---
title: LONGi Solar
description: 近日，隆基绿能与江苏科技大学、澳大利亚科廷大学三方合作，在国际上首次制造出高柔韧性、高功率重量比的晶硅异质结太阳能电池，相关研究成果以“Flexible silicon solar cells with high power-to-weight ratios”为题发表在国际期刊《Nature》（自然）上。 晶
image: https://blog.nastechsolar.com/hubfs/Imported_Blog_Media/640_720dd0f201.png
---

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 March 25, 2024

# LONGi Solar

 By  [Longi](https://blog.nastechsolar.com/en/author/longi)  ·   1 minute read

近日，隆基绿能与江苏科技大学、澳大利亚科廷大学三方合作，在国际上首次制造出高柔韧性、高功率重量比的晶硅异质结太阳能电池，相关研究成果以“Flexible silicon solar cells with high power-to-weight ratios”为题发表在国际期刊《Nature》（自然）上。

![](https://blog.nastechsolar.com/hubfs/Imported_Blog_Media/640_720dd0f201.png)

晶硅太阳能电池是目前最为成熟、应用最广的光伏发电技术，是全球大部分地区最具成本效益的发电选择。虽然晶硅太阳能电池目前占太阳能电池市场的95%以上，但难以应用于海面漂浮式光伏、曲面屋顶、卫星、航天器和无人机等对材料重量或柔韧性要求较高的场景，需要进一步减轻太阳能电池的重量、提升电池柔性。

因此，将硅片的厚度减小到比典型的晶硅太阳能电池薄得多的厚度，从而将薄膜太阳能电池的优势融入到晶硅太阳能电池中，是许多研究的重点。此外，几十年来，所有研究的薄型晶硅太阳能电池（55-130微米）的功率转换效率（PCE）一直保持在23.27%-24.70%的范围内，大面积的晶硅太阳能电池光电转换效率难以突破26%。

在此次研究中，三方团队合作开发出了表界面钝化、掺杂接触生长等新工艺。测试结果表明，厚度在57微米至125微米的5种产品，均取得26%以上的转换效率，最高达26.81%。其中，57微米厚的这款电池，其电池功率重量比为1.9瓦/克，曲率半径19毫米，功率重量比是市面现有产品的2-3倍。相关数据获权威检测机构德国哈梅林太阳能研究所认证。

![](https://blog.nastechsolar.com/hubfs/Imported_Blog_Media/20240308135549_6fb960fe44.png)

﻿该研究结果展示了晶硅太阳能电池成为一类具有显著柔性和可塑性的薄膜太阳能电池的潜力，这些电池可以经历各种变形，如弯曲和卷曲。相比之下，传统的晶硅太阳能电池（≥150微米），产生相对较小的失真。

《Nature》（自然）是全球首屈一指的科学杂志之一，也是全球引用量最高的多学科期刊，杂志已连续多年在多学科领域影响因子排名第一，诸多最重要、最前沿的研究结果都是以短讯形式发表在该杂志上。

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