Views: 0 Author: Site Editor Publish Time: 2025-04-18 Origin: Site
In both scientific research and industrial applications of nanomaterial preparation, environmental control is of paramount importance. Due to their unique physicochemical properties, nanomaterials are highly susceptible to contamination from external environments during research and production, which can compromise their performance and applications. Therefore, selecting equipment capable of strictly controlling the environment and ensuring the purity of nanomaterials becomes critically important. Mikrouna's glove box products, with their informatized and systematized management, advanced production facilities, and comprehensive customization capabilities, have emerged as an ideal choice for nanomaterial preparation.
Nanomaterial preparation imposes extremely stringent requirements on environmental conditions. Mikrouna glove boxes achieve informatized and systematized management across the entire workflow, including design, procurement, production, finance, sales, after-sales service, and enterprise management. This ensures real-time monitoring and traceability at every stage—from raw material preparation to the completion of nanomaterial synthesis. Such systematic management guarantees purity throughout the preparation process, prevents intrusion of external contaminants, and thereby preserves the performance and quality of nanomaterials.
Mikrouna glove boxes utilize high-precision production equipment and devices from renowned domestic and international brands. These advanced systems not only enhance production efficiency but also provide a stable and reliable environment for nanomaterial preparation. During the process, glove boxes must exhibit excellent sealing and corrosion resistance to withstand exposure to various chemicals. Mikrouna's glove boxes meet these demanding requirements with their superior quality and performance.
Different experiments and research objectives necessitate diverse equipment and functionalities. Mikrouna offers a wide range of glove boxes that can be customized to meet user needs. For instance, additional devices such as organic solvent adsorbers, refrigerators, and heating furnaces can be integrated into the glove boxes. Furthermore, specialized industries like lithium battery manufacturing can benefit from tailored solutions such as nitrogen removal devices, hydrofluoric acid and CO₂ removal systems, ensuring enhanced purity and safety during nanomaterial preparation.
Mikrouna glove boxes meet or exceed the technical and quality standards of internationally recognized brands. The company adheres strictly to relevant manufacturing standards, ensuring exceptional product quality. This rigorous quality control has earned Mikrouna widespread recognition in the field of nanomaterial preparation. Today, Mikrouna supplies products to global industry leaders such as PHILIPS, OSRAM (Germany), CGE, AIXTRON (Germany), Mitsubishi, Sanyo, and PLANSEE, accumulating extensive international collaboration experience.
Mikrouna glove boxes are also equipped with advanced features like dew point analyzers and oxygen analyzers. The dew point analyzer employs a P₂O₅ sensor, enabling accurate measurement of dew point temperature in corrosive environments such as lithium battery and metal-organic synthesis, thereby ensuring optimal humidity control. Meanwhile, the oxygen analyzer uses a ZrO₂ sensor to monitor real-time oxygen levels, maintaining an oxygen-free or low-oxygen environment to further mitigate contamination risks. These advanced functionalities provide stricter and more reliable environmental guarantees for nanomaterial preparation.
Mikrouna's glove boxes feature scalable, standardized, and modular designs, streamlining production and assembly processes. Scalable manufacturing enables bulk procurement of components, reducing costs; standardization ensures part compatibility and simplifies maintenance; modular design enhances flexibility and efficiency. These advantages not only uphold the purity of nanomaterials but also improve preparation efficiency.