Language: 简体中文 English

Daming Zhu

Affiliation:Shanghai Advanced Research Institute, CAS
Technical Title:Full Professor

Presentation Title: Superstoichiometric reversible and manipulable copper-ion intercalation in niobium selenide



Abstract: 

    Niobium selenide (NbSe2) has evoked great interest owing to its intrinsically exotic properties and accessible manipulation by controlled ion intercalation for superconductivity physics and advanced device applications. However, attempts to extend the range of reversible intercalation stoichiometries are often hindered by overexpanded bond rupture and intrinsic-limit transition metal redox centres in selenides when proceeding towards deep intercalation. Here, we report that reversible unconventional super-stoichiometric controlled intercalation in few-layer NbSe2 with up to two copper-ions per unit cell can be realized by triggering anionic redox, a fivefold improvement over previous report. Synergistic charge transfer of the transition metal and selenium framework inhibited the disorder of bonds and lattice structures to avoid falling into conversion, which is essential for obtaining super-stoichiometric intercalation products, enabling tunable copper-ion de/intercalation repeatable for 11,000 cycles. Moreover, deep copper-ion intercalation and its derived intercalation compound family demonstrate milestone performance in capacity and cycling stability for extended electrochemical energy storage applications such as copper batteries, hybrid-ion zinc batteries, and nonaqueous potassium batteries. Our findings broaden the realm of intercalation compounds and offers appealing possibilities for tailoring on-demand physicochemical properties of materials towards the envisioned functional applications. 


Biography: 

     Zhu Daming received his Ph.D. in Optics from the Shanghai Institute of Applied Physics, Chinese Academy of Sciences (CAS) in 2018. He subsequently joined the Shanghai Advanced Research Institute, CAS, where he was appointed Full Professor and PhD Supervisor in 2023. His research interests center on the development of synchrotron radiation characterization techniques for functional materials and devices. He has authored over 70 peer‑reviewed publications in prestigious journals such as Nature Materials, Nature Communications, Journal of the American Chemical Society, and Advanced Materials.

Countdown

{{day}}
Days
{{hour}}
HOURS
{{min}}
MINUTES
{{sec}}
SECONDS

Important Dates

Hotel reservation deadline:
Aug. 30, 2026
Online registration deadline:
In-person participation: Aug. 30, 2026

Online participation: Sep. 3, 2026

On-site check-in time:

Sep. 1-3, 2026
Date of the conference:
Sep. 2-3, 2026

Organzing Committee

Organizer:
- CITIC Metal Co., Ltd.
- CBMM | Niobium

Supporting Organization:
China Nonferrous Metals Industry Association
Electric Vehicle Industry Technology Innovation Strategic Alliance
Advanced Battery Materials Industry Cluster
Songshan Lake Materials Laboratory
Institute of Physics, Chinese Academy of Sciences




Contact us

Dr. Zhongzhu Liu, +86-18510074397,  liuzz3@metal.citic;

Dr. Bo Wang, +86-15665867930,  wangbo3@metal.citic;

Mr. Chuan Zhang, +86-18602384912,  zhangchuan3@metal.citic.

Dr. Luanna Parreira, +55 11 2107 9317, luanna.parreira@cbmm.com
Mr. Alexandre Tizzo,  
+55 11 9812 71299, alexandre.tizzo@cbmm.com


Hello, I am your AI conference assistant! You can try to arrange the following tasks:
To facilitate your participation, you may require the following services:
{{item.question}}

{{ai_type_list[item.type_index]?.name}}

Are you satisfied: Yes No
In deep thought
{{ 'en' == 'cn' ? ai_type_list[ai_type_index]?.name : ai_type_list[ai_type_index]?.name_en }}

{{ 'en' == 'cn' ? item.name : item.name_en }}

{{ 'en' == 'cn' ? item.desc : item.desc_en }}

send