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INVENIO SRL

INVENIO SRL

Ricerca nanotecnologica

Codogno , LO 459 follower

Helping companies turn electrospun nanofibers into industrial solutions through advanced R&D and nanofiber architectures

Chi siamo

Invenio è l'azienda che attraverso la Ricerca e l'ingegnerizzazione progetta, crea e produce materiali innovativi elettrofilati altamente performanti, grazie all'applicazione delle nanofibre da elettrospinning, destinati a diversi comparti produttivi, in particolare ai settori filtrazione aria, filtrazione acqua, manifatturiero, industriale, tessile tecnico e medicale/farmaceutico. Grazie all’impiego del processo di elettrofilatura, realizziamo materiali nanostrutturati costituiti da substrati e nanofibre di polimeri con ampie possibilità di applicazione. Ci rivolgiamo quindi a tutte le aziende che hanno compreso l’importanza di dare spazio a materiali d’avanguardia. Utilizzando l’Electrospinning abbiamo realizzato qualcosa che prima non c’era: Neatess®, la membrana filtrante su base di cotone che coniuga le caratteristiche naturali di questo materiale a un’eccellente efficienza filtrante e a un’elevata traspirabilità. Una soluzione evoluta e di alta qualità, con potenzialità applicative estremamente ampie, rispettosa dell’ambiente e della persona, nata per contribuire a un futuro più salubre e più sostenibile.

Sito Web
https://www.invenionanofiber.com/
Settore
Ricerca nanotecnologica
Dimensioni dell’azienda
2-10 dipendenti
Sede principale
Codogno , LO
Tipo
Società privata non quotata
Data di fondazione
2020
Settori di competenza
nanofibre, materiali performanti, sostenibilità, electrospinning, nanomateriali, servizio di ricerca e sviluppo per le aziende, soluzioni per le aziende e soluzioni innovative per le aziende attraverso l'applicazione della tecnologia delle nanofibre

Località

Dipendenti presso INVENIO SRL

Aggiornamenti

  • Visualizza la pagina dell’organizzazione INVENIO SRL

    459 follower

    🧬 In the medical field, the value of electrospun nanofibers does not lie only in their dimensional scale. It lies in the possibility of designing functional nanofibrous layers that can be integrated into real medical devices, components or materials. 🩹 Advanced wound dressings, functional membranes, active surfaces, medical filtration systems and layers for drug delivery: the range of potential applications is broad. But the critical point is not simply obtaining a promising sample. 🎯 It is understanding whether that nanofibrous layer can become part of a reliable, manufacturable device that is consistent with the application requirements. In the medical field, an innovative material must address very concrete aspects from the very beginning: ⚙️ process repeatability, material selection, layer stability, integration into the device, compatibility with the final system, production scalability and the validation pathway. This is often where many projects stop. Not because the technology lacks potential, but because the transition from laboratory to product requires specific expertise in process, materials and application engineering. At INVENIO SRL, this is exactly where we work: helping companies identify the most suitable application idea in relation to the real value of electrospun nanofibers, and then developing nanofibrous layers and membranes by assessing their function, integration and use in the final product from the very beginning. Because, in medical applications, the value of nanofibers is not measured only by the properties of the material. It is measured by the ability to transform them into an integrable, repeatable and useful solution within the final device. 💡 For those developing innovative medical devices or medical materials, is the main challenge still finding new functionalities, or integrating them reliably into the final product? #Nanofibers #Electrospinning #MedicalDevices #BiomedicalMaterials #DrugDelivery #AdvancedMaterials #ApplicationEngineering #ProductDevelopment #INVENIOSRL

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  • Visualizza la pagina dell’organizzazione INVENIO SRL

    459 follower

    🔬 Electrospun nanofibers become truly interesting when they are organized into an extremely thin functional layer, with a thickness that can also be in the range of 10–12 µm, designed to perform a specific function within a material, a substrate or a real system. A functionalized nanofibrous layer is not simply a layer of very thin fibers. It means designing that layer so that it adds a concrete function to the material on which it is applied. It is not just about “placing nanofibers” onto a substrate. It is about defining what that layer needs to do. ⚙️ For example, it can be designed to: • allow air to pass through, while retaining unwanted particles • control the passage of a liquid • increase filtration capacity while keeping flow resistance low • create a very thin barrier • protect a surface • modify the way a surface interacts with the external environment • integrate additives, particles or active components to obtain a specific property • tune porosity, thickness and morphology according to the final application This is where the nanoscale becomes useful. Not because it is “nano” in itself, but because it can enable thin, porous and high-surface-area architectures capable of generating a concrete function in the final material. 💡 In many cases, the value does not come from the single fiber, but from the way the layer is designed, integrated and made to work within the real application context. At INVENIO SRL, we develop electrospun nanofibrous membranes, layers and solutions with this approach: transforming nanofibrous structures into functional layers oriented toward performance, integration and industrial application. Because a nanofiber becomes truly relevant when it helps solve a real problem in the final product, material or system. #Nanofibers #Electrospinning #FunctionalMaterials #AdvancedMaterials #INVENIOSRL

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  • Visualizza la pagina dell’organizzazione INVENIO SRL

    459 follower

    In the medical sector, materials, surfaces and devices are not evaluated only for their technical properties. They are evaluated for the way they interact with the biological system and with the function they are expected to perform. 🧬 An implant. A surface. A membrane. An interface. A device in contact with tissues, fluids or cells. In these contexts, the micro and nano scale can become relevant because it can contribute to modulating critical interactions: ✔️ cell adhesion ✔️ tissue compatibility ✔️ behavior in contact with biological fluids ✔️ surface protection ✔️ passage control ✔️ barrier function ✔️ reduction of bacterial contamination risk Research on biomaterials shows how surface and interface design can influence biological response and the final performance of a device. 🔬 This is why the medical sector is one of the most interesting, but also one of the most complex, fields for the application of nanostructured materials. Introducing an advanced technology is not enough. It is necessary to understand which function must be achieved, where it has to work and under which application constraints. At INVENIO SRL, we work in the field of nanomaterials and develop electrospun nanofibrous membranes, layers and solutions for companies across different sectors. Also in the medical field, the point is not to apply nanofibers everywhere. The point is to understand whether a nanofibrous layer can contribute to a useful, integrable and coherent function within the device, material or final system. Barrier. Protection. Interface. Control. Compatibility. Performance. In the medical sector, more than in many other fields, function must be designed carefully. Because value is not only in the structure. It is in its ability to work correctly in the real application. 🚀 #Nanofibers #Electrospinning #MedicalDevices #AdvancedMaterials #ApplicationEngineering #INVENIOSRL

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  • Visualizza la pagina dell’organizzazione INVENIO SRL

    459 follower

    Many companies see nanofibers as a possible opportunity for innovation. But often the most difficult question is not: “can we use nanofibers?” The most important question is: “where can they generate a useful function within our product, material or system?”💡 Because a membrane, a layer or a nanofibrous solution does not create value only because it is advanced. It creates value when it helps achieve a concrete result: ✔️ improve performance ✔️ add a function ✔️ control a passage ✔️ protect a surface ✔️ separate ✔️ filter ✔️ make a material or component more effective At INVENIO SRL, we work precisely on this transition.⚙️ We help companies across different sectors transform a technical need, an intuition or an innovation objective into an application project based on electrospun nanofibrous membranes, layers and solutions.🎯 We do not start from the idea that nanofibers are the answer to everything. We start from the client’s problem, the function to be achieved and the real conditions in which that function will have to work. The value is not only in the material. It is in understanding which function can be introduced, how it can be integrated and what useful result it can generate for the final application. This is where an idea can become a project. And this is where a project can become concrete innovation. 🚀 #Nanofibers #Electrospinning #ApplicationEngineering #AdvancedMaterials #INVENIOSRL

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  • Visualizza la pagina dell’organizzazione INVENIO SRL

    459 follower

    Where can a nanofibrous membrane work?🎯 There is no single answer.💡 A nanofibrous membrane can become interesting when a material, a component or a system needs to acquire an additional function through a very thin and integrable layer. It can contribute to: ✔️ filtration ✔️ protection ✔️ separation ✔️ regulation of air or liquid flow ✔️ creation of a functional interface ✔️ control of particle passage But the point is not only to imagine where it could be applied.⚙️ The point is to understand whether, in that specific application, the membrane can maintain a useful, stable and coherent function within the final system. At INVENIO SRL, we do not look at a nanofibrous membrane only as a material. We evaluate it for the function it can perform inside a product, a component or an industrial process. This is why we develop electrospun nanofibrous membranes, layers and solutions for companies across different sectors, with an application-oriented approach. Nanofibers are not a universal solution. But when the required function is clear, they can become a concrete tool to innovate materials, components and industrial systems. From membrane to function. From function to application. #Nanofibers #Electrospinning #AdvancedMaterials #INVENIOSRL #Innovation

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  • 🔬 NEATESS® is one of the most concrete examples of INVENIO SRL’s work on electrospun polymer nanofibers applied to air filtration. Its innovation starts from a precise transformation: imparting a filtration function to a cotton substrate through the integration of a nanofibrous layer. The cotton substrate alone does not provide high filtration performance. In the initial evaluations carried out by INVENIO SRL through PFE analysis, the substrate showed very limited filtration capacity: approximately 5% of the particles considered. After the integration of the nanofibrous layer, the same substrate reached filtration values of up to approximately 99%, under specific test conditions. +94 percentage points. Almost 20× higher filtration efficiency compared to the non-functionalized substrate. ⚙️ This is the key point. The nanofibers were not applied as a simple coating. They were used to transform a cotton substrate into an air filtration medium, with possible applications both in PPE and in indoor air filtration systems. In NEATESS®, the nanofibrous layer makes it possible to combine: ✔ high filtration efficiency ✔ very low pressure drop ✔ very low resistance to airflow ✔ a thin functional layer ✔ integration onto a substrate ✔ reduced thickness and bulk compared to some more conventional filtration solutions NEATESS® is protected by an industrial invention patent and was developed as an innovative medium for air filtration. 🔎 For INVENIO SRL, this product is a concrete example of the application value of electrospun polymer nanofibers. Not only an advanced technology. But a way to give a real material a function it did not previously have in a significant way. From cotton substrate to filtration medium. From substrate to function. From nanofiber to applicable product. 🧩 #Nanofibers #Electrospinning #AirFiltration #ApplicationEngineering #INVENIOSRL

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  • 🔬 Electrospun polymer nanofibers should not be evaluated only as an advanced technology. Their value becomes clearer when they are considered in relation to the function they can enable in a material, product or final system. ⚙️ A nanofibrous membrane or layer can offer highly relevant properties: ✔ high filtration or separation efficiency ✔ controlled air or fluid permeability ✔ barrier effect against particles, aerosols or contaminants ✔ surface functionality ✔ reduced thickness compared to more conventional solutions ✔ the possibility to work as a thin functional layer. But an advanced property achieved on a material is only the starting point. Industrial value emerges when that property can remain useful after integration. In a substrate. In a filter. In a membrane. In a component. In the final product where it must operate. This is particularly relevant in air filtration. A nanofibrous layer can contribute to increasing filtration efficiency while also helping to keep pressure drop low. It can support the capture of fine particles through a very thin functional layer, while maintaining good permeability to airflow. This can open interesting possibilities in terms of performance, thickness, material use and integration into the final filter. 🔎 At INVENIO SRL, we develop electrospun nanofibrous membranes, functional layers and nanofibrous solutions with this application-oriented perspective. The focus is not only on what the nanofiber can do as a material. The focus is on the function it can help generate when it becomes part of a real product or system. 🧩 Because in industrial applications, the value of a nanofibrous membrane does not depend only on its advanced properties. It depends on whether those properties can become a useful, integrable and maintainable function in the final system. 🚀 #Nanofibers #Electrospinning #AirFiltration #ApplicationEngineering #INVENIOSRL

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  • 🔬 Electrospun polymer nanofibers can be used in many application fields. Air filtration. Liquid filtration. Separation of particles, aerosols or contaminants. Technical textiles. Functional packaging. Medical devices. Composites. Energy. Industrial separations. Functional surfaces. But their value does not simply depend on the sector in which they are used. It depends on the function that the nanofibrous layer has to perform within the final product, material or system. 🎯 A nanofibrous membrane can contribute to filtration or separation. It can act as a barrier. It can control permeability. It can modify a surface. It can work as an interface between different materials. It can contribute to optical, thermal, protective or functional properties. Each application, however, requires specific technical choices. ⚙️ There is no “universal” nanofiber suitable for every context. The polymer or polymer blend changes. Thickness and porosity change. Fiber orientation changes. The support changes. The required stability changes. The integration and validation conditions change. A nanofibrous solution for air filtration is not designed according to the same criteria as a membrane for liquid filtration, a layer for technical textiles, a functional film for packaging or an interface for composites. This is why, when developing nanofibrous materials, the question is not only: “Where can nanofibers be applied?” The more important question is: 👉 “What function should the nanofibrous layer perform within the final product or system?” At INVENIO SRL, we develop electrospun polymer nanofibers, membranes, functional layers and nanofibrous solutions with an application-oriented perspective. This means working not only on the material property itself, but also on its form, its integration and its behavior within the final context. 🔍 Because the value of nanofibers does not lie in the fact that they can be mentioned across many sectors. It lies in the ability to transform a material property into a useful, integrable and validable function. ✅ #Nanofibers #Electrospinning #PolymerNanofibers #AdvancedMaterials #MaterialScience #FunctionalMaterials #ApplicationEngineering #Filtration #TechnicalTextiles #Composites #IndustrialInnovation #INVENIOSRL

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  • 💡 Initial performance is not enough. When a company evaluates the introduction of electrospun polymer nanofibers into a product, a material or an industrial process, the first element often considered is performance. Efficiency. Permeability. Barrier properties. Surface functionality. Mechanical behavior. Response under a specific test condition. These data are important. But they are not always sufficient to understand whether that solution can become truly applicable. A functionality achieved on the material must then interact with the system in which it will operate. It must be integrated. It must maintain stability. It must be validated under conditions consistent with the final use. It must be repeatable. It must have a form compatible with the product, the process or the industrial application. This is where many advanced technologies reveal their real level of maturity. At INVENIO SRL, we develop electrospun polymer nanofibers, membranes, functional layers and nanofibrous solutions starting from this perspective. We do not look only at the isolated performance of the material. We work to understand where that functionality will operate, what form it needs to take and how it can become part of a truly usable solution. Because the value of nanofibers does not lie only in the result achieved during testing. It lies in the ability to transform that result into an integrable, validable and useful solution within the final system. 🔬 If your company is evaluating the introduction of electrospun polymer nanofibers into a product, material or industrial process, the point is not only to ask: “Which performance can we achieve?” But also: “Can this performance become a real solution?” #Nanofibers #Electrospinning #PolymerNanofibers #ApplicationEngineering #AdvancedMaterials #MaterialDevelopment #IndustrialInnovation #Nanomaterials #INVENIO

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  • 💡 Bringing electrospun nanofibers into an industrial product requires much more than simply producing the material. A membrane, a film, a functional layer, or a nanofibrous structure can demonstrate effective properties in the laboratory. But the decisive step comes when these materials need to be integrated into a real system. ⚙️ This is where the most important questions arise: • Does the material maintain stability and uniformity? • Is it compatible with other layers or supports? • Can it be integrated into the customer’s production processes? • Does its behavior remain repeatable outside controlled laboratory conditions? • Are the achieved performances truly aligned with the final application? • Does the overall system really improve? At INVENIO SRL, we work on this critical transition. We develop electrospun polymer nanofibrous membranes and materials with an application-oriented approach. This means working on: • material architecture • selection and combination of layers • integration with supports and substrates • performance validation • compatibility with application and production constraints • material behavior in the real system. Our goal is not only to produce nanofibers. It is to help companies reduce the technical and industrial risk when they want to apply nanofibers to their products, materials, or systems. 🎯 Because the value of nanofibers is not measured only by their properties. It is measured by their ability to generate a real improvement in the final application. #Nanofibers #Electrospinning #ApplicationEngineering #AdvancedMaterials #TechnicalTextiles #IndustrialInnovation #MaterialEngineering #Nanotechnology #IndustrialR&D #nanomaterials

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