Materic LLC
Contract research, custom development, and manufacturing organization focused on advanced materials. Core competencies include scalable electrospun nanofiber production, nanoparticle purification and conductive ink formulation, multi-technology additive manufacturing for polymers and advanced ceramics, encapsulation and controlled-release systems, and textile functionalization. Services cover proof-of-concept R&D through pilot and commercial production, materials characterization, validation testing, and regulatory-capable manufacturing.
Industries
N/A
Nr. of Employees
small (1-50)
Materic LLC
1300 Bayard St., Baltimore, MD 21230
Products
Electrospun gelatin tissue scaffolds
Electrospun gelatin scaffolds formatted for tissue engineering and bioprinting research applications.
Piezoelectric nanofiber yarn for textiles
Piezoelectric nanofiber yarns intended for sensor and energy-harvesting integrations in textile applications.
Carbon nanofiber nonwoven mats
Carbon-based nonwoven mats produced by electrospinning for conductive layers, reinforcement, or filtration.
Silver nanowire conductive ink
High-aspect-ratio nanowire suspensions formulated for conductive inks and transparent conductive films; delivered in solvent suspension with recommended wash and anneal post-processing for optimal conductivity.
Electrospun gelatin tissue scaffolds
Electrospun gelatin scaffolds formatted for tissue engineering and bioprinting research applications.
Piezoelectric nanofiber yarn for textiles
Piezoelectric nanofiber yarns intended for sensor and energy-harvesting integrations in textile applications.
Carbon nanofiber nonwoven mats
Carbon-based nonwoven mats produced by electrospinning for conductive layers, reinforcement, or filtration.
Silver nanowire conductive ink
High-aspect-ratio nanowire suspensions formulated for conductive inks and transparent conductive films; delivered in solvent suspension with recommended wash and anneal post-processing for optimal conductivity.
Services
End-to-end support from ideation and formulation through prototyping and scaled manufacturing across nanofiber, nanomaterial, textile, and ceramic platforms.
On-demand 3D printing (SLS, SLA, FDM, DLP), materials consultation, CAD support, and reverse engineering for prototypes and low-volume production.
Custom formulation, process optimization, and continuous roll production of nanofiber materials for filtration, medical scaffolds, textiles, and sensors.
Design and manufacture of encapsulated actives (micro/nanoparticles, core–shell) with tunable release kinetics for textiles, dressings and other delivery formats.
Microscopy and spectroscopy services (SEM, TEM, AFM, XRD, XPS, Raman, UV–Vis–NIR) and thermal/mechanical testing to support R&D and QC.
End-to-end support from ideation and formulation through prototyping and scaled manufacturing across nanofiber, nanomaterial, textile, and ceramic platforms.
On-demand 3D printing (SLS, SLA, FDM, DLP), materials consultation, CAD support, and reverse engineering for prototypes and low-volume production.
Custom formulation, process optimization, and continuous roll production of nanofiber materials for filtration, medical scaffolds, textiles, and sensors.
Design and manufacture of encapsulated actives (micro/nanoparticles, core–shell) with tunable release kinetics for textiles, dressings and other delivery formats.
Microscopy and spectroscopy services (SEM, TEM, AFM, XRD, XPS, Raman, UV–Vis–NIR) and thermal/mechanical testing to support R&D and QC.
Expertise Areas
- Electrospinning process development and industrial scale-up
- Nanomaterials purification and conductive ink formulation
- Additive manufacturing for polymers and advanced ceramics
- Bioprinting and electrospun scaffold fabrication
Key Technologies
- Electrospinning (wire-based, needle/nozzle, roll-to-roll)
- Polymer additive manufacturing (SLS, SLA, FDM, DLP)
- Laser/reactive sintering and binder-based ceramic AM
- Screen-based bioprinting
News & Updates
Company featured in coverage of a ribbon-cutting ceremony for a $10 million Department of Energy award supporting advanced manufacturing projects.
Announcement of a project to develop super-tough ceramics with DARPA funding in collaboration with national labs and subsidiary entities.
Description of an ARPA-E-funded program to produce 3D-printed carbide and nitride ceramic components for power electronics, including prototype demonstrations of ceramic cold plates and thermal performance simulations.
Overview of scalable electrospinning, including materials selection, process parameters and considerations for translating polymer feedstock into nanofiber materials at larger volumes.
Introductory article explaining the electrospinning process, control of fiber diameter and tunability for different material specifications and applications.
Discussion of nanofiber filtration approaches for airborne particles and toxic gases relevant to wildfire smoke mitigation and high-performance filtration applications.
Company featured in coverage of a ribbon-cutting ceremony for a $10 million Department of Energy award supporting advanced manufacturing projects.
Announcement of a project to develop super-tough ceramics with DARPA funding in collaboration with national labs and subsidiary entities.
Description of an ARPA-E-funded program to produce 3D-printed carbide and nitride ceramic components for power electronics, including prototype demonstrations of ceramic cold plates and thermal performance simulations.
Overview of scalable electrospinning, including materials selection, process parameters and considerations for translating polymer feedstock into nanofiber materials at larger volumes.
Introductory article explaining the electrospinning process, control of fiber diameter and tunability for different material specifications and applications.
Discussion of nanofiber filtration approaches for airborne particles and toxic gases relevant to wildfire smoke mitigation and high-performance filtration applications.