TENGENA

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TENGENA

TENGENATENGENATENGENA
HOME
TECHNOLOGY
  • METAMATERIALS PRODUCTION
  • DEVELOPMENT RESOURCES
  • ASSEMBLING CAPABILITIES
  • ACCELERATED ANALYTICS
PRODUCTS
  • UNIQUE SUBNANOMATERIALS
  • PLASMA AND VACUUM SYSTEMS
  • MODULAR OPTOMECHANICS
  • COMPUTING ARCHITECTURES
INNOVATIONS
  • QUANTUM PHOTONIC SYSTEMS
  • SELF-SUSTAINABLE ENERGY
  • ZERO WASTE ARCHITECTURES
  • AI DATA CENTERS
ABOUT
INVESTORS
More
  • HOME
  • TECHNOLOGY
    • METAMATERIALS PRODUCTION
    • DEVELOPMENT RESOURCES
    • ASSEMBLING CAPABILITIES
    • ACCELERATED ANALYTICS
  • PRODUCTS
    • UNIQUE SUBNANOMATERIALS
    • PLASMA AND VACUUM SYSTEMS
    • MODULAR OPTOMECHANICS
    • COMPUTING ARCHITECTURES
  • INNOVATIONS
    • QUANTUM PHOTONIC SYSTEMS
    • SELF-SUSTAINABLE ENERGY
    • ZERO WASTE ARCHITECTURES
    • AI DATA CENTERS
  • ABOUT
  • INVESTORS
  • HOME
  • TECHNOLOGY
    • METAMATERIALS PRODUCTION
    • DEVELOPMENT RESOURCES
    • ASSEMBLING CAPABILITIES
    • ACCELERATED ANALYTICS
  • PRODUCTS
    • UNIQUE SUBNANOMATERIALS
    • PLASMA AND VACUUM SYSTEMS
    • MODULAR OPTOMECHANICS
    • COMPUTING ARCHITECTURES
  • INNOVATIONS
    • QUANTUM PHOTONIC SYSTEMS
    • SELF-SUSTAINABLE ENERGY
    • ZERO WASTE ARCHITECTURES
    • AI DATA CENTERS
  • ABOUT
  • INVESTORS

SUBNANOSCALE METAMATERIAL ARCHITECTURES AND PLASMONICS


We build what the future demands on the quantum scale

Economic Efficiency at the Quantum

DESIGN

Our vision at TENGENA is to be the leading provider of innovative solutions in the science and technology industry. We strive to create a better future through our work and to make a positive impact on society.

SCALE UP

Our team consists of experts in various fields including engineering, physics, chemistry, and biology. We bring together diverse perspectives and skills to tackle complex problems and develop creative solutions.

MANUFACTURE

We take a comprehensive approach to our work, focusing on every aspect of the product development process from research and design to testing and production. Our goal is to deliver high-quality results that exceed our clients' expectations.

TENGENA, NAVIGATING PICOSCALE PRECISION AND CUSTOMIZATION

Transformative Architectures

Miniaturization-Driven Integration

Miniaturization-Driven Integration

  Transformative metamaterial architectures, defined by sub-nanoscale structural precision, quantum-tailored interfaces, and multifunctional composition, enable tunable optoelectronic responses, engineered topological order, and customized dielectric or plasmonic behavior across critical technology platforms.

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Miniaturization-Driven Integration

Miniaturization-Driven Integration

Miniaturization-Driven Integration

 Enhanced efficiency driven by the ultra-dense, atomically scaled assembly, where quantum confinement, interfacial chemistry, and lattice-level precision collectively dictate the performance of charge transport, photonic interactions, thermal modulation, and defect evolution.

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Supply-Demand Optimization

Miniaturization-Driven Integration

Supply-Demand Optimization

  Strategic optimization of supply–demand dynamics enables a multi-parametric, material-aware framework that supports resilient sourcing, scalable synthesis, and advanced storage architectures, anchored in techno-economic viability across opto-electronic fabrication domains.

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METAMATERIALS NEW PARADIGM, WHERE GEOMETRY NOT JUST CHEMISTRY DEFINES THE FUNCTION

SUBNANO- AND NanoSCALE METAmaterials for Next GenERATION

High density integration & Decreased inductive impedance

Compact architectures & Distortion-free signal processing

High density integration & Decreased inductive impedance

 


Reduced tonal ability & lower thermal generation

Compact architectures & Distortion-free signal processing

High density integration & Decreased inductive impedance

Compact architectures & Distortion-free signal processing

Compact architectures & Distortion-free signal processing

Compact architectures & Distortion-free signal processing



MICROSCALING & ENHANCED CURRENT-CARRYING CAPACITY

Zero-defect conformal layering over high-aspect-ratio geometries

Compact architectures & Distortion-free signal processing



SEGMENTED COATING ELEMENTS & ELEVATED CONDUCTIVITY

Zero-defect conformal layering over high-aspect-ratio geometries

Zero-defect conformal layering over high-aspect-ratio geometries



Zero-defect conformal layering over high-aspect-ratio geometries

Zero-defect conformal layering over high-aspect-ratio geometries

Zero-defect conformal layering over high-aspect-ratio geometries



Structural reliability & Long-term stability

Supply-demand optimization & CIRCULAR MATERIAL FLOWS

OPTIMIZED INTRINSIC LOSSES & ENERGY EFFICIENCY



OPTIMIZED INTRINSIC LOSSES & ENERGY EFFICIENCY

Supply-demand optimization & CIRCULAR MATERIAL FLOWS

OPTIMIZED INTRINSIC LOSSES & ENERGY EFFICIENCY



Supply-demand optimization & CIRCULAR MATERIAL FLOWS

Supply-demand optimization & CIRCULAR MATERIAL FLOWS

Supply-demand optimization & CIRCULAR MATERIAL FLOWS



TENGENA PLATFORM: DETERMINISTIC ATOMIC-SCALE SYNTHESIS

Ag, Al, Au, Cu, Mo, Nb, Ni, Pt, Pd, Te, Ti, Re, Ru, Zn, W

CRITICAL MINERALS RANGE

MONODISPERSION &CONCENTRATION

MEDIA FORMATS &SCALABILITY

    

Deep capacity of advanced picoscale and nanoscale materials manufacture, particularly from noble, alloy, and compound metals.

MEDIA FORMATS &SCALABILITY

MONODISPERSION &CONCENTRATION

MEDIA FORMATS &SCALABILITY


 Providing access to different scale material format including dispersions, colloids, and functional systems in organic and inorganic substrates. 

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MONODISPERSION &CONCENTRATION

MONODISPERSION &CONCENTRATION

MONODISPERSION &CONCENTRATION

    

Fabricating stable, monodispersed, and concentrated colloids in aqueous, inorganic, organic, and proprietary substrates. 

PlasmonicS to Transform Opto-Electronics and COMPUTING

  1. High density integration & Decreased inductive impedance 
  2. Reduced tonal ability & Significantly lower thermal generation 
  3. Compact architectures & Distortion-free signal processing
  4. Miniaturization & Enhanced current-carrying capacity 
  5. Segmented coating & Elevated conductivity 
  6. Low intrinsic losses & Energy efficiency
  7. Structural reliability & Long-term stability
  8. Supply-demand optimization

TENGENA PICOMATERIALS ADVANTAGES

  1. Reduced Precursor Dependency
  2. Proprietary Particle Plasma Liquid-Phase Synthesis
  3. Material Uniformity & Dispersion
  4. Architectural Compatibility
  5. High-Temperature Processing Resilience
  6. Lithographic Alignment & Overlay Fidelity
  7. Thin-Film Engineering Advancement
  8. Precision Controlled Plasma-Assisted Deposition

SUBSET OF CRITICAL MINERALS

TENGENA’s position is enabled by strategic competitive capability in:

  

  1. Nanoplasmonic synthesis across aerosol and liquid interfaces, which eliminates entrainment of unnecessary chemical solvents and ensures flexibility in reducing agents as chemically-free and oxygen-free noble, alloy, and compound metal processing.
  2. Ultra-uniform particles or colloids, ranging from pico- to nanoscale, formed by precisely controlled size (0.1–100 nm) for optimized applications.
  3. Scalable one-pot concentrated nanomaterials, exceeding 70 % OD, allowing smooth transitions from prototype development to high-volume production.
  4. Extended stability, maintaining structural integrity and functionality up to twelve-months shelf-life period when stored at 4°C and up to six-months shelf-life period when stored at 24°C.
  5. Innovative nanocoating solutions using self-assembling and solvent-driven spontaneous pico- and nanoscale architectures, further improving product stability and performance.
  6. Cost-effective and time-consuming synthesis with minimal/no purification or defect remediation needed due to the high confined monodispersed status.

REVIEW

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