---
title: "28.13%，26.4%！隆基绿能在晶体硅太阳能电池和组件效率上创下新的世界纪录"
type: "News"
locale: "zh-CN"
url: "https://longbridge.com/zh-CN/news/284494002.md"
description: "隆基绿能在太阳能技术方面取得了显著进展，创造了晶体硅太阳能电池和组件效率的新世界纪录。该公司的混合交叉背接触（HIBC）太阳能电池达到了 28.13% 的光电转换效率，而其组件的效率达到了 26.4%。这些突破是创新技术和系统优化的结果，使隆基绿能在高效太阳能解决方案的大规模生产中处于领先地位。公司旨在继续专注于技术创新，并通过具有竞争力的清洁能源产品为全球能源转型做出贡献"
datetime: "2026-04-29T04:39:00.000Z"
locales:
  - [zh-CN](https://longbridge.com/zh-CN/news/284494002.md)
  - [en](https://longbridge.com/en/news/284494002.md)
  - [zh-HK](https://longbridge.com/zh-HK/news/284494002.md)
---

# 28.13%，26.4%！隆基绿能在晶体硅太阳能电池和组件效率上创下新的世界纪录

, /PRNewswire/ -- Recently, LONGi announced two major technological breakthroughs. First, its independently developed Hybrid Interdigitated-Back-Contact (HIBC) solar cell has been certified by the Institute for Solar Energy Research Hamelin (ISFH) in Germany, achieving a photoelectric conversion efficiency of 28.13%. This marks yet another step forward toward the theoretical efficiency limit of crystalline silicon solar cells, following LONGi's previous efficiency record of 28.04% set in January 2026. Second, modules fabricated based on HIBC solar cells have been certified by the U.S. National Laboratory of the Rockies(NLR), with efficiency breaking through to 26.4% — setting a new record after LONGi had earlier pushed the crystalline silicon module efficiency to 26%.

As the ultimate solution for single-junction crystalline silicon cell technology, the HIBC cell developed by LONGi's Central R&D Institute represents a culmination of the strengths of various cell technologies. The R&D team has innovatively introduced core technologies such as in-situ Patterned Edge Passivation (iPET) and Laser-Induced Crystallization modification (LIC). Through systematic optimization of structural design, material selection, and fabrication processes, the team has achieved multiple breakthroughs in optical performance, interface passivation quality, and charge transport efficiency, paving a mature pathway for the commercial deployment of ultra-high-efficiency crystalline silicon cells.

These hardcore breakthroughs in technological strength have already translated into a leading edge in mass production. In April 2026, the authoritative global PV media outlet TaiyangNews released its ranking of commercialized mass-produced module efficiencies, and LONGi's EcoLife series modules, powered by HIBC technology, secured the top spot with a mass-production efficiency of 25%. This achievement marks the official completion of a complete closed loop spanning from laboratory R&D to large-scale commercial application for HIBC cells, delivering yet another premium clean energy solution to global customers — one that offers "high efficiency, high energy yield, aesthetic versatility, and certified safety and reliability".

Having been deeply engaged in the clean energy field for many years, LONGi has established a comprehensive "Green Power + Green Hydrogen + Energy Storage" full-chain clean energy solution, consistently driving technological iteration through independent innovation to deliver high-quality products across all application scenarios to global customers. Moving forward, LONGi will continue to focus on technological innovation, accelerating the translation of laboratory efficiency breakthroughs into large-scale manufacturing, and serving the global energy transition with more competitive clean energy products to help build a zero-carbon and sustainable green energy ecosystem.

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SOURCE LONGi

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