科研队伍

团队骨干

基本信息

张金江

  • 学位职称:

    博士 教授 博士生导师
    西安交通大学青年拔尖人才计划(A类)入选者
    国家级青年人才计划入选者

  • 联系方式:

    地址:西安交通大学曲江校区西二楼
    邮箱:jinjiang.zhang@xjtu.edu.cn

个人简介

2026年5月—至今,西安交通大学,前沿科学技术研究院,教授

2022年10月—2026年5月,马克斯普朗克微结构物理所,博士后研究员

2018年8月—2022年9月,德国德累斯顿工业大学,食品与化学系,博士(导师:冯新亮院士)

2015年9月—2018年6月,西安交通大学,化学学院,硕士(导师:段新华教授)

2011年9月—2015年6月,西安交通大学,应用化学,学士



研究领域

张金江教授主要从事纳米碳分子功能材料的精准合成及其光电磁特性研究,特别是硼掺杂纳米石墨烯分子和石墨烯纳米带的合成以及该类材料在有机光电领域的应用。



代表论文

Cyclophane-based Shielding Strategy for Singly Dispersed Graphene Nanoribbons

This work demonstrated that cyclophane-based shielding strategynot only sterically protects the graphene nanoribbons (GNRs) backbone but also imparts internal strain, enabling singly dispersed GNRs while simultaneousl...

https://www.nature.com/articles/s41557-026-02172-z.pdf

Tunable Topological Phases in Nanographene-based Spin-1/2 Alternating-exchange Heisenberg Chains.

Here we utilize on-surface synthesis to construct spin-1/2 alternating-exchange Heisenberg chains by covalently linking Clar’s goblets—nanographenes each hosting two antiferromagnetically coupled spins. Using scanni...

https://www.nature.com/articles/s41565-024-01805-z.pdf

Precision Graphene Nanoribbon Heterojunctions by Chain-Growth Polymerization.

This work reports a novel chain-growth polymerization strategy that allows for constructing GNR heterojunction with N=9 armchair and chevron GNRs segments (9-AGNR/cGNR). The synthesis involves a controlled Suzuki–Miy...

https://onlinelibrary.wiley.com/doi/epdf/10.1002/anie.202310880

Pushing Up the Size Limit of Boron-doped peri-Acenes: Modular Synthesis and Characterizations.

A series of unprecedented boron-doped PAs (B-PAs), including B-[4,2]PA, B-[4,3]PA and B-[7,2]PA derivatives, are synthesized by a novel one-pot modular synthetic strategy through efficient intramolecular electrophilic...

https://onlinelibrary.wiley.com/doi/epdf/10.1002/anie.202312055

A Modular Cascade Synthetic Strategy Toward Structurally Constrained Boron-doped Polycyclic Aromatic Hydrocarbons.

A novel synthetic strategy was developed for the construction of difficult-to-access structurally constrained boron-doped polycyclic aromatic hydrocarbons (sc-B-PAHs) via a cascade reaction from the readily available ...

https://onlinelibrary.wiley.com/doi/pdfdirect/10.1002/anie.202109840