Recently, Guangzhou Sysmex New Material Technology Co., Ltd. and Laerst (Xiamen) Co., Ltd. formally signed the Strategic Cooperation Agreement on Self-cleaning Nano Coatings for Building Power Generation Glass . The chairmen of both sides jointly attended the signing ceremony and signed the agreement on behalf of the enterprise, marking a new stage of cooperation between the two sides in the application of building curtain wall glass, building power generation glass and functional nano-coatings.

In this strategic cooperation, the two sides will give full play to their advantages in material technology, product research and development, building curtain walls, BIPV building photovoltaic integration and market resources . Jointly promote the application of self-cleaning nano-coating technology in the field of building curtain wall glass and BIPV power generation glass, accelerate the transformation of technological achievements into engineering projects, and help innovative products achieve large-scale application and market promotion.
Sysmex has been focusing on the R & D, production and application of functional nano-coating materials for a long time, and has accumulated rich experience in technology and industrialization in the fields of self-cleaning, easy-to-clean, ultra-clean and functional treatment of photovoltaic glass . In view of the long-term pain points of building curtain wall glass, such as dust deposition, pollutant attachment, frequent cleaning and maintenance, the company continues to promote the technological innovation of self-cleaning nano-coating, and provides new material solutions for the functional upgrading of building glass by endowing the glass surface with better anti-fouling, self-cleaning and long-term cleaning performance.
Laerst (Xiamen) Co., Ltd. has been deeply engaged in the field of building curtain wall and new energy for many years. It has profound industrial accumulation and rich engineering application experience in building curtain wall system, building photovoltaic integration (BIPV), photovoltaic glass project design, manufacturing, construction, operation and maintenance, as well as self-cleaning application practice, which provides a solid foundation for innovative materials to achieve large-scale scene landing.

In the future, the two sides will continue to promote joint product verification, demonstration project construction, market promotion and industrial application around the key directions of building curtain wall glass and BIPV photovoltaic power generation glass, and jointly explore a new application mode of "self-cleaning nano-coating + building photovoltaic integration".
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