New Materials
Explore our New Materials chemical additives sourced from qualified Chinese manufacturers — competitive pricing, reliable quality. 68 products available.
new materials
3Y-TZP Zirconia Powder
CAS: 1314-23-4
3mol% yttria-stabilized tetragonal zirconia polycrystal (3Y-TZP) powder, equivalent to Tosoh TZ-3Y. Engineered for high fracture toughness, flexural strength, and phase stability in demanding structural and biomedical ceramic applications.
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8Y-CSZ Zirconia Powder
CAS: 1314-23-4
8mol% yttria-stabilized cubic zirconia (8Y-CSZ) powder, equivalent to Tosoh TZ-8Y. Fully stabilized cubic phase delivers superior ionic conductivity for solid oxide fuel cells, oxygen sensors, and thermal barrier coatings.
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Aerogel + Microsphere Dual-Scale Insulation Additive System
CAS: 7631-86-9 / 65997-17-3
A two-component insulation additive system combining nano-porous silica aerogel powder (CAS 7631-86-9) and hollow borosilicate glass microspheres (CAS 65997-17-3). The system achieves 0.030–0.035 W/(m·K) in a 1.5 mm waterborne coating — performance within 15% of pure aerogel coatings at approximately 1.8× the cost of microsphere-only formulas, versus 3.2× for pure aerogel. Mechanism: aerogel powder (2–50 nm pores) suppresses gas-phase heat transfer via the Knudsen effect at nano-scale; microspheres (25–80 µm diameter, sealed hollow) block convection and break up binder conduction paths at micro-scale. The two additives target different heat transfer mechanisms with no functional overlap — the conductivity reduction is cumulative. Recommended starting formula for general insulation coatings: 8 wt% aerogel medium grade (20–100 µm, hydrophobic) + 15 vol% HL38 microspheres in waterborne acrylic binder.
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Aerogel Powder for Thermal Insulation Coatings
CAS: 7631-86-9
Nano-porous SiO₂ aerogel powder (CAS 7631-86-9) engineered for direct incorporation into thermal insulation coatings. Thermal conductivity 0.012–0.020 W/(m·K), porosity >90%, BET surface area 600–800 m²/g. Three particle size grades: fine (1–20 µm) for thin-film coatings ≤0.5 mm, medium (20–100 µm) for standard insulation coatings 0.5–3 mm, coarse (100–300 µm) for insulation renders and mortars. Hydrophobic surface treatment (contact angle >140°) is the standard grade for waterborne and solvent-based coating systems — prevents re-agglomeration and moisture re-absorption after formulation. Recommended loading 5–15 wt%; pairs with hollow glass microspheres for the dual-scale system achieving 0.030–0.035 W/(m·K) at significantly lower cost than pure aerogel systems.
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Bio-Based Additive
Bio-based additive is a multifunctional coating and polymer additive derived from renewable plant-based feedstocks, offering an environmentally sustainable alternative to petrochemical-derived additives. It functions as a wetting agent, co-solvent, or plasticizer depending on the formulation, and is fully compatible with low-VOC and waterborne systems. Derived from corn, sugarcane, or vegetable oils, it supports green chemistry initiatives and eco-label compliance.
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Bio-Based Dispersant
Bio-based dispersant is a high-performance wetting and dispersing additive synthesized from renewable bio-based raw materials, designed for stabilizing pigment and filler dispersions in waterborne and solvent-borne coating systems. It combines the environmental benefits of a bio-derived backbone with the technical performance of conventional synthetic dispersants, providing excellent color development, reduced viscosity, and long-term storage stability. Suitable for use with organic pigments, inorganic pigments, and specialty extenders.
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Bismuth Telluride Thermoelectric
CAS: 1304-82-1
Bismuth Telluride Thermoelectric representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Black Phosphorus Flake
CAS: 7723-14-0
Black Phosphorus Flake representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Boron Nitride Nanotube
CAS: 12045-63-5
Boron Nitride Nanotube representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Boron Nitride Nanotube Additive
CAS: 10043-11-5
Boron Nitride Nanotube Additive is an advanced nanomaterial for high-performance composite coatings and thermal management applications. Provides exceptional strength, thermal conductivity, and electrical insulation.
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Carbon Nanotube Additive
CAS: 308068-56-6
Carbon nanotube (CNT) additive is a multi-walled carbon nanotube (MWCNT) concentrate formulated for easy incorporation into coatings, polymers, and composites to impart electrical conductivity, mechanical reinforcement, and thermal enhancement. The surface-functionalized grade ensures improved dispersion stability and interfacial adhesion with polymer matrices. At loading levels of 0.5–3 wt%, CNTs form a conductive network that enables electrostatic dissipation, EMI shielding, and significant improvements in tensile strength.
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Carbon Quantum Dot
CAS: 7440-44-0
Carbon Quantum Dot representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Carboxymethyl Nanocellulose
CAS: 9004-32-4
Carboxymethyl Nanocellulose representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Cellulose Nanocrystal Additive
CAS: 9004-34-6
Cellulose Nanocrystal Additive is a high-performance specialty chemical additive widely used in industrial coating, adhesive, and material applications. Provides excellent performance characteristics and reliability.
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Cellulose Nanocrystals
CAS: 9004-34-6
Cellulose nanocrystals (CNC) are rigid, rod-shaped nanoparticles derived from acid hydrolysis of highly purified cellulose sources such as wood pulp or cotton. With high aspect ratios, exceptional tensile modulus, and a renewable bio-based origin, CNCs serve as an effective reinforcing nanofiller in composites, coatings, and hydrogels. They impart outstanding mechanical reinforcement and barrier properties at very low loadings due to their large surface area and ability to form percolating networks.
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Cellulose Nanofiber (CNF)
CAS: 9004-34-6
Cellulose Nanofiber (CNF) representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Chitin Nanocrystal
CAS: 1398-61-4
Chitin Nanocrystal representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Copper Nanowire
CAS: 7440-50-8
Copper Nanowire representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Covalent Organic Framework (COF)
CAS: 1191999-13-9
Covalent Organic Framework (COF) representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Dental Zirconia Blanks
Pre-sintered 3Y-TZP zirconia CAD/CAM blanks and discs for dental restorations. Available in multiple translucency grades (ST/HT/UT) with flexural strength exceeding 1200 MPa after sintering, delivering natural aesthetics and clinical durability.
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Gold Nanoparticle
CAS: 7440-57-5
Gold Nanoparticle representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Graphene Additive
CAS: 1034343-98-0
Graphene additive is a high-performance, few-layer graphene dispersion designed to enhance the mechanical, thermal, and barrier properties of coatings, polymers, and composites. Its exceptional surface area and electrical conductivity make it a versatile functional filler for advanced material applications. This additive provides significant improvements in tensile strength, corrosion resistance, and thermal management at very low loading levels.
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Graphene Dispersion Coating
CAS: 7782-42-5
Graphene Dispersion Coating is a high-performance specialty chemical additive widely used in industrial coating, adhesive, and material applications. Provides excellent performance characteristics and reliability.
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Graphene Quantum Dot
CAS: 7782-42-5
Graphene Quantum Dot representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Halloysite Nanotube
CAS: 1332-58-7
Halloysite nanotubes (HNT) are naturally occurring aluminosilicate clay minerals with a distinctive hollow tubular morphology, offering a low-cost, eco-friendly alternative to synthetic nanofillers. The unique lumen structure enables loading of active agents such as corrosion inhibitors, biocides, or flame retardants for controlled release applications. As a reinforcing nanofiller, HNTs significantly improve mechanical properties, thermal stability, and barrier performance in polymer composites and coating systems.
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Hollow Glass Microspheres (HL Series)
CAS: 65997-17-3
Alkali-lime borosilicate hollow glass microspheres (HL15–HL60S), true density 0.13–0.63 g/cm³, isostatic crush strength 500–18,000 psi, median particle size (d50) 35–80 μm. Widely used in thermal insulation coatings, oil well cementing, lightweight composites, automotive putty, and buoyancy materials.
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Hollow Glass Microspheres — Fine Grade for Coatings & Composites
CAS: 65997-17-3
Ultra-fine hollow borosilicate glass microspheres with d50 20–40 µm and d90 ≤ 70 µm, specifically engineered for thin-film coatings, 3D printing resins, and high-frequency electronic composites where standard grades (d50 45–80 µm) are too coarse. True density 0.20–0.42 g/cm³, isostatic crush strength 750–2,000 psi, thermal conductivity 0.048–0.056 W/m·K, dielectric constant 1.2–1.8 at 1 MHz. Delivers excellent surface finish in spray coatings, sub-1 mm thin-film insulation, and precision SMC/BMC parts.
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Lignin Nanoparticle
CAS: 8068-05-1
Lignin Nanoparticle representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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MIL-101 MOF
CAS: 808350-84-7
MIL-101 MOF representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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MXene 2D Material Additive
CAS: 1966175-17-6
MXene 2D Material Additive representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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MXene Coating Additive
CAS: 12075-65-9
MXene Coating Additive is a high-performance specialty chemical additive widely used in industrial coating, adhesive, and material applications. Provides excellent performance characteristics and reliability.
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Metal Organic Framework Additive
CAS: 9062-52-2
Metal Organic Framework Additive is a high-performance specialty chemical additive widely used in industrial coating, adhesive, and material applications. Provides excellent performance characteristics and reliability.
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Mo2C MXene
CAS: 12011-97-1
Mo2C MXene representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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MoS2 Nanosheet
CAS: 1317-33-5
MoS2 Nanosheet representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Monoclinic Zirconia Powder
CAS: 1314-23-4
Unstabilized monoclinic zirconia (m-ZrO₂) powder with high purity and controlled particle size. Used in refractories, foundry coatings, and as a precursor for stabilized zirconia production.
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Nano Barium Titanate
CAS: 12047-27-7
Nano Barium Titanate representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano Carbon Coating Additive
CAS: 7440-44-0
Nano Carbon Coating Additive is a high-performance specialty chemical additive widely used in industrial coating, adhesive, and material applications. Provides excellent performance characteristics and reliability.
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Nano Cerium Oxide
CAS: 1306-38-3
Nano Cerium Oxide representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano Copper Oxide
CAS: 1317-38-0
Nano Copper Oxide representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano Fe3O4 Magnetic
CAS: 1317-61-9
Nano Fe3O4 Magnetic representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano Hydroxyapatite
CAS: 1306-06-5
Nano Hydroxyapatite representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano ITO Powder
CAS: 50926-11-9
Nano ITO Powder representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano MnO2
CAS: 1313-13-9
Nano MnO2 representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano Tungsten Carbide
CAS: 12070-12-1
Nano Tungsten Carbide representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano Yttria
CAS: 1314-36-9
Nano Yttria representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano Zinc Ferrite
CAS: 12063-19-3
Nano Zinc Ferrite representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano Zirconia
CAS: 1314-23-4
Nano Zirconia representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano Zirconia Powder
CAS: 1314-23-4
High-purity nano zirconia (ZrO₂) powder with tightly controlled particle size of 30–80 nm. Designed for advanced electronics, energy storage, and precision polishing where ultra-fine particle size and high surface area are critical.
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Nano-Enhanced Paraffin PCM
CAS: 8002-74-2
Nano-Enhanced Paraffin PCM representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Nano-Silica
CAS: 7631-86-9
Nano-silica is a synthetic amorphous silicon dioxide with a primary particle size in the 5–40 nm range, offering an exceptionally high specific surface area. It is widely used as a rheology modifier, reinforcing agent, and anti-blocking additive in coatings, adhesives, sealants, and rubber compounds. The nanoscale particle size delivers superior transparency and performance compared to conventional fumed silica at equivalent dosages.
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Perovskite Quantum Dot
CAS: 7758-09-0
Perovskite Quantum Dot representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Piezoelectric PVDF Nano
CAS: 24937-79-9
Piezoelectric PVDF Nano representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Polydisulfide Self-Healing
CAS: 25036-53-7
Polydisulfide Self-Healing representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Shape Memory Epoxy Polymer
CAS: 25068-38-6
Shape Memory Epoxy Polymer representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Silicon Quantum Dot
CAS: 7440-21-3
Silicon Quantum Dot representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Silver Nanoparticle
CAS: 7440-22-4
Silver Nanoparticle representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Silver Nanowire
CAS: 7440-22-4
Silver Nanowire representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Ti3C2 MXene
CAS: 1966175-17-6
Ti3C2 MXene representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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UPy Self-Healing Polymer
CAS: 5765-44-6
UPy Self-Healing Polymer representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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UiO-66 MOF
CAS: 1220154-73-3
UiO-66 MOF representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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V2C MXene
CAS: 12070-10-9
V2C MXene representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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WS2 Nanosheet
CAS: 12138-09-9
WS2 Nanosheet representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Waterborne Matting Agent
CAS: 112926-00-8
Waterborne matting agent is a specially engineered silica-based powder optimized for use in waterborne coatings, lacquers, and varnishes to achieve controllable matte and satin surface finishes. The surface-treated, narrow particle size distribution ensures excellent anti-settling properties and smooth incorporation without degrading coating transparency or clarity. It is suitable for wood coatings, plastic coatings, and decorative paints where consistent gloss reduction is required.
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ZIF-8 Metal Organic Framework
CAS: 1247620-14-9
ZIF-8 Metal Organic Framework representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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Zirconia CMP Slurry
Nano zirconia-based CMP (Chemical Mechanical Planarization) slurry engineered for semiconductor wafer polishing. Sub-80 nm particle size with adjustable pH provides controlled material removal for STI, oxide CMP, and advanced node planarization.
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Zirconia Ceramic Ferrule
Precision 3Y-TZP zirconia ceramic ferrules for SC, LC, and FC fiber optic connectors. Sub-micron bore concentricity and mirror-polished end faces ensure ultra-low insertion loss and high return loss in telecom and datacom networks.
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Zirconia Grinding Beads
CAS: 1314-23-4
Yttria-stabilized zirconia (YSZ) grinding media in 0.1–3.0 mm sizes. High density and hardness deliver superior grinding efficiency and minimal contamination for ultrafine milling in paints, inks, battery materials, and pharmaceuticals.
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ZnS Quantum Dot
CAS: 1314-98-3
ZnS Quantum Dot representing advanced nanomaterials and emerging functional materials for next-generation applications in energy, electronics, and coatings.
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