大学系列特辑|中国科学技术大学GEE文章精选

学术   2024-10-08 13:10   北京  

大学系列特辑

Green Energy & Environment——大学系列特辑第五期之中国科学技术大学!本期特别整理了来自中国科学技术大学(通讯作者单位)的文章5篇,希望GEE的精选论文能为您的科研提供新的思路!


1

Research highlight

Endeavors on the development of efficient and sustainable supported metal catalysts for chemical synthesis on solid–liquid interfaces

Chao Yang*(杨超), Lifeng Cui*(崔立峰)

Highlighted the design, fabrication, and applications of highly sustainable NHC-functionalized hypercrosslinked polymers supported palladium catalysts and gained new insights into the reaction mechanism of heterogeneous catalysis.

https://doi.org/10.1016/j.gee.2022.03.004


2

Review article

Development of sustainable and efficient recycling technology for spent Li-ion batteries: Traditional and transformation go hand in hand

Zejian Liu, Gongqi Liu, Leilei Cheng, Jing Gu, Haoran Yuan*(袁浩然), Yong Chen, Yufeng Wu

This review comprehensively summarizes the recycling technology of spent lithium-ion batteries, especially reveals a clean and efficient closed-loop mechanism from the methods and policies, and looks forward to the future industrial recycling of spent lithium-ion batteries.

https://doi.org/10.1016/j.gee.2023.09.001


3

Research paper

Dissolution of highly molecular weight cellulose isolated from wheat straw in deep eutectic solvent of Choline/L-Lysine hydrochloride

Jiake Wang, Yan Wang, Zhongzheng Ma, Lifeng Yan*(闫立峰)

Highly molecular weight cellulose isolated from wheat straw has been well dissolved in a new green Ch/Lys DES solvent, which can be used as feedstock for cellulose based chemicals and materials.

https://doi.org/10.1016/j.gee.2020.03.010


4

Research paper

Synthesis of dihydrocapsaicin and dihydrocapsiate exclusively from lignocellulosic platform chemicals

Yan-Bing Li1, Hui-Ying Guo1, Chen-Qiang Deng, Jin Deng*(邓晋)

The natural products dihydrocapsaicin and dihydrocapsaicin are exclusively synthesized from lignocellulose platform chemicals. All carbon atoms in the product are derived from lignocellulosic substrates, and the selective hydrodeoxygenation from carbonyl to methylene is achieved through a green process.

https://doi.org/10.1016/j.gee.2020.11.001


5

Research paper

One-pot green mass production of hierarchically porous carbon via a recyclable salt-templating strategy

Changde Ma, Jiang Gong, Shuang Zhao, Xiaoguang Liu, Xueying Mu, Yanhui Wang*(王艳辉), Xuecheng Chen*(陈学成), Tao Tang*(唐涛)

Hierarchically porous carbon has been prepared via a recyclable salt-templating strategy, and the prepared porous carbon exhibited excellent electrochemical performance when used as electrode material in supercapacitors.

https://doi.org/10.1016/j.gee.2020.12.004



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绿色能源与环境GEE
《绿色能源与环境》(Green Energy \x26amp; Environment,GEE)创刊于2016年4月,是由中国科学院主管,中国科学院过程工程研究所和科学出版社共同主办的英文学术期刊。
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