Smart fotoelektr oynasida shaffof harakatchan silikon varaqasini innovatsion qo'llash

Mar 06, 2025 Xabar QOLDIRISH

Transparent conductive silicone sheet has become one of the core materials in the field of smart photovoltaic glass due to its high light transmittance (>85%) 23 va o'tkazuvchan ishlashi (sirt qarshiligi)<10Ω/sq). This material combines the light transmittance of traditional glass and the weather resistance of silicone by embedding conductive nanoparticles (such as silver nanowires or graphene) into a flexible silicone matrix, and can adapt to complex curved structures.

Asosiy ishlash afzalliklari
Optik moslashuvchanlik: 380-780 nm NM ning ko'rinishi 88% dan yuqori va tuman<2%, ensuring efficient power generation of photovoltaic modules; ‌Environmental stability‌: Passed 3000 hours of double 85 test (85℃/85% humidity), and the UV aging life is over 25 years; ‌Intelligent function expansion‌: After integrating the temperature control module, the surface temperature difference of the module can be dynamically adjusted to improve the power generation efficiency by 12%-15%‌. ‌Typical application scenarios‌
Bipv fotoalbitik integratsiyani kuchaytiradi: an'anaviy shisha parda devorlarini almashtiradi, egri fotoelektoltaik modullarning o'tkazuvchan krapsiv qatlami bo'lib xizmat qiladi va qurilish va elektr energiyasini ishlab chiqarish funktsiyalarini birlashtirishni amalga oshiradi; Smart Dimming oynasi: energiya tejash va maxfiylik ehtiyojlarini qondirish uchun oqlanishni nazorat qiladi va Tesla fotovoltaik roof 2-ga nisbatan qo'llanilgan. 0 versiyasi; Perovskitli to'plangan modullar: perovskit-kristalli kremniylarni to'plash uchun moslashuvchan shaffof elektrodlar sifatida, hujayralarni konvertatsiya qilish samaradorligi 32 foizdan oshadi. Sanoatni rivojlantirish tendentsiyalari
Smart Smart fotovoltaik shisha bozorining hajmi 25 0} 2 0} miqdorida 5,8 milliard dollarga yetishi kutilmoqda, shundan shaffof olib tashlanadigan silikon varaqlari 35% ga etadi. YANGI EI ROHS 3.0 Reglament va Sertifikatlashtirish talablari, biifsiz (ITO o'rnini almashtirish) va bio asosida AZO kabi materiallarni ishlab chiqarishni yanada kuchaytiradi. Nemis Frunhhofer instituti tomonidan ishlab chiqilgan so'nggi silikon ipake texnologiyasi modullarning hayotini 30% dan ko'proq miqdorda uzaytirish uchun mikrokozulyonlar orqali ta'mirlash agentlarini qo'yishi mumkin.