Development of high methanol-tolerance Pichia pastoris based on iterative adaptive laboratory evolution

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC02874G, Paper
Shuai Wang, Yuanyuan Wang, Qingyan Yuan, Liu Yang, Fengguang Zhao, Ying Lin, Shuangyan Han
High methanol-tolerant strains were obtained using iterative adaptive laboratory evolution (microbial microdroplet culture (MMC) and shake flask culture (SFC)).
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Co(dppbsa)-catalyzed reductive N,N-dimethylation of nitroaromatics with CO2 and hydrosilane

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC02517A, Paper
Shuang-Shuang Ma, Rui Sun, Zi-Heng Zhang, Peng-Xin Guan, Jin-Qing Lin, Chun-Shan Li, Bao-Hua Xu
A novel half-sandwich Co(dppbsa) ([Co]) was synthesized and employed for the catalytic N,N-dimethylation of nitroaromatics with CO2 and hydrosilane. The same catalyst also enabled the highly efficient reduction of nitroaromatics to aromatic amines.
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Tailoring the hydrophobicity and zincophilicity of poly(ionic liquid) solid–electrolyte interphases for ultra-stable aqueous zinc batteries

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC02916F, Paper
Xiao Zhang, Long Su, Fei Lu, Ye Tian, Fengjin Xie, Liping Liang, Liqiang Zheng, Xinpei Gao
This work presents a novel design strategy that focuses on balancing the hydrophobicity and zincophilicity of poly(ionic liquid) solid–electrolyte interphases to enhance the performance of aqueous zinc ion batteries.
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Electrocatalytic upcycling of plastic waste

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC03337F, Critical Review
Juhyun Cho, Byeongyoon Kim, Taehyun Kwon, Kwangyeol Lee, Sang-Il Choi
The electrochemical upcycling of plastic waste offers a more efficient and safer means to produce value-added products under mild conditions.
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Photo-triggered halodecarboxylation of aliphatic carboxylic acids via cerium-mediated ligand-to-metal charge transfer in water

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC02063K, Paper
Yan Xu, Panyi Huang, Yu Jiang, Chun Lv, Peixuan Li, Jiayang Wang, Bin Sun, Can Jin
An efficient photo-triggered halodecarboxylation reaction of aliphatic carboxylic acids for the preparation of bromo-, iodo- and chloroalkanes under an air atmosphere with water as the solvent has been developed.
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Multicomponent hydrosulfonylation of alkynes for the synthesis of vinyl sulfones

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC02284F, Paper
Lan Mei, Xiao-Rong Shu, Fa-Liang Liu, Jiao-Zhe Li, Jian-Feng Zhang, Keqi Tang, Wen-Ting Wei
An efficient and mild multicomponent reaction (MCR) for the preparation of vinyl sulfones achieved by carrying out hydrosulfonylation of alkynes with the corresponding aryl diazonium salts, K2S2O5 and thiophenols at room temperature without any metal catalysts or additives.
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π–π stacking of unsaturated sulfonates on natural graphite enables a green and cost-effective cathode for high-voltage dual-ion batteries

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC01802D, Paper
Kejia Zhang, Decheng Li, Qunting Qu, Jie Shao, Yu Jiang, Linze Lv, Ziyang Lin, Honghe Zheng
A green and cost-effective material for dual-ion batteries is obtained by virtue of π–π stacking between unsaturated sulfonates and graphite.
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Introducing I−/formic acid as a green reagent for the reduction of sulfinates and sulfoxides

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC03213B, Communication
Open Access Open Access
J. Armando Luján-Montelongo, Luis Javier García de la Cuesta, Alicia E. Cruz-Jiménez, Perla Hernández, Alberto Vela
A sustainable method using formic acid and iodide as a catalyst for sulfinyl group deoxygenation in sulfoxides and sulfinates. Formic acid networks facilitate sulfinyl reduction.
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Recyclable iodine-catalyzed oxidative C–H chalcogenation of 1,1-diarylethenes in water: green synthesis of trisubstituted vinyl sulfides and selenides

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC02999A, Paper
Nilanjana Mukherjee, Tanmay Chatterjee
A recyclable iodine-catalyzed, sustainable C–H sulfenylation and selenation of 1,1-diarylalkenes is developed in water under an aerobic atmosphere.
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CO2 promoted photoredox/Ni-catalyzed semi-reduction of alkynes with H2O

Green Chem., 2023, Advance Article
DOI: 10.1039/D3GC03290F, Communication
Shenhao Chen, Chanjuan Xi
CO2-promoted photoredox/Ni dual catalyzed semi-reduction of alkynes with water has been developed, which provides a method for the synthesis of Z-alkenes in high yields with high stereoselectivity under mild conditions.
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