绿色化学工程(GreenChE)分享 http://blog.sciencenet.cn/u/GreenChE IF=9.1,Q1区,CiteScore=11.6

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[转载]新“文”发布 | GreenChE 最新上线文章集锦

已有 116 次阅读 2025-12-2 16:42 |个人分类:文章集锦|系统分类:论文交流|文章来源:转载

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0Review 

From biomass to wealth: biomass-derived carbon dots for green synthesis, photoluminescence mechanisms, and multifunctional applications

Fu Qin, Lili Ren*

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❖ We summarized the fluorescence mechanism of biomass-derived carbon dots (BCDs).

❖ A framework linking biomass types to properties and the application of BCDs.

❖ The classification criteria for synthesis methods of BCDs were reconstructed.

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https://doi.org/10.1016/j.gce.2025.10.004

0Article

Size-controlled flexible ionic polymer catalysts with enhanced mass transfer for sustainable ethyl methyl carbonate production

Rongkai Cui, Miaomiao Cui, Fuying Zhang, Xiaoyan Chen, Ting Qiu*, Jie Chen*

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❖ A directly shaped flexible ionic polymer (PVD-x) was developed for EMC synthesis.

❖ Shaped PVD-x could be directly applied in industrial continuous catalytic units.

❖ PVD-x provided recyclable, sustainable alternative to sodium methoxide in industry.

❖ PVD-x delivered excellent performance with EMC 50.83% yield, 96.25% selectivity.

❖ PVD-x maintained stability for over 2400 h in continuous fixed-bed operation.

❖ DFT revealed the mechanism by which adsorption enhances catalytic activity.

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https://doi.org/10.1016/j.gce.2025.11.001

0Article

External intensifications for ionic liquids-based biorefinery in highly viscous systems

Yichen Liu, Weidong Zhao*, Jian Sun*

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❖ Strong IL-biomass interactions result in high viscosity and hinder mass/heat transfer.

❖ External intensifications enhance transfer efficiency without altering IL chemical structures.

❖ Co-solvents lower viscosity, facilitating improved heat and mass transfer in IL systems.

❖ Microwave enhances heat transfer via dipole relaxation and ionic polarization in ILs.

❖ Ultrasound boosts mass transfer mainly through cavitation and microjet formation.

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https://doi.org/10.1016/j.gce.2025.10.003

0Article

Study on core-shell ionic liquid@metal-organic framework composites for direct oxidative carboxylation of CO2 and olefins under cocatalyst and solvent- free conditions

Huidong Wang, Jiaxing Wen, Jianmin Sun*

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❖ A core-shell structured composite catalyst (1-C-3-M@Ni-BDC-NH2) with multiple active sites comprising metal-organic framework and ionic liquid was designed and synthesized.

❖ Ionic liquid shell of 1-C-3-M@Ni-BDC-NH2 exhibited good affinity for both CO2 and ST.

❖ Due to synergistic effects of multiple active sites, 1-C-3-M@Ni-BDC-NH2 demonstrated excellent catalytic activity for direct oxidative carboxylation of CO2 and styrene under mild reaction conditions.

❖ As a heterogeneous catalyst, 1-C-3-M@Ni-BDC-NH2 is easy to separate from the product and has good thermal stability and cycle stability. 

doi.org10.1016j.gce.2025.10.002.png

https://doi.org/10.1016/j.gce.2025.10.002

0Article 

Precise capacity fade modeling of NCA/graphite lithium-ion batteries across a wide-temperature range using a pseudo-two-dimensional approach

Xuecheng Qian, Shiyi Wang, Xiaoyun Zhan, Jilei Ye, Lijun Fu, Lili Liu, Zhaogen Wang*, Yuhui Chen, Tao Wang*, Yuping Wu*

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❖ The P2D model is established based on SEI, CEI, and lithium deposition over a wide-temperature rang.

❖ The MAPE of capacity fade simulation is only 1.24%.

❖ The contribution proportion of SEI film and CEI film to the side reaction film resistance is quantified.

❖ The characteristics of voltage change rate in the aging process are compared.

❖ The R2 of the charge/discharge curve is 0.94.

doi.org10.1016j.gce.2025.10.001.png

https://doi.org/10.1016/j.gce.2025.10.001

期刊简介

Green Chemical Engineering(GreenChE)于2019年入选“中国科技期刊卓越行动计划高起点新刊”,2020年9月正式创刊,最新影响因子7.6,位列Q1区,最新CiteScore为15.5,目前已被ESCIEIDOAJScopusCSCD等多个权威数据库收录。GreenChE以绿色化工为学科基础,聚焦"绿色",立足"工程" ,注重绿色化学、绿色化工及其交叉领域的前沿问题,紧紧围绕低碳化、清洁化和节能化的发展要求。目前是对读者和作者双向免费的开源期刊。

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