Generated by Rank Math SEO, this is an llms.txt file designed to help LLMs better understand and index this website. # MXene Nano Tech LLC: MXeneNanoTech is a global supplier specializing in premium-quality MXene and MAX-phase materials, providing advanced nanomaterials tailored for research, industry, and innovative technological applications worldwide. Research & Development on MXenes based applications. ## Sitemaps [XML Sitemap](https://www.mxenenanotech.com/sitemap_index.xml): Includes all crawlable and indexable pages. ## Posts - [Highly cited study: MXene research focused on impact. Development of a porous Ti₃AlC₂ MAX phase to enable efficient synthesis of Ti₃C₂Tₓ MXene](https://www.mxenenanotech.com/porous-max-phase-for-efficient-mxene-synthesis/): Our joint research on a porous Ti₃AlC₂ MAX phase for the efficient synthesis of Ti₃C₂Tₓ MXene has been recognized as one of the Top 10 most cited papers in the International Journal of Applied Ceramic Technology (IJACT)   - [A comprehensive evaluation of the inherent antibacterial characteristics and photothermal therapy capabilities of MXene nanosheets](https://www.mxenenanotech.com/a-comprehensive-evaluation-of-the-inherent-antibacterial-characteristics-and-photothermal-therapy-capabilities-of-mxene-nanosheets/): Do MXene nanosheets have intrinsic antibacterial properties? - [In November 2025, our team participated in the I2DM 2025 Summit & Expo on 2D and advanced materials](https://www.mxenenanotech.com/in-november-2025-our-team-participated-in-the-i2dm-2025-summit-expo-on-2d-and-advanced-materials-at-khalifa-university-abu-dhabi/): The Innovative & Industrial 2D/Advanced Materials Summit & Expo (I2DM2025) is a leading international forum dedicated to shaping the future of advanced materials, including 2D materials and next-generation technologies. This prestigious event brought together global leaders, pioneering researchers, and industry innovators to explore and harness the transformative potential of materials that are redefining modern technology. - [A team of researchers in the field of MXenes had a unique opportunity to visit XPANCEO, an innovative deep-tech startup based in Dubai.](https://www.mxenenanotech.com/the-carbon-ukraine-team-was-delighted-to-have-a-unique-opportunity-to-visit-xpanceo-an-innovative-deep-tech-startup-based-in-dubai/): A team of researchers in advanced materials had an exceptional opportunity to visit XPANCEO, a Dubai-based deep-tech startup developing the world’s first smart contact lenses with augmented reality and advanced health-monitoring capabilities. - [Electrochemically produced MXenes as environmentally sustainable solid lubricants: Mechanisms governing tribofilm development and interfacial interactions](https://www.mxenenanotech.com/electrochemically-produced-mxenes-as-environmentally-sustainable-solid-lubricants-mechanisms-governing-tribofilm-development-and-interfacial-interactions/): The pursuit of sustainable solid lubricants is essential to minimize energy dissipation and wear in next-generation mechanical systems. Two-dimensional materials, particularly MXenes, have emerged as promising solid lubricants owing to their weak interlayer interactions, which facilitate low-friction sliding. Nevertheless, conventional MXene production depends on hazardous reagents such as hydrofluoric acid, posing significant environmental and safety challenges that hinder large-scale deployment. - [MXene-based electrochemical glucose biosensors: a comparative study of performance enhancement using Aquivion and Nafion](https://www.mxenenanotech.com/mxene-based-electrochemical-glucose-biosensors-a-comparative-study-of-performance-enhancement-using-aquivion-and-nafion/): Improving Electrochemical Glucose Biosensors Using Ti₃C₂Tₓ MXene Materials.  This study offers important insights into employing pristine Ti₃C₂Tₓ MXenes—rather than composite structures—as promising candidates for next-generation glucose biosensors. It highlights how surface chemistry, film stability, and polymer tuning are key factors in developing high-performance sensing platforms. - [Toward Safer Biomedical Applications of MXenes: How Etching and Delamination Influence the Biocompatibility of Ti-Based MXenes](https://www.mxenenanotech.com/engineering-safer-mxenes-for-biomedical-applications-effects-of-etching-and-delamination-on-biocompatibility-of-ti-based-mxenes/): Engineering Biocompatible MXenes: Influence of Etching and Delamination Routes on Titanium-Based MXenes for Biomedical Applications. - [A producer of MXenes from Ukraine is participating in the RIC2D MX-Innovation project, contributing to research in desalination and healthcare diagnostics](https://www.mxenenanotech.com/ric2d-mx-innovation-project-on-mxene-production-for-water-desalination-and-medical-diagnostics-takes-off-ukraine-based-mxene-manufacturing-company-carbon-ukraine-y-carbon-llc-on-board/): A key objective of the MX-Innovation consortium is to explore the use of MXenes as advanced cell-labeling tools to support biomedical applications, including early cancer diagnostics, improved transplant monitoring, and tissue regeneration. The team will investigate MXenes in Cytometry by Time of Flight (CyTOF), a mass spectrometry–based technique that employs metal tags to track cellular activity and analyze molecular interactions. - [The joint patent from MRC, and Drexel University on a highly porous MAX phase precursor enabling advanced MXene synthesis is now officially published!](https://www.mxenenanotech.com/joint-patent-application-mrc-carbon-ukraine-and-drexel-university-on-highly-porous-max-phase-precursor-for-mxene-synthesis-published/): Inventors: Yury Gogotsi, Oleksiy Gogotsi, Iryna Roslyk, Veronika Zahorodna, Ivan Baginskiy, Robert Lord - [Join us at the IEEE NAP-2025 International Symposium on “The MXene Frontier: Transformative Nanomaterials Shaping the Future”, Bratislava, September 7-12, 2025](https://www.mxenenanotech.com/join-us-at-the-ieee-nap-2025-international-symposium-on-the-mxene-frontier-transformative-nanomaterials-shaping-the-future-bratislava-september-7-12-2025/): This special symposium is devoted to the synthesis, properties, and applications of MXenes, a class of two-dimensional nanomaterials with exceptional versatility and tunability. MXenes have garnered significant attention due to their unique combination of metallic conductivity, hydrophilicity, and surface chemistry, enabling their use across a broad spectrum of disciplines. This session will explore the fundamental understanding of MXene structure-property relationships, as well as their integration into functional systems. Detailed info can be found following the link: https://ieeenap.org/symposium/ - [MXenes for Medicine: Emerging Applications and Key Challenges in Diagnostics and Therapy](https://www.mxenenanotech.com/mxenes-in-healthcare-transformative-applications-and-challenges-in-medical-diagnostics-and-therapeutics/): We are excited to share that our new review article on MXenes in Healthcare has just been published!  - [Assessing the Potential Genotoxic Effects of MXenes via DNA Comet Assay](https://www.mxenenanotech.com/elucidation-of-potential-genotoxicity-of-mxenes-using-a-dna-comet-assay/): Congratulations to all collaborators on this significant publication! MXenes, one of the most versatile families of two-dimensional materials, have shown remarkable promise across diverse applications, including biomedicine. - [Engineering DC Conductivity and Terahertz Properties in Ti₃C₂Tₓ MXene–Silk Fibroin Composite Films](https://www.mxenenanotech.com/ti3c2tx-mxene-silk-fibroin-composite-films-engineering-dc-conductivity-and-properties-in-the-thz-range/): A big thank you to our collaborators for an exciting achievement recently published in Graphene and 2D Nanomaterials! - [HF-Free Sustainable MXene Production Enabled by Pulsed Electrochemical Exfoliation](https://www.mxenenanotech.com/pulsed-electrochemical-exfoliation-for-an-hf-freesustainable-mxene-synthesis/): We are proud to congratulate our collaborators at TU Wien and CEST on their outstanding work, now published! - [From December 1–6, 2024, Boston, Massachusetts hosted the 2024 MRS Fall Meeting & Exhibit, a leading international event in materials science](https://www.mxenenanotech.com/2024-mrs-fall-meeting-exhibit-boston-massachusetts-from-december-1-6-2024/): Dr. Oleksiy Gogotsi, Director of MRC and Carbon-Ukraine — two innovative companies recognized as global leaders in MXene research — participated in the 2024 MRS Fall Meeting & Exhibit. He was accompanied by Dr. Maksym Pogorielov, Head of the Advanced Biomaterials and Biophysics Laboratory at the University of Latvia. - [Horizon-2020 MSCA-RISE-2019 Project №872370 SALSETH: Innovative bio-inspired sensors and microfluidic devices for saliva-based theranostics of oral and systemic diseases](https://www.mxenenanotech.com/horizon-2020-msca-rise-2019-project-872370/): From 2019-12-01 to 2023-11-30 - [Manufacturing of Carbon Graphite Products](https://www.mxenenanotech.com/manufacturing-of-carbon-graphite-products/): We provide design, engineering works and technological development of graphite products according to any requirements of the customer. If you have any questions, please, contact us at sales@mxenenanotech.com. - [Oleksiy Gogotsi: Selected Publications](https://www.mxenenanotech.com/oleksiy-gogotsi-selected-publications/): Oleksiy Gogotsi (Alexei Gogotsi, Alexey Gogotsi) is Materials Research Centre Director. - [Professor Yury Gogotsi: Biography, Journal Articles, Papers, Books, Conference Presentations](https://www.mxenenanotech.com/professor-yury-gogotsi-biography-journal-articles/): Dr. Yury Gogotsi is Distinguished University Professor and Trustee Chair in the Department of Materials Science and Engineering at Drexel University. He also holds courtesy appointments in the Departments of Chemistry and Mechanical Engineering and Mechanics at Drexel University, and serves as Director of the A.J. Drexel Nanotechnology Institute. He served as Associate Dean of the College of Engineering from 2003 to 2007.  - [CanbioSe Project Workshop & Meeting: September 26-27, 2023, Montpellier, France](https://www.mxenenanotech.com/canbiose-project-workshop-meeting-september-26-27-2023-montpellier-france/): The CanbioSe initiative organized a combined Project Meeting and Workshop at the European Institute of Membranes (IEM) within the University of Montpellier, France. Spanning two days, from September 26-27, 2023, the event centered around the theme: "Transitioning Biosensors to Market: Intellectual Property and Bridging the Gap from Academia to Industry." - [CANBIOSE Collaboration: Visit to European Institute of Membranes, Montpellier, France](https://www.mxenenanotech.com/canbiose-collaboration-visit-to-european-institute-of-membranes-montpellier-france/): Dr. Oleksiy Gogotsi and Veronika Zahorodna, esteemed members of the CANBIOSE project from MRC, embarked on collaborative visits to the European Institute of Membranes in Montpellier, France, during August-September 2023. Their visit was hosted by the research group under the guidance of Dr. Mikhael Bechelany. - [IEEE NAP 2023: 13th International Conference on “Nanomaterials: Applications & Properties”](https://www.mxenenanotech.com/ieee-nap-2023-13th-international-conference-on-nanomaterials-applications-properties/): Date: Sep 10-15, 2023Location: Bratislava, Slovakia ## Pages - [CDC](https://www.mxenenanotech.com/cdc/): Carbide-derived carbon (CDC) is a nanoporous carbon produced by the extraction of metals from carbides. CDCs are produced at temperatures from 200-1200ºC as a powder, coating, a membrane or parts with near-final shapes, with or without mesopores.  - [MAX-phases](https://www.mxenenanotech.com/max-phases/): MXeneNanoTech provides synthesis of various MAX-phases with different composition for MXene synthesis. MAX phases Ti3AlC2, Ti2AlC, V2AlC, Nb2AlC, Cr2AlC, Ti3AlCN, Mo2Ti2AlC3, Mo2GaC, Mo2Ga2C, V4AlC3, Nb4AlC3, Cr2TiAlC2, Mo3VAlC3, Ta4AlC3 others are also possible on specific customized orders. - [MXenes](https://www.mxenenanotech.com/mxenes/): MXene Nano Tech (USA) and Carbon-Ukraine (Kyiv, Ukraine) are licensed MXene partners of Drexel University, and world leaders on MXenes market producing the best MXenes and MAXphases since 2011. Various MXenes available Ti3C2 , Ti3CN, V2C, Ti2C, Nb2C and Mo2Ti2C3 (delaminated, multilayered), MXenes in aqueous media and different solvents, specific surface functionalisation and customizable flake size. MXene  scaled up synthesis is also possible, prices are affordable. - [Cart](https://www.mxenenanotech.com/cart/): Your cart is currently empty. Return to shop - [My account](https://www.mxenenanotech.com/my-account/): Login Username or email address *Required Password *Required Remember me Log in Lost your password? - [Checkout](https://www.mxenenanotech.com/checkout/) - [Shop](https://www.mxenenanotech.com/shop/) - [Contact Us](https://www.mxenenanotech.com/contact-us/): 18974 Pennsylvania, USA +1 808 203 80 92 sales@mxenenanotech.com - [About Us](https://www.mxenenanotech.com/about-us/): "MXeneNanoTech" LLC company in USA with a legal connection to the Materials Research Center (MRC) and Carbon-Ukraine (Y-Carbon Ltd.)  established in Ukraine. With the experience in materials science "MXeneNanoTech" LLC is involved in manufacturing of MAX-phases, MXenes and related products for research purposes. NCT team provides the expertise in materials science and engineering to synthesize MAX phases and 2D MXenes for different application."MXeneNanoTech" LLC provides experimental synthesis of different materials for research needs, including MAX phases Ti3AlC2, Ti2AlC, Ti3AlCN, V2AlC, Nb2AlC and others, MXenes Ti2C, Ti3C2, V2C and others - multillayered, delaminated in aqueous or solvent media, different surface functionalisaztion can be developed on the order as well. For the best research results we recommend to use our materials, that have high quality and proven controlled stable properties that is the critical point in research.  - [Sales](https://www.mxenenanotech.com/sales/): MXene Nano Tech company offers MAX-phase powders with wide range of particle size;  MXenes delaminated, MXene multilayered, single layer MXene, MXenes in aqueous media (DI water) and different solvents, with specific surface terminations or customized surface MXene  functionalisation,  various MXene flake size. MXenes are available in different form upon request - paste, clay, solutions, MXene colloidal solutions, MXene powder, free-standing films, various MXene coatings on different substrates. - [Innovative MXene and MAX-Phase Carbon Solutions for High-Performance Technologies](https://www.mxenenanotech.com/technology/): At MXeneNanoTech, we specialize in advanced carbon engineering built around the unique capabilities of MXenes, MAX-phase materials, and precision-designed porous carbons. Our mission is to deliver materials with exceptional conductivity, structural stability, and tunable porosity—engineered for demanding applications across the U.S. energy, defense, aerospace, and clean-tech sectors. - [How we work?](https://www.mxenenanotech.com/how-we-work/): How we work? - [Main page](https://www.mxenenanotech.com/): MXeneNanoTech LLC. serves diverse customers across a variety of industries including the filtration, energy, defense, pharmaceutical, and biomedical sectors. Our mission is the development, production, and supply of MAX phases, two-dimensional nanomaterials MXenes, porous and activated carbon materials, materials characterization, as well as design and manufacturing of equipment for MXene synthesis and nanostructured carbon production. Our consultative process leads to custom materials tailored to each customer's precise needs. ## Products - [Mo2C MXene, delaminated paste](https://www.mxenenanotech.com/product/mo2c-mxene-delaminated-paste/): Mo2C MXene, delaminated paste Formula: Mo2C Purity: Material has a high purity, research grade Minimum order: 25 g This Mo2C MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well - [Ta4C3 MXene, delaminated paste](https://www.mxenenanotech.com/product/ta4c3-mxene-delaminated-paste/): Ta4C3 MXene, delaminated paste Formula: Ta4C3 Purity: Material has a high purity, research grade Minimum order: 25 g This Ta4C3 MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well - [Mo2TiC2 MXene, delaminated paste](https://www.mxenenanotech.com/product/mo2tic2-mxene-delaminated-paste/): Mo2TiC2 MXene, delaminated paste Formula: Mo2TiC2 Purity: Material has a high purity, research grade Minimum order: 25 g This Mo2TiC2 MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well - [Ti2C MXene, delaminated paste](https://www.mxenenanotech.com/product/ti2c-mxene-delaminated-paste/): Ti2C MXene, delaminated paste Formula: Ti2C Purity: Material has a high purity, research grade Minimum order: 25 g This Ti2C MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well - [V2C MXene, delaminated paste](https://www.mxenenanotech.com/product/v2c-mxene-delaminated-paste/): V2C MXene, delaminated paste Formula: V2C Purity: Material has a high purity, research grade Minimum order: 25 g This V2C MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well - [Mo2Ti2C3 MXene, delaminated paste](https://www.mxenenanotech.com/product/mo2ti2c3-mxene-delaminated-paste/): Mo2Ti2C3 MXene, delaminated paste Formula: Mo2Ti2C3 Purity: Material has a high purity, research grade Minimum order: 25 g This Mo2Ti2C3 MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well - [Nb4C3 MXene, delaminated paste](https://www.mxenenanotech.com/product/nb4c3-mxene-delaminated-paste/): Nb4C3 MXene, delaminated paste Formula: Nb4C3 Purity: Material has a high purity, research grade Minimum order: 25 g This Nb4C3 MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well - [V4C3 MXene, delaminated paste](https://www.mxenenanotech.com/product/v4c3-mxene-delaminated-paste/): V4C3 MXene, delaminated paste Formula: V4C3 Purity: Material has a high purity, research grade Minimum order: 25 g This V4C3 MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well - [Nb2C MXene, delaminated paste](https://www.mxenenanotech.com/product/nb2c-mxene/): Nb2C MXene, delaminated paste Formula: Nb2C Purity: Material has a high purity, research grade Minimum order: 25 g This Nb2C MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well   - [Ti3(C,N)2 MXene, delaminated paste](https://www.mxenenanotech.com/product/ti3cn2-mxene/): Ti3(C,N)2 MXene, delaminated paste Formula: Ti3(C,N)2 Purity: Material has a high purity, research grade Minimum order: 25 g This Ti3(C,N)2 MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well   - [Ti3C2 MXene, delaminated paste](https://www.mxenenanotech.com/product/ti3c2-mxene/): Ti3C2 MXene, delaminated paste Formula: Ti3C2 Purity: Material has a high purity, research grade Minimum order: 25 g This Ti3C2 MXene is available in the following forms: DI water-based dispersions of MXene suitable for both laboratory experimental works and industrial-scale use MXene dispersions prepared in organic solvents like NMP, DMF, and DMSO High-grade multilayer MXene paste based on water or 2-propanol Highly concentrated MXene slurries without the use of binders Single-layer MXene paste with high concentration, stabilized in 2-propanol Controlled selection of MXene flake size ranges as well   - [Mo3VAlC3 MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/mo3valc3-max-phase-particle-size-40-um/): Mo3VAlC3 MAX-phase powder ≤40 micron Formula: Mo3VAlC3 Purity: Material has a high purity, research grade Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Mo2GaC MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/mo2gac-max-phase-particle-size-40-um/): Mo2GaC MAX-phase powder ≤40 micron Formula: Mo2GaC Purity: Material has a high purity, research grade Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Ta4AlC3 MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/ta4alc3-max-phase-particle-size-40-um/): Ta4AlC3 MAX-phase powder ≤40 micron Formula: Ta4AlC3 Purity: Material has a high purity, research grade Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Mo2Ga2C MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/mo2ga2c-max-phase-particle-size-40-um/): Mo2Ga2C MAX-phase powder ≤40 micron Formula: Mo2Ga2C Purity: Material has a high purity, research grade Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [V4AlC3 MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/v4alc3-max-phase-purity-99-particle-size-40-um/): V4AlC3 MAX-phase powder ≤40 micron Formula: V4AlC3 Purity: Material has a high purity, research grade Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Mo2TiAlC2 MAX-phase, purity 99%, particle size ≤40 um](https://www.mxenenanotech.com/product/mo2tialc2-max-phase-purity-99-particle-size-40-um/): Mo2TiAlC2 MAX-phase powder ≤40 micron Formula: Mo2TiAlC2 Purity: Material has a high purity, research grade 99% Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Cr2AlC MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/cr2alc-max-phase-purity-99-particle-size-40-um/): Cr2AlC MAX-phase powder ≤40 micron - [Cr2TiAlC2 MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/cr2tialc2-max-phase-purity-99-particle-size-40-um/): Cr2TiAlC2 MAX-phase powder ≤40 micron Formula: Cr2TiAlC2 Purity: Material has a high purity, research grade Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Nb4AlC3 MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/nb4alc3-max-phase-purity-99-particle-size-40-um/): Nb4AlC3 MAX-phase powder ≤40 micron Formula: Nb4AlC3 Purity: Material has a high purity, research grade Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Ti3AlCN MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/ti3alcn-max-phase-purity-99-particle-size-40-um/): Ti3AlCN MAX-phase powder ≤40 micron Formula: Ti3AlCN Purity: Material has a high purity, research grade Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Mo2Ti2AlC3 MAX-phase, particle size ≤40 um](https://www.mxenenanotech.com/product/mo2ti2alc3-max-phase-purity-99-particle-size-40-um/): Mo2Ti2AlC3 MAX-phase powder ≤40 micron Formula: Mo2Ti2AlC3 Purity: Material has a high purity, research grade Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Nb2AlC MAX-phase, purity 99%, particle size ≤100 um](https://www.mxenenanotech.com/product/nb2alc-max-phase-purity-99-particle-size-100-um-copy/): Nb2AlC MAX-phase powder < 100 micron CAS number: 60687-94-7 Formula: Nb2AlC Name: Niobium Aluminum Carbide 211 Material has a high purity, research grade 99% Particle size: ≤ 100 micron Minimum order: 5 g MSDS and COA are available upon request - [Nb2AlC MAX-phase, purity 99%, particle size ≤40 um](https://www.mxenenanotech.com/product/nb2alc-max-phase-purity-99-particle-size-40-um/): Nb2AlC MAX-phase powder < 40 micron CAS number: 60687-94-7 Formula: Nb2AlC Name: Niobium Aluminum Carbide 211 Material has a high purity, research grade 99% Particle size: ≤ 40 micron Minimum order: 5 g MSDS and COA are available upon request - [V2AlC MAX-phase, purity 99%, particle size ≤100 um](https://www.mxenenanotech.com/product/v2alc-max-phase-purity-99-particle-size-100-um/): V2AlC MAX-phase powder <100 micron CAS number: 12179-42-9 Formula: V2AlC Name: Vanadium Aluminum Carbide 211 Material has a high purity, research grade 99% Particle size: ≤ 100 micron Minimum order: 25 g MSDS and COA are available upon request - [Ti2AlC MAX-phase, purity 99%, particle size ≤200 um](https://www.mxenenanotech.com/product/ti2alc-max-phase-purity-99-particle-size-200-um/): Ti2AlC MAX-phase powder < 200 micron CAS number: 12537-81-4 Formula: Ti2AlC Name: Titanium Aluminum Carbide 211 Material has a high purity, research grade 99% Particle size: ≤ 200 micron Minimum order: 25 g MSDS and COA are available upon request - [Ti2AlC MAX-phase, purity 99%, particle size ≤100 um](https://www.mxenenanotech.com/product/ti2alc-max-phase-purity-99-particle-size-100-um/): Ti2AlC MAX-phase powder < 100 micron CAS number: 12537-81-4 Formula: Ti2AlC Name: Titanium Aluminum Carbide 211 Material has a high purity, research grade 99% Particle size: ≤ 100 micron Minimum order: 25 g MSDS and COA are available upon request - [V2AlC MAX-phase, purity 99%, particle size ≤40 um](https://www.mxenenanotech.com/product/ti2alc-max-phase-purity-99-particle-size-40-um/): V2AlC MAX-phase powder < 40 micron CAS number: 12179-42-9 Formula: V2AlC Name: Vanadium Aluminum Carbide 211 Material has a high purity, research grade 99% Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Ti3AlC2 MAX-phase, purity 99%, particle size ≤200 um](https://www.mxenenanotech.com/product/ti3alc2-max-phase-purity-99-particle-size-200-um/): Ti3AlC2 MAX-phase powder < 200 micron CAS number 196506-01-1 Formula: Ti3AlC2 Name: Titanium Aluminum Carbide 312 Material has a high purity, research grade 99% Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request - [Ti3AlC2 MAX-phase, purity 99%, particle size ≤100 um](https://www.mxenenanotech.com/product/ti3alc2-max-phase-purity-99-particle-size-100-um/): Ti3AlC2 MAX-phase powder < 100 micron CAS number 196506-01-1 Formula: Ti3AlC2 Name: Titanium Aluminum Carbide 312 Material has a high purity, research grade 99% Particle size: ≤ 100 micron Minimum order: 25 g MSDS and COA are available upon request - [Ti3AlC2 MAX-phase, purity 99%, particle size ≤40 um](https://www.mxenenanotech.com/product/ti3alc2-max-phase-powder-40-micron-research-grade-purity-99/): Ti3AlC2 MAX-phase powder < 40 micron CAS number 196506-01-1 Formula: Ti3AlC2 Name: Titanium Aluminum Carbide 312 Material has a high purity, research grade 99% Particle size: ≤ 40 micron Minimum order: 25 g MSDS and COA are available upon request