Themed collection RSC Sustainability Recent Review Articles
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Chemical bio-manufacture from diverse C-rich waste polymeric feedstocks using engineered microorganisms
RSC Sustain., 2025, Accepted Manuscript
https://doi.org/10.1039/D5SU00013K
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Accelerating the Industrial Transition with Safe-and-Sustainable-by-Design (SSbD)
RSC Sustain., 2025, Accepted Manuscript
https://doi.org/10.1039/D4SU00809J
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Advanced catalytic strategies for CO2 to methanol conversion: noble metal-based heterogeneous and electrochemical approaches
Advanced catalytic strategies for CO2 to MeOH conversion focus on approaches utilizing noble metals. These methods leverage noble metal catalysts to facilitate CO2 molecule activation and promote reduction to MeOH under mild conditions.
RSC Sustain., 2025, Advance Article
https://doi.org/10.1039/D4SU00749B
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Inventing a secure future: material stewardship as chemistry's mission for sustainability
Chemistry should adopt material stewardship as a central mission in fulfilling its vital role in sustainability for people and planet.
RSC Sustain., 2025,3, 804-821
https://doi.org/10.1039/D4SU00576G
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Sustainable by (crystal) design: novel materials for agriculture via active ingredient cocrystallization
Novel material design for sustainable development of agriculture is of key importance.
RSC Sustain., 2025,3, 781-803
https://doi.org/10.1039/D4SU00635F
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Cost-motivated pathways towards near-term decarbonization of the cement industry
Retrofitting alternative fuels, clinker replacement, and carbon removal technologies to cement facilities can enable net-zero emissions while minimizing cost increases in the near-term.
RSC Sustain., 2025,3, 255-263
https://doi.org/10.1039/D4SU00590B
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Green gold: prospects of lignin in organic electronics and bioelectronics
This work showcases lignin as a sustainable material for organic and bioelectronics, highlighting its renewability, unique chemical structure, and biocompatibility for flexible devices, biosensors, and cognitive computing applications.
RSC Sustain., 2024,2, 3769-3781
https://doi.org/10.1039/D4SU00452C
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Realities of the consortium approach in science: sustainable enzymatic production of C1 chemicals from carbon dioxide
This perspective reflects on the implementation of a multidisciplinary consortium project combining biological, chemical and computational sciences to discover and develop new enzymes for carbon dioxide fixation.
RSC Sustain., 2024,2, 3264-3275
https://doi.org/10.1039/D4SU00274A
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Safe-and-sustainable-by-design roadmap: identifying research, competencies, and knowledge sharing needs
Safe-and-Sustainable-by-Design (SSbD) roadmap for safe and sustainable chemicals, materials, products and process and a more sustainable future.
RSC Sustain., 2024,2, 2833-2838
https://doi.org/10.1039/D4SU00310A
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A greener prescription: the power of natural organic materials in healthcare
Natural organic materials might offer a sustainable solution at the crossroads of technological progress and environmental degradation.
RSC Sustain., 2024,2, 2190-2198
https://doi.org/10.1039/D4SU00219A
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Stability and degradation of (oxy)nitride photocatalysts for solar water splitting
The investigation of degradation processes provides opportunities for the stability improvement of photocatalysts and photoelectrodes. This perspective provides an overview on recent progress with a focus on (oxy)nitrides.
RSC Sustain., 2024,2, 1738-1752
https://doi.org/10.1039/D4SU00096J
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The pathway to net zero: a chemicals perspective
The global ambition is to reach a net zero waste and emissions society by 2050.
RSC Sustain., 2024,2, 1337-1349
https://doi.org/10.1039/D3SU00368J
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The relevance of sustainable laboratory practices
Traditional lab practices contribute to environmental issues through excessive energy consumption, hazardous- and single-use waste generation, and resource depletion. Sustainable laboratory practices are vital for the education of future scientists.
RSC Sustain., 2024,2, 1300-1336
https://doi.org/10.1039/D4SU00056K
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Mycomining: perspective on fungi as scavengers of scattered metal, mineral, and rare earth element resources
Established principles and practical application of phytomining and mycoremediation bioaccumulation processes hint at a feasible and environmentally sustainable “mycomining” solution with considerable growth environment versatility.
RSC Sustain., 2024,2, 1350-1357
https://doi.org/10.1039/D3SU00398A
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The 12 principles of green membrane materials and processes for realizing the United Nations' sustainable development goals
The 12 principles of green membrane materials and processes are formulated. Their contributions to the 3 pillars of sustainability and the UN-SDGs are explained. Research priorities are set. A membrane waste management hierarchy is introduced.
RSC Sustain., 2024,2, 871-880
https://doi.org/10.1039/D4SU00027G
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The global burden of plastics in oral health: prospects for circularity, sustainable materials development and practice
Plastics in oral healthcare: innovations to move away from landfills to create value and sustainable care.
RSC Sustain., 2024,2, 881-902
https://doi.org/10.1039/D3SU00364G
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Emissions-intensive and trade-exposed industries: technological innovation and climate policy solutions to achieve net-zero emissions by 2050
We developed a Technology Roadmap for emissions intensive and trade exposed (EITE) sectors to help policymakers and firms formulate a climate change mitigation strategy employing innovative technologies for large industrial emitters.
RSC Sustain., 2024,2, 903-927
https://doi.org/10.1039/D3SU00335C
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On the fate of deep eutectic solvents after their use as reaction media: the CO2 production during downstream and ultimate disposal
What can we do with Deep Eutectic Solvents (DES) once they have been used? What can be their disposal and final fate? This perspective adds some considerations to stimulate the debate.
RSC Sustain., 2024,2, 608-615
https://doi.org/10.1039/D4SU00021H
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Exploring metal oxides for the hydrogen evolution reaction (HER) in the field of nanotechnology
As the global energy landscape transitions towards a more diversified mix, with electricity and hydrogen constituting half of the final energy consumption by 2050, the focus on efficient and sustainable hydrogen production intensifies.
RSC Sustain., 2023,1, 2180-2196
https://doi.org/10.1039/D3SU00179B
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Chemistry and pathways to net zero for sustainability
Chemistry has a vital role in enabling the reductions in greenhouse gases, stewardship of material resources and new production processes needed to bring net CO2 emissions to zero by 2050, keeping within 1.5 °C of global warming.
RSC Sustain., 2023,1, 1704-1721
https://doi.org/10.1039/D3SU00125C
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Some of the challenges faced by the Composites Industry in its bid to become more sustainable
The Composites Industry needs to participate in future circular chemical economies. Cooperation, standardisation and increased availability of transparent industry data for life cycle analysis, are seen as critical to a more sustainable future.
RSC Sustain., 2023,1, 1737-1742
https://doi.org/10.1039/D3SU00200D
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White & grey biotechnologies for shaping a sustainable future
The developments in enzymology and biocatalytic processes designed as per the rules of green chemistry and green engineering are the keys to the concepts of biorefinery and bioeconomy which in turn enable sustainable development.
RSC Sustain., 2023,1, 1722-1736
https://doi.org/10.1039/D3SU00174A
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The lignin challenge in catalytic conversion of biomass solids to chemicals and fuels
Presented here is an overview of progress in one approach to reducing greenhouse gas emission, namely substituting photosynthesis generated, woody biomass for fossil carbon as feedstock in the production of chemicals and liquid fuels.
RSC Sustain., 2023,1, 1686-1703
https://doi.org/10.1039/D3SU00117B
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Enhanced nickel catalysts for producing electrolytic hydrogen
This study suggests that lowering the cost of electrolytic hydrogen obtained in water alkaline electrolyzers requires to develop new nanostructured or single-atom Ni-based catalysts and newly shaped electrodes obtained via 3D printing.
RSC Sustain., 2023,1, 1386-1393
https://doi.org/10.1039/D3SU00177F
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A perspective on task-specific ionic liquids for the separation of rare earth elements
Herein, we review recent advances in liquid–liquid extraction systems using task-specific ionic liquids as extractants for the separation of rare earth elements.
RSC Sustain., 2023,1, 1168-1176
https://doi.org/10.1039/D3SU00007A
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Safe-and-sustainable-by-design chemicals and advanced materials: a paradigm shift towards prevention-based risk governance is needed
We need a paradigm shift towards prevention-based risk governance of chemicals and advanced materials via a transition towards SSbD. Defining SSbD metrics and trade-offs should be a co-creative process and can benefit from applying digital tools.
RSC Sustain., 2023,1, 838-846
https://doi.org/10.1039/D3SU00045A
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A perspective on catalytic production of olefinic compounds from biomass
Key reactions and possible biomass resources for the synthesis of industrially important unsaturated compounds are summarized.
RSC Sustain., 2023,1, 814-837
https://doi.org/10.1039/D3SU00033H
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Unlocking the holy grail of sustainable and scalable mesoporous silica using computational modelling
Enabling the design of silica materials with ordered and controllable pore structure using the principles of green and sustainable chemistry.
RSC Sustain., 2023,1, 432-438
https://doi.org/10.1039/D3SU00019B
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Status, implications and challenges of European safe and sustainable by design paradigms applicable to nanomaterials and advanced materials
Current European (EU) policies, such as the Green Deal, envisage safe and sustainable by design (SSbD) practices for the management of chemicals, which cogently entail nanomaterials (NMs) and advanced materials (AdMa).
RSC Sustain., 2023,1, 234-250
https://doi.org/10.1039/D2SU00101B
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Perspectives in growth production trade-off in microbial bioproduction
Strain engineering has advanced in the past decade. Herein, we review the importance of growth coupling, growth decoupling, regulatory control and medium optimization for microbial bioproduction to provide stable conversion over a longer period.
RSC Sustain., 2023,1, 224-233
https://doi.org/10.1039/D2SU00066K
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Surfactant-free synthesis of metal and metal oxide nanomaterials: a perspective
Recent developments pertaining to the surfactant-free synthesis of metal and metal oxide nanomaterials are deliberated, with a focus on important challenges, opportunities, and future perspectives.
RSC Sustain., 2023,1, 72-82
https://doi.org/10.1039/D2SU00088A
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Electrification of fertilizer production via plasma-based nitrogen fixation: a tutorial on fundamentals
Plasma-based nitrogen fixation, leveraging non-thermal plasma technologies, offers a promising alternative to conventional processes, with the potential to decentralize fertilizer production, reduce CO2 emissions, and employ renewable energy sources.
RSC Sustain., 2025,3, 757-780
https://doi.org/10.1039/D4SU00726C
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A review of designable deep eutectic solvents for green fabrication of advanced functional materials
This review offers insights into general design principles for advanced materials in deep eutectic solvents, fostering knowledge exchange across related disciplines and inspiring further advancements in green chemistry and materials science.
RSC Sustain., 2025,3, 738-756
https://doi.org/10.1039/D4SU00560K
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Exploring layered double hydroxide efficiency in removal of fluoride ions from water: material insights, synthesis and modification strategies and adsorption mechanisms
This work explores the composition, synthesis and modification strategies and adsorption mechanisms of layered double hydroxide for the removal of fluoride ions from water.
RSC Sustain., 2025,3, 715-737
https://doi.org/10.1039/D4SU00057A
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Advances in the catalysis of reduction of nitroaromatics and its mechanism: a tutorial review
This paper reviews the research on the conversion of nitroaromatics to aminoaromatics through catalysis.
RSC Sustain., 2025,3, 243-254
https://doi.org/10.1039/D4SU00531G
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Recent progresses in the synthesis and strategic designs of sustainable carbon-based fibrous electrodes for flexible batteries
A detailed review on carbon fiber (CF)-based flexible electrodes for application in rechargeable batteries is reported. Various preparation methods for flexible electrodes based on CFs are reviewed, along with their performance evaluations.
RSC Sustain., 2025,3, 219-242
https://doi.org/10.1039/D4SU00394B
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Statistical optimization of cell–hydrogel interactions for green microbiology – a tutorial review
In this tutorial mini-review, we explore the application of Design of Experiments (DOE) as a powerful statistical tool in biotechnology.
RSC Sustain., 2024,2, 3750-3768
https://doi.org/10.1039/D4SU00400K
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Lignocellulosic biomass valorisation: a review of feedstocks, processes and potential value chains and their implications for the decision-making process
The complexity of lignocellulosic biomass valorisation was identified, and a novel assessment method is proposed to facilitate the decision-making process.
RSC Sustain., 2024,2, 3730-3749
https://doi.org/10.1039/D4SU00342J
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Sustainable brain-inspired electronics: digging into natural biomaterials for healthcare applications
Integrating natural biomaterials into memristors and electrolyte-gated transistors shows great promise for advancing biomedical devices and paving the way for sustainable and intelligent healthcare systems.
RSC Sustain., 2024,2, 3235-3263
https://doi.org/10.1039/D4SU00459K
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Acyloxy, sulfate, and phosphate radicals as hydrogen atom transfer (HAT) agents for direct C(sp3)–H functionalization
This tutorial review focuses on the recent advancements in HAT-based direct C(sp3)–H bond functionalization with three unique classes of oxygen radicals: acyloxy, sulfate, and phosphate radicals.
RSC Sustain., 2024,2, 3222-3234
https://doi.org/10.1039/D4SU00520A
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Sustainability of hydrogen manufacturing: a review
Hydrogen is a highly versatile energy vector whose oxidation releases ‘green energy’. Its large scale production however has associated emissions.
RSC Sustain., 2024,2, 3202-3221
https://doi.org/10.1039/D4SU00420E
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Addressing the persistence of per- and poly-fluoroalkyl substances (PFAS): current challenges and potential solutions
The combined stability, mobility, and bioaccumulation of per- and poly-fluoroalkyl substances (PFAS) has prompted a global environmental crisis.
RSC Sustain., 2024,2, 3183-3201
https://doi.org/10.1039/D4SU00152D
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On the metal- and bio-catalyzed solvolysis of polyesters and polyurethanes wastes
Catalysis is a crucial tool to efficiently address the recycling and upgrading of polymeric waste within the context of a circular economy, providing affordable and selective methods for waste valorization.
RSC Sustain., 2024,2, 2781-2804
https://doi.org/10.1039/D4SU00233D
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Greener nanobiopolymers and nanoencapsulation: environmental implications and future prospects
To minimize the consumption of nonrenewable resources and ensure environmental sustainability, there ought to be greater utilization of abundant and renewable greener nanobiopolymers, particularly those derived from various plants and microbes.
RSC Sustain., 2024,2, 2805-2832
https://doi.org/10.1039/D4SU00411F
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Recent developments and sustainability in monitoring chlorine residuals for water quality control: a critical review
Clean and safe water is a vital resource for human life. To ensure that consumable water is bacteria-free, water treatment, including the widely used chlorination process, is performed.
RSC Sustain., 2024,2, 2468-2485
https://doi.org/10.1039/D4SU00188E
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Visible light-induced bromine radical enhanced hydrogen atom transfer (HAT) reactions in organic synthesis
This review describes the recent advancements in visible light-induced bromine radical enhanced hydrogen atom transfer (HAT) reactions in organic synthesis.
RSC Sustain., 2024,2, 2169-2189
https://doi.org/10.1039/D4SU00214H
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Unlocking sustainable power: advances in aqueous processing and water-soluble binders for NMC cathodes in high-voltage Li-ion batteries
This review addresses the aqueous processing of high-nickel NMC materials and its challenges, including pH elevation and lithium leaching. Tailored binder selection is crucial, offering a strategic pathway for sustainable battery manufacturing.
RSC Sustain., 2024,2, 2125-2149
https://doi.org/10.1039/D4SU00098F
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Analyzing the interconnected dynamics of domestic biofuel burning in India: unravelling VOC emissions, surface-ozone formation, diagnostic ratios, and source identification
The impacts of burning biomass fuels for cooking and heating in indian homes on public health and communities.
RSC Sustain., 2024,2, 2150-2168
https://doi.org/10.1039/D4SU00030G
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Surface treatments on concrete: an overview on organic, inorganic and nano-based coatings and an outlook about surface modification by rare-earth oxides
Typical coatings incorporate organic groups as carrier of hydrophobicity and polar groups at the solid interface, which are weak points in the interaction with water. In contrast, REOs are shielded from interactions with the environment.
RSC Sustain., 2024,2, 2092-2124
https://doi.org/10.1039/D3SU00482A
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Chemical degradation of oxygenated polymers: the case of polyethers and polysiloxanes
A review of the most representative advances in the chemical degradation of polythers and polysiloxanes, both in academia and industry.
RSC Sustain., 2024,2, 1904-1929
https://doi.org/10.1039/D4SU00093E
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Synthesis and application of sustainable vegetable oil-based polymers in 3D printing
Chemical modifications of vegetable oil and their 3D printing applications are discussed. Acrylate resin compatibility with 3D printing methods are presented. 3D printed products using vegetable oil-derived materials, providing insights into future opportunities are explored.
RSC Sustain., 2024,2, 1708-1737
https://doi.org/10.1039/D4SU00060A
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Supercritical CO2 technology for the treatment of end-of-life lithium-ion batteries
Supercritical fluid technology is a promising approach for sustainable and efficient resource recovery (especially fluorinated binders and electrolytes) from end-of-life lithium ion batteries with significant economic and environmental perspectives.
RSC Sustain., 2024,2, 1692-1707
https://doi.org/10.1039/D4SU00044G
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The Sea's best kept secret: the use of seaweed as a source of biohydrogen for clean and renewable energy
Seaweeds, or macroalgae, have been used for centuries as food additives, fertilizers, and in traditional medicines. Recent uses include energy (fuels) and as a source of bioactive compounds (vitamins and fucoidan).
RSC Sustain., 2024,2, 1289-1299
https://doi.org/10.1039/D3SU00381G
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The power of pores: review on porous thermoelectric materials
The review explores porous thermoelectric materials, emphasizing controlled porosity's impact on phonon scattering and thermal conductivity reduction. Multiple studies were discussed, highlighting prospects and limitations, alongside the latest trends.
RSC Sustain., 2024,2, 852-870
https://doi.org/10.1039/D3SU00451A
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Nanomaterial-based electrochemical chemo(bio)sensors for the detection of nanoplastic residues: trends and future prospects
Nanoplastic residues in our aquatic ecosystems poses a serious global concern which needs effective monitoring to implement actions and control measures. Electrochemical chemo(bio)sensors emerge as a promising tool for their detection to protect our global water and environmental resources.
RSC Sustain., 2024,2, 832-851
https://doi.org/10.1039/D3SU00471F
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A tutorial review for research laboratories to support the vital path toward inherently sustainable and green synthetic chemistry
Journeying towards inherently sustainable and green synthetic chemistry. Commitment to change and (re)design of practices, processes and goals, through reflection, awareness and education.
RSC Sustain., 2024,2, 578-607
https://doi.org/10.1039/D3SU00324H
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Sustainability-driven photocatalysis: oxygen-doped g-C3N4 for organic contaminant degradation
The unique characteristics of oxygen-doped g-C3N4 (O@g-C3N4), including enhanced charge carrier mobility and changed electronic structure, make it especially appealing for photocatalytic applications.
RSC Sustain., 2024,2, 91-100
https://doi.org/10.1039/D3SU00384A
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Alkali and alkaline earth metals in liquid salts for supercapatteries
Supercapatteries with liquid salt based electrolytes, battery negatrodes of alkali or alkaline earth metals and supercapacitor positrodes of high anodic stability are promising for outperforming both rechargeable batteries and supercapacitors.
RSC Sustain., 2024,2, 101-124
https://doi.org/10.1039/D3SU00197K
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A guide to lignin valorization in biorefineries: traditional, recent, and forthcoming approaches to convert raw lignocellulose into valuable materials and chemicals
This tutorial review aims at providing a complete overview of the strategies for the conversion of lignocellulose in current and future biorefineries, with a particular focus on the transformation of lignin toward valuable products.
RSC Sustain., 2024,2, 37-90
https://doi.org/10.1039/D3SU00140G
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Bio-based polycarbonates: progress and prospects
The review covers the advancements in bio-based polycarbonates with regards to their raw materials, polymerization techniques, and modification strategies.
RSC Sustain., 2023,1, 2162-2179
https://doi.org/10.1039/D3SU00248A
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A comprehensive review on removal of environmental pollutants using a surfactant based remediation process
Surfactants are considered amphiphilic substances, having excellent adsorption and association capabilities, offering them the potential for a variety of techniques designed to eliminate pollution and preserve the natural world.
RSC Sustain., 2023,1, 2148-2161
https://doi.org/10.1039/D2SU00069E
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Recent advances in Cu-BTC MOF-based engineered materials for the photocatalytic treatment of pharmaceutical wastewater towards environmental remediation
Cu-MOF has gained attention due to its exceptional thermal stability, large surface area and pore volume. This review summarizes its advantages covering synthesis, reactivity and applications in removing toxic pharmaceutical residues from wastewater.
RSC Sustain., 2023,1, 1952-1961
https://doi.org/10.1039/D3SU00276D
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High-pressure hydrogen generation from dehydrogenation of formic acid
High pressure hydrogen generation by dehydrogenation of formic acid.
RSC Sustain., 2023,1, 1655-1671
https://doi.org/10.1039/D3SU00149K
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3D printing for flow biocatalysis
3D printing has been elaborated in all stages of a continuous flow biocatalytic process, from the reactor to the support material for biocatalyst confinement or the peripheral accessories that can establish a highly controlled process.
RSC Sustain., 2023,1, 1672-1685
https://doi.org/10.1039/D3SU00155E
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Utilizing cellulose-based conducting hydrogels in iontronics
This review highlights how the inherent properties of cellulose have been employed to improve the properties of ionic conductive hydrogels (IHCs) and their application in fabricating iontronics.
RSC Sustain., 2023,1, 1369-1385
https://doi.org/10.1039/D3SU00139C
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A tutorial mini-review on nanoporous carbons from biosourced compounds: ordered hierarchical nanoarchitectures through benign methodologies
This tutorial mini-review gives critical insight into sustainable strategies to prepare ordered mesoporous hierarchically structured nanoporous carbons from biosourced compounds. Modified soft-templating methods are proposed as promising candidates.
RSC Sustain., 2023,1, 1354-1368
https://doi.org/10.1039/D3SU00123G
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Recent advances in radical polymerization of bio-based monomers in aqueous dispersed media
Vegetable oils and lipids, terpenes, lignin derivatives, carbohydrates, and proteins are used as biomass feedstock to prepare new bio-based monomers for radical polymerization in aqueous dispersed media, producing bio-based latexes.
RSC Sustain., 2023,1, 788-813
https://doi.org/10.1039/D3SU00097D
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Replacing all petroleum-based chemical products with natural biomass-based chemical products: a tutorial review
Production quantity ratio of petroleum derived chemical products. This also presents the concept of replacing all petroleum-based chemical products with natural biomass-based chemical products.
RSC Sustain., 2023,1, 179-212
https://doi.org/10.1039/D2SU00014H
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Ginger waste as a potential feedstock for a zero-waste ginger biorefinery: a review
Ginger waste is an increasingly available renewable feedstock, which is rich in biobased chemicals and materials as well as a source of bioenergy. Ginger waste is explored as a feedstock leading to a potential zero-waste biorefinery.
RSC Sustain., 2023,1, 213-223
https://doi.org/10.1039/D2SU00099G
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Sustainability applications of rare earths from metallurgy, magnetism, catalysis, luminescence to future electrochemical pseudocapacitance energy storage
Rare Earths (REs) are referred to as ‘industrial vitamins’ and play an indispensable role in a variety of domains.
RSC Sustain., 2023,1, 38-71
https://doi.org/10.1039/D2SU00054G
About this collection
In addition to high quality research papers, RSC Sustainability features topical review articles. Reviews will be added to this webpage as soon as possible after publication.