Principles and practice of greener ionic liquid–nanoparticles biosystem DOI Creative Commons
Joanna Feder‐Kubis, Anna Wirwis, Małgorzata Policht

et al.

Green Chemistry, Journal Year: 2024, Volume and Issue: 26(6), P. 3072 - 3124

Published: Jan. 1, 2024

Ionic liquids as additives in nanoparticles influence their morphology and enhance bioactivity, highlighting key role sustainable chemistry, a major environmental advance.

Language: Английский

Tuning ionic liquid-based functional deep eutectic solvents and other functional mixtures for CO2 capture DOI

Yisha Xu,

Ruina Zhang, Ying Zhou

et al.

Chemical Engineering Journal, Journal Year: 2023, Volume and Issue: 463, P. 142298 - 142298

Published: March 10, 2023

Language: Английский

Citations

59

Imidazolium based ionic liquid-phase green catalytic reactions DOI
Pedro Migowski, Pedro Lozano, Jaı̈rton Dupont

et al.

Green Chemistry, Journal Year: 2023, Volume and Issue: 25(4), P. 1237 - 1260

Published: Jan. 1, 2023

The interplay among the properties of catalysts, substrates, products, and ionic liquids (ILs) for a desired selective reaction is presented with selected examples. A guide to select most adequate IL catalytic device proposed.

Language: Английский

Citations

55

Deep Eutectic Solvents: An Eco‐friendly Design for Drug Engineering DOI Creative Commons
Feras Oyoun, Antoniya Toncheva, Luis Castillo Henríquez

et al.

ChemSusChem, Journal Year: 2023, Volume and Issue: 16(20)

Published: July 18, 2023

Abstract In the spirit of circular economy and sustainable chemistry, use environmentally friendly chemical products in pharmacy has become a hot topic. recent years, organic solvents have been subject great range restriction policies due to their harmful effects on environment toxicity human health. parallel, deep eutectic (DESs) emerged as suitable greener with beneficial environmental impacts rich palette physicochemical advantages related low cost biocompatibility. Additionally, DESs can enable remarkable solubilizing effect for several active pharmaceutical ingredients (APIs), thus forming therapeutic (TheDESs). this work, special attention is paid DESs, presenting precise definition, classification, methods preparation, characterization. A description natural (NaDESs), i. e., present sources, also reported. Moreover, review article first one detail different approaches judiciously selecting constituents order minimize number experiments. The role biomedical sectors impact development successful therapies are discussed.

Language: Английский

Citations

48

Recent Advances in Low‐Temperature Liquid Electrolyte for Supercapacitors DOI

Shuqin Lan,

Chang Yu, Jinhe Yu

et al.

Small, Journal Year: 2024, Volume and Issue: unknown

Published: March 7, 2024

Abstract As one of the key components supercapacitors, electrolyte is intensively investigated to promote fast development energy supply system under extremely cold conditions. However, high freezing point and sluggish ion transport kinetics for routine electrolytes hinder application supercapacitors at low temperatures. Resultantly, liquid should be oriented reduce point, accompanied by other superior characteristics, such as large ionic conductivity, viscosity outstanding chemical stability. In this review, intrinsically physical parameters microscopic structure low‐temperature are discussed thoroughly, then previously reported strategies that used address associated issues summarized subsequently from aspects aqueous non‐aqueous (organic electrolyte). addition, some advanced spectroscopy techniques theoretical simulation better decouple solvation reveal link between briefly presented. Finally, further improvement direction put forward provide a reference guidance follow‐up research.

Language: Английский

Citations

22

Sustainable Green Extraction of Carotenoid Pigments: Innovative Technologies and Bio-Based Solvents DOI Creative Commons
Ángeles Morón-Ortiz, Paula Mapelli‐Brahm, Antonio J. Meléndez‐Martínez

et al.

Antioxidants, Journal Year: 2024, Volume and Issue: 13(2), P. 239 - 239

Published: Feb. 15, 2024

Carotenoids are ubiquitous and versatile isoprenoid compounds. The intake of foods rich in these pigments is often associated with health benefits, attributable to the provitamin A activity some them different mechanisms. importance carotenoids their derivatives for production health-promotion through diet beyond doubt. In new circular economy paradigm, recovery biorefinery process highly desirable, which greener processes solvents being advocated for, considering many studies conducted at laboratory scale. This review summarizes information on extraction technologies (ultrasound, microwaves, pulsed electric fields, pressurized liquid extraction, sub- supercritical fluid enzyme-assisted extraction) green (ethyl lactate, 2-methyltetrahydrofuran, natural deep eutectic solvents, ionic liquids), potential substitutes more toxic less environmentally friendly solvents. Additionally, it discusses results latest sustainable carotenoids. conclusions drawn from indicate that while promising, scalability real industrial scenarios poses a significant challenge. Furthermore, incorporating life cycle assessment analyses crucial comprehensive evaluation sustainability innovative compared industry-standard methods.

Language: Английский

Citations

19

Sustainable recovery of metals from e-waste using deep eutectic solvents: Advances, challenges, and perspectives DOI

Mengwei Guo,

Rongrong Deng,

Mingyuan Gao

et al.

Current Opinion in Green and Sustainable Chemistry, Journal Year: 2024, Volume and Issue: 47, P. 100913 - 100913

Published: March 15, 2024

Language: Английский

Citations

19

Challenges and opportunities on the utilisation of ionic liquid for biomass pretreatment and valorisation DOI Creative Commons
Antonio Ovejero-Pérez, Pedro Y. S. Nakasu, Cynthia Hopson

et al.

npj Materials Sustainability, Journal Year: 2024, Volume and Issue: 2(1)

Published: May 15, 2024

Abstract Biomass processing employing ionic liquids is already an established option at the laboratory scale. Ionic can disrupt and deconstruct lignocellulosic biomass network, giving rise to multiple options for valorisation. However, there still much work remaining accomplish scale-up commercialisation of liquid-based processing. Important issues such as liquid cost recyclability, among others, need be carefully addressed. In addition, modify structure properties recovered materials, impacting potential applications. Due complex nature liquids, where combinations anions cations are possible, these should considered each process application, making it difficult generalise all cases. This perspective covers main challenges opportunities in employment processing, both stage valorisation fractions. Among them, we discuss importance solvent recovery costs two critical consider well major role lignin condensation plays hindering ionoSolv different approaches valorise cellulose.

Language: Английский

Citations

19

Green Analytical Chemistry—Recent Innovations DOI Creative Commons
Anil Kumar Meher,

Akli Zarouri

Analytica—A Journal of Analytical Chemistry and Chemical Analysis, Journal Year: 2025, Volume and Issue: 6(1), P. 10 - 10

Published: March 11, 2025

Green analytical chemistry represents a transformative approach to science, emphasizing sustainability and environmental stewardship while maintaining high standards of accuracy precision. This review highlights recent innovations in green chemistry, including the use solvents, such as water, supercritical carbon dioxide, ionic liquids, bio-based alternatives, well energy-efficient techniques like microwave-assisted, ultrasound-assisted, photo-induced processes. Advances instrumentation, miniaturized portable devices, integration automation chemometric tools, have further enhanced efficiency reduced footprint workflows. Despite these advancements, challenges remain, need balance performance with eco-friendliness lack global measure promote sustainable practices consistently. However, future looks promising, emerging technologies artificial intelligence digital tools offering new ways optimize workflows, minimize waste, streamline By focusing on areas, is transforming methodologies into that not only achieve but also align goals. underscores how more than just scientific discipline, pathway for reducing ecological impact processes driving innovation science industry. With continued commitment research, collaboration, adoption cutting-edge technologies, has potential shape greener its diverse applications.

Language: Английский

Citations

3

Applications of biomass-derived solvents in biomass pretreatment – Strategies, challenges, and prospects DOI Creative Commons
Xianzhi Meng, Yunxuan Wang, Austin J. Conte

et al.

Bioresource Technology, Journal Year: 2022, Volume and Issue: 368, P. 128280 - 128280

Published: Nov. 8, 2022

Language: Английский

Citations

54

Tuning Functionalized Ionic Liquids for CO2 Capture DOI Open Access
Ruina Zhang, Quanli Ke, Zekai Zhang

et al.

International Journal of Molecular Sciences, Journal Year: 2022, Volume and Issue: 23(19), P. 11401 - 11401

Published: Sept. 27, 2022

The increasing concentration of CO2 in the atmosphere is related to global climate change. Carbon capture, utilization, and storage (CCUS) an important technology reduce emissions deal with development new materials technologies for efficient capture has received attention among researchers. Ionic liquids (ILs), especially functionalized ILs, such unique properties as almost no vapor pressure, thermal- chemical-stability, non-flammability, tunable properties, have been used CCUS great interest. This paper focuses on ILs past decade (2012~2022). Functionalized or task-specific are active sites cations or/and anions. main contents include three parts: cation-functionalized anion-functionalized cation-anion dual-functionalized capture. In addition, classification, structures, synthesis also summarized. Finally, future directions, concerns, prospects discussed. review beneficial researchers obtain overall understanding CO2-philic ILs. work will open a door develop novel IL-based solvents separation other gases, SO2, H2S, NOx, NH3, so on.

Language: Английский

Citations

49