网络赌场gcgc 6-澳门网络赌场试赌_百家乐游戏开户网址_全讯网 全 (中国)·官方网站

Study here.

Make a difference.

Happenings at WZU

Researcher ZHANG Lijie from the College of Chemistry and Materials Engineering Publishes Academic Paper in "Nature Nanotechnology", Sub-journal of Nature

Release time: 2023年10月17日 09:01

Two-dimensional materials possess novel physical properties such as atomic-level thickness, excellent electronic transport, and optoelectronic characteristics. They serve as ideal platforms for the development of high-performance electronic and optoelectronic devices, potentially extending the traditional silicon-based semiconductor industry based on "Moore's Law" and further enhancing chip transistor integration density. However, the process temperatures required for producing high-quality two-dimensional materials are generally higher than the temperature limits of standard semiconductor CMOS (complementary metal-oxide-semiconductor) chip fabrication processes, significantly restricting the integration of two-dimensional materials with silicon-based integrated circuits. Although integration of two-dimensional materials can be achieved through additional mechanical transfer processes, the samples produced using mechanical transfer methods are challenging to control in terms of product morphology and size, are time-consuming and inefficient, and often introduce chemical impurities at material interfaces, leading to a noticeable decline in material performance and hindering scalable applications. Therefore, achieving low-temperature direct growth of high-quality two-dimensional materials is an ideal solution to promote their practical applications in the semiconductor field.

Recently, researcher ZHANG Lijie and colleagues from our institute addressed the temperature constraints faced in the integration of two-dimensional materials, heterostructures, and semiconductor chip monolithic integration. They first developed a van der Waals substrate-assisted low-temperature epitaxial growth strategy for the controllable growth of a series of two-dimensional metal iodides (PbI2, CdI2, BiI3, CuI) at relatively low temperatures. Combined with theoretical calculations, they elucidated the impact of diffusion barriers on the growth of two-dimensional iodides, providing strategies and theoretical guidance for low-temperature growth of high-quality two-dimensional materials. This research achievement was published in the prestigious international academic journal "Advanced Functional Materials" in the field of materials.

Building upon this foundation, Researcher ZHANG Lijie and team designed a universal van der Waals substrate-assisted low-temperature in-situ substitution growth method for two-dimensional metal iodides. They successfully achieved ultra-low-temperature controllable growth (≤ 400°C) of 17 high-quality two-dimensional metal chalcogenides and their heterostructures. Combining theoretical calculations, they elucidated the mechanism of ultra-low-temperature in-situ substitution growth, revealing the microscopic essence of sulfur element replacing iodine element with low substitution barriers. Moreover, they achieved large-area array integration of various two-dimensional materials and their heterostructures at temperatures below 400°C. This research offers a feasible solution for the temperature compatibility issue in the backend manufacturing process of two-dimensional materials and semiconductor chips and provides a new approach for the monolithic integration of two-dimensional materials and their heterostructures. The research paper titled "Epitaxial substitution of metal iodides for low-temperature growth of two-dimensional metal chalcogenides" was published in  Nature Nanotechnology sub-journal of Nature, with Wenzhou University as the joint corresponding unit. Researcher Zhang Lijie from  College of Chemistry and Materials Engineering, Lain-Jong LI from the University of Hong Kong, Zhengtang LUO from the Hong Kong University of Science and Technology, and Shaoming HUANG from Guangdong University of Technology are the joint corresponding authors. Young faculty member ZHAO Mei from College of Chemistry and Materials Engineering is the joint first author.



UBC Vice President Rehan Sadiq Visits WZU for Exchange and Discussion On the morning of April 3rd, Wenzhou University held a cooperation negotiation meeting with the University of British Columbia (UBC) from Canada. ZHAO Min, President of Wenzhou University, and Dr. Rehan Sadiq, Vice President and Provost of UBC, along with Professor Kasun Hewage from UBC and Professor Jianbing LI from the University of Northern British Columbia, attended the meeting, alongside representatives ...

2024-04-23

WZU Delegation Achieves Excellent Results in International Criminal Court Moot Court Competition On March 24, 2024, the International Criminal Court Moot Court Competition in English (hereinafter referred to as "ICC English Competition") concluded, with the WZU delegation winning the third prize nationwide.The competition was jointly organized by China University of Political Science and Law and the International Criminal Court, with nearly 70 university teams from across the country participating,...

2024-04-23

WZU Education Majors Achieve Sixth Place Nationwide in the 9th "Tian Jiabing Cup" National Teaching Skills Competition From December 29th to 31st, the finals of the 9th "Tian Jiabing Cup" National Teaching Skills Competition for education majors were held at Zhejiang Normal University. A total of 1611 participants from 226 universities nationwide competed in this event, with 10 participants from our university. They achieved 4 first prizes, 1 second prize, and 5 third prizes, ranking sixth in the nation for the number ...

2024-03-04

Contact Us

International Relations Office, Wenzhou University

Postal Address: 6th Floor, Administrative Building, South Campus, Wenzhou University, Chashan University Town, Wenzhou City, Zhejiang Province, China 325035

Tel: 0086-577-86680971 86598029

Fax: 0086-577-86598029

E-mail: fao@wzu.edu.cn

Stay Connected

尚志市| 百家乐官网的寻龙定穴| 百家乐这样赢保单分析| 金狮国际| 墓地附近做生意风水| 大发888代充平台| 百佬汇百家乐官网的玩法技巧和规则| 全讯网wn888.com| 大上海百家乐官网的玩法技巧和规则| 香港六合彩直播| 24山来水吉凶| 澳门新濠天地| 百家乐技术辅助软件| 菲律宾太子娱乐城| 玩百家乐输了| 百家乐官网透视牌靴| 网络老虎机| 百家乐怎么赢博彩正网| 使用的百家乐官网软件| 博彩e族论坛| 百家乐l23| 御匾会百家乐官网娱乐城| 顶尖百家乐官网开户| 大发888网址是什么| 百家乐官网路单走势图| 至棒娱乐备用| 大发888下载失败| 百家乐博彩通博彩网皇冠网澳门赌场真人赌博 | 百家乐官网百家乐官网论坛| 旧金山百家乐的玩法技巧和规则 | 东城国际| 临汾玩百家乐的人在那里找| 百家乐官网哪条下路好| 丹江口市| 澳盈88开户,| 大发888bet游戏平台| 百家乐扑克多少张| 木棉百家乐官网的玩法技巧和规则| 百家乐官网怎么赢9| 顶级赌场| 大发888娱乐场下载co|