., 2021; Sorokin & Yakobson, 2021).

  • Structure: Formed when inter-layer covalent bonds connect adjacent graphene sheets while top and bottom surface atoms are passivated by hydrogen ($H$), fluorine ($F$), or hydroxyl ($OH$) groups (Chernozatonskii et al., 2021).

  • Properties: Unlike zero-bandgap graphene ($sp^2$), diamane exhibits a wide direct bandgap ($3.1\text{ to }4.5\text{ eV}$) and ultra-high mechanical stiffness (Chernozatonskii et al., 2021).

2. Diamondene

Refers specifically to single-layer or few-layer 2D diamond structures where only one surface is functionalized, or structures formed transiently under high pressure without symmetric surface passivating caps (Chernozatonskii et al., 2021; Qin et al., 2021).

3. Diaphite

Refers to graphene-diamond composite nanostructures that contain covalently bonded, alternating $sp^2$ (graphitic) and $sp^3$ (diamond) crystalline domains (Németh et al., 2020). These allotropes occur naturally in shocked meteorites and high-pressure laboratory synthesis, combining the extreme hardness of diamond with the ductility and fracture toughness of graphitic layers (Németh et al., 2020).

4. Diamone / Diamondol

Terms used for semi-hydrogenated or asymmetric multilayer configurations where chemical conversion from $sp^2$ to $sp^3$ takes place on selective faces or partial coverage areas (Chernozatonskii et al., 2021; Qin et al., 2021).

Summary of Terms

TermStructure & DescriptionBonding Type
DiamaneFully passivated 2D diamond film (bilayer/multilayer)Pure $sp^3$ bulk, surface passivated
DiamondeneSingle-face functionalized or pressure-induced 2D diamond$sp^3$ with unbalanced surface bonds
DiaphiteCovalently interlinked graphene-diamond nanocompositeMixed $sp^2 / sp^3$ interfaces
DiamonePartially hydrogenated/functionalized multilayer grapheneHybrid $sp^2 / sp^3$

References

Chernozatonskii, L. A., Demin, V. A., & Kvashnin, D. G. (2021). Fully Hydrogenated and Fluorinated Bigraphenes–Diamanes: Theoretical and Experimental Studies. C, 7(1), 17. https://doi.org/10.3390/c7010017

Cited by: 50

Németh, P., McColl, K., Smith, R. L., Murri, M., Garvie, L. A. J., Alvaro, M., Pécz, B., Jones, A. P., Corà, F., Salzmann, C. G., & McMillan, P. F. (2020). Diamond-Graphene Composite Nanostructures. Nano Letters, 20(5), 3611–3619. https://doi.org/10.1021/acs.nanolett.0c00556

Cited by: 133

Qin, G., Wu, L., & Gou, H. (2021). Diamane: design, synthesis, properties, and challenges. Functional Diamond, 1(1), 83–92. https://doi.org/10.1080/26941112.2020.1869475

Cited by: 56

Sorokin, P. B., & Yakobson, B. I. (2021). Two-Dimensional Diamond—Diamane: Current State and Further Prospects. Nano Letters, 21(13), 5475–5484. https://doi.org/10.1021/acs.nanolett.1c01557

Cited by: 161


in reference to: https://gizmodo.com/flocks-surveillance-cameras-may-finally-have-a-weak-point-the-poles-holding-them-up-2000792956

Written and edited by Barley Bott | Research & Data Assistance by Gemini


#flocksecurity #flockcamera #theftprevention

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