ONYX NANO TECH LLC is an advanced materials engineering firm based in Pelham, New Hampshire, specializing in custom nanomaterial formulation, precision thin film deposition, functional industrial nano-coatings, tribological surface modification, and material performance prototyping serving aerospace, precision manufacturing, medical device, semiconductor and advanced automation clients across New England. Our violet brand identity symbolizes cutting-edge nanoscale science, controlled surface engineering, ultra-thin protective barriers, and high-performance material solutions designed to extend component service life under extreme operating conditions. All coating processes, thin film deposition workflows, material characterization testing and surface engineering protocols developed by Onyx Nano Tech comply with ASTM surface testing standards, aerospace material specifications, and clean-room processing best practices. We deliver a complete portfolio of advanced material services for industrial and research customers: custom nanocoating formulation, physical and chemical thin film deposition, friction & wear resistant tribological coatings, corrosion barrier nanolayers, hydrophobic & oleophobic surface treatment, thermal barrier thin films, material surface characterization lab testing, prototype component coating trials, and process scaling consultation for mass manufacturing production. Our material development laboratory, controlled processing workspace, surface analysis testing station and administrative offices are located at 23 Balcom Rd, Pelham, NH 03076, conveniently positioned along the Massachusetts border with rapid highway access to tech and manufacturing hubs throughout southern New Hampshire and northern Massachusetts. Our team consists of material scientists, surface engineering specialists, thin film process technicians and lab characterization engineers equipped with precision deposition equipment, surface profilometers, tribology test rigs and environmental exposure chambers. Our standard project workflow begins with initial component performance requirement review, baseline material testing, coating concept design, small-batch prototype treatment, lab performance validation, process refinement, and scaled-up coating process documentation for client production integration. Nano-engineered surface treatments implemented by Onyx Nano Tech can drastically reduce component wear, resist chemical corrosion, lower surface friction, and improve high-temperature durability for precision mechanical and electronic parts.
Request Nanomaterial Coating ConsultationONYX NANO TECH LLC is a registered limited liability company operating from 23 Balcom Rd, Pelham, NH, US 03076. Founded by material scientists and surface process engineers with over 31 combined years developing nanoscale coatings, thin film systems and functional surface treatments for industrial, medical and aerospace component manufacturers across the Northeast United States. Onyx Nano Tech was established to fill a critical regional technology gap: most regional machine shops and engineering firms focus on mechanical machining, PCB hardware or automation integration without specialized in-house expertise in nanomaterial science, ultra-thin film deposition and high-performance functional surface modification. Every member of our technical staff holds hands-on experience working with PVD/CVD thin film processes, nanoparticle dispersion chemistry, tribology testing, corrosion exposure evaluation and precision component surface preparation protocols. Each new client project starts with detailed analysis of operating conditions: temperature range, contact friction, chemical exposure, target lifespan improvement and geometric constraints of finished parts. Inside our Pelham lab facility we conduct baseline surface roughness measurement, wear cycle testing, salt-spray corrosion evaluation and thermal cycling validation to verify coating performance before moving to larger component batches. Our core competitive advantage is exclusive specialization in nanoscale surface engineering, fully equipped local materials laboratory in Pelham New Hampshire, small-batch prototype coating capability, and cross-industry experience supporting medical, semiconductor and precision aerospace component developers. All competing New England tech businesses focus on IoT hardware, telemetry systems, factory layout design, recycling or general automation without deep domain knowledge of thin film deposition and functional nanocoating technology. Onyx Nano Tech unites custom material formulation, controlled deposition processing, surface characterization testing and manufacturing scale-up consulting under one regional facility. Our secure digital laboratory archive preserves all coating process parameters, test reports and material data for consistent repeatability across prototype and production runs. From our Balcom Road laboratory our engineering team can travel quickly to manufacturing facilities throughout southern NH and MA for component sampling and technical review meetings. We provide three tiered service packages matched to project stage and batch scale: Starter Prototype Package – small sample nanocoating trials + baseline surface performance testing for feasibility evaluation; Standard Development Package – optimized thin film process, full lab characterization, multiple coating iteration testing and detailed process documentation; Enterprise Production Package – scalable coating process refinement, long-term technical support, custom quality control procedures and on-site process integration consulting for high-volume manufacturing lines. All lab test data and proprietary coating process records are securely stored on United States hosted servers.
Development of tailored nanoparticle dispersions for liquid-applied coating systems, controlled particle size distribution tuning, compatibility testing with substrate materials, and stability evaluation under storage and operating temperature ranges for industrial and research applications.
Physical and chemical vapor deposition of ultra-thin functional films for precision components. Development of deposition recipes for wear resistance, corrosion protection, electrical barrier layers and thermal management applications for metal, ceramic and polymer substrates.
Functional surface treatments designed to reduce sliding and rolling friction, minimize abrasive wear, extend service life of bearings, gears, cutting tools and moving precision components operating under heavy load and variable temperature conditions.
Dense nanoscale barrier coatings blocking moisture, salt, solvents and corrosive vapors. Suitable for outdoor hardware, marine components, medical instrumentation and precision parts exposed to harsh chemical operating environments.
Super-slick surface engineering for self-cleaning, anti-stain, anti-fouling performance. Repel water, oils and organic contaminants without thick polymer layers, ideal for optical components, sensor housings and precision instrumentation.
Surface roughness profiling, thickness measurement of thin films, tribology wear cycle testing, salt spray corrosion exposure, thermal cycling durability evaluation and optical property measurement with formal written test reports.
Small-batch treatment of customer prototype components, iterative process adjustments, side-by-side performance comparison of multiple coating variants and identification of optimal surface treatment recipes before committing to production scale.
Translation of lab-scale coating processes into repeatable production workflows, development of quality control test methods, troubleshooting of deposition consistency issues and ongoing engineering support for component manufacturing facilities.
Developed optimized thin film deposition process for aerospace alloy gear components. Lab wear testing demonstrated significant reduction in friction and contact fatigue. The surface treatment extended predicted service interval and reduced maintenance requirements for airborne mechanical assemblies.
Created stable ultra-thin barrier surface treatment for reusable medical instrumentation. Completed extensive corrosion and biocompatibility testing, delivering a repeatable coating process suitable for regular sterilization cycles without surface degradation.
Engineered low-contamination thin film surface treatment for vacuum semiconductor testing hardware. Validated low outgassing performance under high vacuum conditions and provided full process documentation for integration into client semiconductor test manufacturing workflow.