# Harvard Bionic Leaf

Nocera 仿生叶片谱系如今支撑着可在叶面定殖并向作物供氮的纳米包埋固氮菌——在 2026 年 6 月 Current Research in Biotechnology 路线图中被描绘为“生物-太阳能氮经济”，并以叶面生物肥料形式进行试验（Nature Food，2026）。

Source: https://cn.bioecon.ru/companies/harvard-bionic-leaf/
Updated: 2026-07-10

- 国家: United States

## 可核验事实

| 事实 | 数值 | 来源 |
| --- | --- | --- |
| 隶属机构 | 哈佛大学化学与化学生物学系Nocera实验室 | https://www.chemistry.harvard.edu/people/daniel-g-nocera, https://www.nocera.harvard.edu/daniel-nocera, https://www.nocera.harvard.edu/home |
| 研究方向 | 人工光合作用、生物-太阳能固氮、可再生能源转化与存储、可持续生物肥料、质子耦合电子转移（PCET） | https://ammoniaenergy.org/articles/solar-bio-gmo-ammonia-powered-by-the-bionic-leaf/, https://www.chemistry.harvard.edu/news/expanding-reach-bionic-leaf, https://www.chemistryworld.com/news/radishes-grown-using-artificial-leaf-derived-fertiliser/3007079.article, https://www.labmanager.com/a-bionic-leaf-could-help-feed-the-world-7606, https://www.nocera.harvard.edu/artificial-leaf-and-bionic-leaf-publications, https://www.nocera.harvard.edu/daniel-nocera, https://www.nocera.harvard.edu/home |
| 主要研究人员 | Daniel G. Nocera（Patterson Rockwood能源学讲席教授）、Dilek Dogutan（首席研究科学家） | https://news.harvard.edu/gazette/story/2019/09/how-a-biofriendly-fertilizer-could-offer-a-greener-way-to-grow-plants/, https://www.chemistry.harvard.edu/news/expanding-reach-bionic-leaf, https://www.nocera.harvard.edu/daniel-nocera, https://www.nocera.harvard.edu/lab-members |
| 科研资助 | NIH研究项目（R01）资助号5R01GM047274-27（核糖核苷酸还原酶的质子耦合电子转移机制） | https://grantome.com/grant/NIH/R01-GM047274-27, https://www.nocera.harvard.edu/daniel-nocera |
| 论文产出 | 已发表论文525余篇，受邀冠名讲座152次 | https://www.nocera.harvard.edu/artificial-leaf-and-bionic-leaf-publications, https://www.nocera.harvard.edu/daniel-nocera |

独立来源: ammoniaenergy.org, chemistry.harvard.edu, chemistryworld.com, grantome.com, labmanager.com, news.harvard.edu, nocera.harvard.edu

## 技术

- [工程化光合作用与人工叶绿体](https://cn.bioecon.ru/technology/engineered-photosynthesis-artificial-chloroplasts/)
