taiyangnews 07月17日 20:15
AIKO Cracks the BC Code with Two-Step Innovation: A Scalable Breakthrough for the World’s Most Efficient Solar Technology
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AIKO公司通过其专有的“自屏蔽两步法”和激光图案化技术,革新了N型全背接触(ABC)太阳能电池的制造工艺。该技术解决了长期困扰BC电池规模化生产的复杂性和高成本问题,通过解耦p型和n型隧穿氧化层及多晶硅层的形成,实现了每个区域的独立优化,从而显著提升了钝化质量和转换效率。AIKO创新性地使用硼硅玻璃(BSG)和磷硅玻璃(PSG)作为天然自对准掩模,简化了工艺流程,减少了污染风险和材料消耗。这些进展使得ABC电池的转换效率突破27%,并实现了大规模、低成本、高可靠性的生产,为太阳能行业向更高效率的技术演进奠定了基础。

💡 AIKO的“自屏蔽两步法”与激光图案化技术结合,是ABC太阳能电池制造的重大突破。该工艺通过完全解耦p型和n型隧穿氧化层及多晶硅层的形成,使得每个区域的优化互不干扰,从而大幅提升了钝化质量和电池的整体转换效率,为BC技术的大规模商业化应用铺平了道路。

🌟 传统BC电池制造通常采用一步法,但这种方法在形成关键的电荷选择层时存在固有矛盾,导致效率受限。AIKO的两步法工艺通过独立优化两类材料层的形成条件,克服了这一难题,实现了前所未有的钝化效果和效率提升,推动ABC电池的转换效率超过27%。

⚙️ AIKO创新性地采用了硼硅玻璃(BSG)和磷硅玻璃(PSG)作为天然的自对准掩模。这一举措无需外部掩模和清洁步骤,显著降低了污染风险,简化了生产流程,并减少了材料消耗,同时提高了良品率和生产一致性,使得整体工艺效率媲美传统一步法。

🔬 为实现精准控制,AIKO通过热场模拟重建了高温热力学环境,并开发了智能应力平衡系统和先进的建模工具,将反应腔内的温度控制精度提高到±0.5°C。这种超高精度的工艺控制确保了p型和n型区域高质量隧穿氧化层和多晶硅层的稳定形成,是实现行业领先效率和制造稳定性的关键。

📈 AIKO的先进技术使得ABC模块能够以吉瓦(GW)规模生产,兼具优异的性能、可靠性和成本效益,其成本已接近主流的TOPCon和PERC产品。这项商业化进展标志着ABC技术已成熟、可扩展并准备好全球部署,将引领高效N型太阳能技术的演进,推动可持续能源的未来。

AIKO’s proprietary “self-masked two-step process” combined with laser patterning has redefined the way N-Type All Back Contact (ABC) solar cells are made—setting new benchmarks for efficiency, reliability, and large-scale production. This technological leap has made Back Contact (BC) technology truly scalable for mainstream adoption.

BC solar cells have long been seen as the most promising pathway to higher efficiency in crystalline silicon photovoltaics. With no front-side grid lines and 100% light absorption, they offer the highest theoretical efficiency. However, for decades, the industry struggled to scale BC due to its complex manufacturing process and high cost.

AIKO changed that by introducing a new process that addresses the fundamental challenges holding BC back from mass adoption.

What Makes AIKO’s Approach Different?

Conventional BC production typically uses a one-step process that forms tunneling oxide and polycrystalline silicon layers—the key charge-selective layers—at the same time. This oversimplified method forces trade-offs, as the ideal process conditions for one region negatively impact the other, resulting in suboptimal passivated contacts and limited efficiency.

AIKO’s breakthrough comes from completely decoupling the formation of the p-type and n-type tunneling oxide and polycrystalline silicon layers. This allows each side of the solar cell to be optimized independently, maximizing the passivation quality and pushing conversion efficiency to new heights.

To further enhance the process, AIKO pioneered the use of BSG (boron silicate glass) and PSG (phosphorous silicate glass)—materials formed during high-temperature diffusion—as natural, self-aligned masks. This innovation:

    Eliminates the need for external masking and cleaning, reducing contamination risk

    Simplifies the overall process, making it as efficient as traditional one-step methods

    Reduces material consumption, while improving yield and production consistency

These innovations have enabled the production of low-stress, high-uniformity films with exceptional passivation quality—laying the physical foundation for mass production of ABC cells with conversion efficiencies exceeding 27%. 

To achieve this, AIKO leveraged its strong R&D capabilities to reconstruct the high-temperature thermodynamic environment through thermal field simulation, finding the optimal balance between laminar flow control and passivation kinetics. The company also developed an intelligent stress-balancing system and applied advanced modeling tools to achieve ultra-precise temperature control within ±0.5°C inside the reaction chamber. These breakthrough process innovations ensure the consistent formation of high-quality tunneling oxide and polycrystalline silicon layers for both the p-type and n-type regions—paving the way for industry-leading cell efficiency and manufacturing stability.

Together, these advancements enable AIKO to produce ABC modules at gigawatt scale with excellent performance, reliability, and cost-effectiveness—rapidly approaching the cost levels of mainstream TOPCon and PERC products.

Shaping the Future of Solar

From polycrystalline to monocrystalline, from PERC to Back Contact, every leap in solar technology has come from companies willing to rethink the fundamentals. AIKO’s disruptive innovation continues this legacy—leading the evolution of high-efficiency N-Type technology.

The commercialization of its proprietary self-masked two-step process marks more than just a manufacturing upgrade—it signals a turning point in the solar industry. With ABC technology now mature, scalable, and ready for global deployment, AIKO is helping pave the way toward a more powerful and sustainable energy future.

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AIKO ABC太阳能电池 太阳能技术 半接触电池 可再生能源
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