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About EvoTek
Innovations

With medical scientists' backing, we are advancing surface protection beyond the limitations of traditional chemical treatments — safer, more efficient, and genuinely sustainable.

What We Do & What We Deliver

The world's most advanced class of water-based, intrinsically safe Smart Surface Technologies — built on physics, not chemistry.

OUR PLATFORM

EvoTek Innovations Ltd, through its own R&D and strategic scientific partnerships, has created the world's most advanced class of water-based, intrinsically safe Smart Surface Technologies (SST) built on Engineered Surface Physics (ESP) — not chemistry, not biocides, and not toxic residues. ESP is a physics-driven platform that modifies surface energy and molecular behaviour, creating a stable, long-lasting transformation in how a surface interacts with its environment. These technologies do not release chemicals, do not leach, and require no SDS, because they operate through molecular-scale physical structuring, altering surface charge, morphology, wettability, and nanoscale topology across fabrics, metals, plastics, rubbers, wood, glass, bedding, and soft furnishings.

This engineered shift in surface behaviour delivers real-world performance gains: stain resistance, self-cleaning and self-polishing effects, UV protection, reduced fouling, and extended material lifecycles. By lowering the adhesion of contaminants, organic residues, and biofilm-forming deposits, ESP-based SST creates cleaner, safer environments in homes, industry, healthcare, and public spaces — reducing the environmental conditions that support disease transmission and antimicrobial resistance (AMR). This is proactive hygiene, not reactive disinfection: continuous, preventative, non-toxic, and fully aligned with WHO and NHS sustainable hygiene principles.

Our biodegradable nanoscale architecture provides long-lasting hygiene and material protection without contributing to AMR, because it does not poison microbes — it removes the physical conditions they rely on. By reinforcing surfaces at the molecular level, ESP also reduces Environmental Stress Cracking (ESC), preventing micro-fracture initiation and chemical-driven degradation that cost organisations millions annually. EvoTek delivers a smarter, safer, future-proof approach to contamination control and material preservation — pure physics, continuous protection, and environmental responsibility engineered into every surface.

THE VALUE PROPOSITION

With efficacy of 336 hours and coverage per litre up to 140 m², your current costs will reduce around 30 times — with the same cleaning teams you have now in situ.

KEY PERFORMANCE DATA
Efficacy Duration336 Hours
Coverage per LitreUp to 140 m²
Cost vs ChemicalsUp to 30×
Chemical ReleaseNONE
SDS RequiredNO
AMR ContributionZERO
ToxicityNONE
BiodegradableYES
Food SafeYES
NHS AlignedYES
WHY EVOTEK OUR CLAIMS

Educating Industries on a Better Way

Comprehensive research and supportive clinical trials have led to the development of a hybrid, biodegradable nanoscale barrier coating. Using Smart Surface Technology (SST) — a Non-Depleting Technology (NDT) — it delivers continuous antimicrobial protection for up to 336 hours, significantly reducing contamination burden without repeated chemical application.

Our goal is to educate different industries on a safer and more efficient surface protection approach — one that prevents respiratory effects on humans, eliminates toxic effects on the environment, and significantly reduces pathogenic resistance levels.

BIODEGRADABLE NON-TOXIC FOOD SAFE NHS RECOGNISED
WHAT WE PREVENT
01

RESPIRATORY EFFECTS ON HUMANS

Applicator designed to exact micron — treatment particles don't linger in air.

02

TOXIC ENVIRONMENTAL IMPACT

Water-based, natural acid formulation. Compliant with EC 648/2004 biodegradability regulation.

03

PATHOGENIC RESISTANCE

Physical rupture mechanism — pathogens cannot develop metabolic resistance to physical destruction.

What We Control

Inhibiting all major pathogenic strains on treated surfaces — keeping public health at a more progressive stage.

BACTERIA

Hospital-acquired infection pathogens and antibiotic-resistant strains. Broad-spectrum antimicrobial efficacy via physical cell membrane disruption.

VIRUSES

Coronavirus, Ebola, SARS-CoV-2 and all enveloped viruses per EN 14476. Validated Log4 — 99.99% microbial reduction (BluTest Laboratories, 2020).

FUNGI

Broad-spectrum antifungal efficacy. Prevents colonisation on surfaces in high-humidity environments including healthcare and catering.

The Science Behind SST

ORGANOSILANE CHEMISTRY

Organosilane chemistry enables covalent attachment to substrates and surfaces, forming a non-leaching antimicrobial layer. The bond is permanent — not a coating that wears off.

Bond TypeCOVALENT
LeachingNONE
Surface TypesANY SUBSTRATE
AMR STEWARDSHIP

The physical disruption mechanism ruptures pathogens rather than relying on metabolic inhibition — dramatically reducing the risk of antimicrobial resistance development. Supports NHS Green Plan priorities.

Resistance RiskMINIMAL
Chemical LoadREDUCED
NHS AlignmentGREEN PLAN
SURFACE VERSATILITY

Due to a carrier complex in the formula, SST attaches to any surface — soft furnishings, hard surfaces, metals, plastics, fabrics. Compatible with standard cleaning methods.

PLASTICS METALS FABRICS POROUS SOFT FURNISHINGS
ECOLOGICAL ALIGNMENT

Water-based formulation made with a natural acid. Surfactants comply with biodegradability criteria in Regulation EC 648/2004. Supports sustainability goals and lowers chemical load on the environment.

BaseWATER-BASED
AcidNATURAL
RegulationEC 648/2004

Trusted by Leading Bodies

NHS SUPPLY PARTNER

Secured NHS supply partner status — deploying 5th generation SST technology within NHS settings.

WHO RECOGNISED

Smart Surface Technology classified as a candidate technology in NHS briefing papers. Internationally recognised.

ISO 9001 · ISO 14001

Dual ISO certification demonstrates commitment to quality management and environmental responsibility.

JOIN US

Meet the Team Behind the Science

Three decades of combined expertise across biomedical engineering, commercial leadership and technology deployment.