top of page
Shady Background.png

EXPLAIN IT SIMPLY

What exactly is the
Quantum.Silver® complex?

Quantum.Silver® is a complex of silver nanoparticles attached to a larger carrier molecule. This creates a stable, controlled silver nanoparticle complex that is different from conventional colloidal silver and free silver nanoparticles.

Inert Carrier Molecule

200 - 500 nm

Quantum Silver.png
Arrow Icon'_edited.png

Silver Nanoparticles

Quantum dotted on the carrier molecule.

Arrow Icon'_edited.png
Tick Icon_edited.png

Keeps the complex stable

Tick Icon_edited.png

Helps prevent the silver from being used up before reaching the infection

Tick Icon_edited.png

Helps prevent silver from accumulating in the body

Tick Icon_edited.png

Helps prevent silver from entering healthy cells

<20 nm

A precisely engineered silver nanoparticle complex in which the silver nanoparticles are quantum-dotted onto an inert carrier molecule, and remain uncharged.

delicate_olive_beige_botanical_branch_ed
02_controlled_reaction_edited_edited.png

This creates a more controlled, consistent and purpose-designed formulation.

Traditional Silver.png
Dial up Internet Icon.png

DIAL UP INTERNET

Traditional Silver

The basic concept remains familiar.

Quantum.Silver.png
Fibre Icon.png

FIBRE

Quantum.Silver®

The technology behind it has taken a major leap forward.

The difference is not a minor upgrade.

It's more like moving from dial-up internet to fibre: the basic concept remains familiar, but the technology behind it has taken a major leap forward. Quantum.Silver® is not simply another silver product, it represents a significant evolution in how silver is formulated and delivered.

A NEW GENERATION OF SILVER TECHNOLOGY

What Makes Quantum.Silver®
Different?

Quantum.Silver® represents a new generation of silver technology. Traditional silver products may contain silver in less controlled forms, such as dissolved silver ions or free nanoparticles of varying sizes. Quantum.Silver® is:

MECHANISMS

How It Works

Antibacterial Action

Silver nanoparticles may interact with the bacterial surface, interfere with important bacterial proteins and disrupt processes the bacterium needs to survive.

Virus.png

Antiviral Action

Viruses must attach to and enter a host cell before they can reproduce. Silver nanoparticles may interfere with some of these early steps and may also disrupt other parts of the viral lifecycle.

Antifungal Action

Silver nanoparticles may damage fungal cell structures and disrupt the internal systems fungi need to grow and reproduce.

A NEW GENERATION OF SILVER TECHNOLOGY

Why Multiple Mechanisms Matter

Many conventional antimicrobial medicines act mainly on one particular biological target. Silver nanoparticles have been shown to interact with microorganisms in several different ways. This multi-step activity is one reason they continue to be investigated as antimicrobial materials.

bottom of page