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    Home > Chemicals Industry > Chemical Technology > Yangzhou University has made important progress in the research of MWT polycrystalline cell technology

    Yangzhou University has made important progress in the research of MWT polycrystalline cell technology

    • Last Update: 2022-11-20
    • Source: Internet
    • Author: User
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    Recently, according to the School of Chemistry and Chemical Engineering of Yangzhou University, the research of high-efficiency back-passivated MWT polycrystalline cell technology led by Yang Zhanjun, associate professor of the university, has made important progress
    .
    It is understood that this technology has the dual advantages of high efficiency and low cost, and its large-scale application and development will change the current pattern
    of the entire photovoltaic market.

    According to reports, MWT back contact battery technology is a technology that uses laser drilling and back wiring, which eliminates the main gate line of the front electrode, effectively reduces the shading of the front grid line, improves the conversion efficiency, and reduces the consumption of silver paste and the low birth rate recombination loss
    at the metal electrode-emitter interface.

    Recently, according to the School of Chemistry and Chemical Engineering of Yangzhou University, the research of high-efficiency back-passivated MWT polycrystalline cell technology led by Yang Zhanjun, associate professor of the university, has made important progress
    .
    It is understood that this technology has the dual advantages of high efficiency and low cost, and its large-scale application and development will change the current pattern
    of the entire photovoltaic market.

    Battery technology

    According to reports, MWT back contact battery technology is a technology that uses laser drilling and back wiring, which eliminates the main gate line of the front electrode, effectively reduces the shading of the front grid line, improves the conversion efficiency, and reduces the consumption of silver paste and the low birth rate recombination loss
    at the metal electrode-emitter interface.

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