4.5 Review

A Review on CO2-Based Polyureas and Polyurea Hybrids

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Homogeneous Catalysis for Sustainable Energy: Hydrogen and Methanol Economies, Fuels from Biomass, and Related Topics

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Summary: This article reviews recent developments of homogeneous catalysts in emerging applications of sustainable energy, with a focus on hydrogen storage, the methanol economy, and the production of conventional fuels from biomass or lower alkanes. Additionally, the production of ethylene glycol from CO and H-2 is discussed, with particular emphasis on well-defined transition metal complexes, such as pincer complexes, due to their high activity and well-studied mechanisms.

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Hybrid Nonisocyanate Polyurethanes (H-NIPUs): A Pathway towards a Broad Range of Novel Materials

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Summary: This review summarizes the latest advancements in the development of hybrid nonisocyanate polyurethanes (NIPUs) by combining them with other polymers, such as epoxy, polyacrylic, and silicium-containing polymers. The potential of combining NIPUs with biopolymers is also discussed. The study highlights the importance of synergistic combination of NIPUs with other polymers in the formation of novel materials.

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Organic-Inorganic Polyureas with POSS Cages in the Main Chains via Polycondensation of Diamines with Carbon Dioxide

Bingjie Zhao et al.

Summary: Linear organic-inorganic polyureas (PUreas) with polyhedral oligomeric silsesquioxane (POSS) cages in the main chains were synthesized via polycondensation of diamines with carbon dioxide (CO2). The PUreas exhibited microphase separation with aggregated POSS cages forming spherical microdomains. The introduction of POSS transformed PUrea from a liquid to an elastic solid, behaving as a cross-linked elastomer at room temperature. Additionally, the PUreas displayed self-healing properties through the dynamic exchange of multiple hydrogen bonds.

ACS APPLIED POLYMER MATERIALS (2022)

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Biomass-Based Polyureas Derived from Rigid Furfurylamine and Isomannide

Yuan Jiang et al.

Summary: In this study, biomass-based polyureas were prepared using furfurylamine and isomannide-derived dicarbamates. These polyureas exhibited good thermal stability and glass-transition temperatures, making them suitable for various applications.

ACS APPLIED POLYMER MATERIALS (2022)

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Exovinylene Cyclic Carbonates: Multifaceted CO2-Based Building Blocks for Modern Chemistry and Polymer Science

Charlene Ngassam Tounzoua et al.

Summary: This Review summarizes the recent advances in the synthesis of exovinylene cyclic carbonates, which can be produced from renewable and inexhaustible carbon dioxide as an alternative to fossil resources. The article focuses on describing the catalysts needed for their preparation and discussing the unique reactivity of these CO2-based heterocycles for the construction of diverse organic building blocks and (functional) polymers. The challenges and the future perspectives in the field are also discussed.

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2022)

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Novel carbon dioxide based poly(hydroxyurethane-urea)s: Synthesis and properties

Shan Jiang et al.

Summary: Poly(hydroxyurethane-urea)s (PHUUs) with complementary properties to poly(hydroxyurethane)s (PHUs) and polyureas have great potential for practical applications. Novel PHUUs were synthesized through polyaddition reaction using 5-membered dicyclic carbonates and amino terminal polyurea oligomers. The introduction of urea moieties improved surface hydrophobicity and thermal properties, and the structure of selected diamine influenced glass transition temperature and mechanical properties of PHUUs.

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Defect-Assisted Electron Tunneling for Photoelectrochemical CO2 Reduction to Ethanol at Low Overpotentials

Miao Kan et al.

Summary: A Si/ZnO/Cu2O p-n-p heterojunction potential well with electron tunnels is fabricated for selective photoelectrochemical CO2 reduction to ethanol. The confined electron energy in tunneling allows for high selectivity in ethanol production, with a Faradaic efficiency of over 60%.

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Article Chemistry, Multidisciplinary

Highly Branched Polyurea-Based Resins: Clean Synthesis and Wood Bonding Performance

Shuyang Jiang et al.

Summary: The development of green and safe adhesives with high performance is crucial for the sustainability of the wood industry. In this study, highly branched polyureas (HBPUs) were synthesized and used as formaldehyde-free wood adhesives, demonstrating good bonding performance. Additionally, HBPU-formaldehyde (HBPUF) resins were synthesized and showed better bonding performance and lower formaldehyde emission levels compared to conventional urea-formaldehyde (UF) resin.

ACS SUSTAINABLE CHEMISTRY & ENGINEERING (2022)

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Highly stable and selective layered Co-Al-O catalysts for low-temperature CO2 methanation

Zhihao Liu et al.

Summary: A series of layered Co-Al-O catalysts were prepared via a hydrothermal method and reduced at different temperatures. The results showed that the Co-0 content and basic sites on the catalysts increased and then decreased with the reduction temperature, leading to effective hydrogen dissociation and CO2 adsorption. The CoAl-O-600 catalyst exhibited superior performance in CO2 methanation at low temperature and showed excellent resistance to coking and sintering.

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Efficient chemical fixation of CO2 to form switchable ionic liquid to synthesize benzimidazolones under mild conditions

Leizhi Zheng et al.

Summary: The synthesis of benzimidazolone derivatives via the carbonylation of ophenylenediamines with CO2 under mild conditions using DBN as a superbase and the formation of switchable ionic liquids provides a sustainable technique for the production of benzimidazolones.

CHEMICAL ENGINEERING JOURNAL (2022)

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Cyclic oligourea synthesized from CO2: Purification, characterization and properties

Ruhui Shi et al.

Summary: In this study, a cyclic oligourea was synthesized by polycondensation of CO2 with TTD and separated and purified to obtain a high purity product. The cyclic oligourea showed distinct differences in structure and properties compared to its linear analogue, adding a new member to the cyclic polymer family.

GREEN ENERGY & ENVIRONMENT (2022)

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Chemical recycling of poly-(bisphenol A carbonate) by diaminolysis: A new carbon-saving synthetic entry into non-isocyanate polyureas (NIPUreas)

Eugenio Quaranta et al.

Summary: This study presents a novel approach to valorize potentially hazardous PC wastes by regenerating BPA monomers and repurposing waste PC into PUs through a non-isocyanate route. The PUs obtained showed thermally stability and high processing suitability, making them promising materials for various applications.

JOURNAL OF HAZARDOUS MATERIALS (2021)

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Direct synthesis of polyureas from the dehydrogenative coupling of diamines and methanol

Amit Kumar et al.

Summary: This study presents a novel method for the direct synthesis of polyureas from diamines and methanol using a ruthenium pincer catalyst. By replacing toxic diisocyanates with renewable and less toxic methanol, the overall process becomes safer and more sustainable. Additionally, the method has been shown to be versatile by synthesizing renewable, chiral, and C-13-labeled polyureas.

CHEMICAL COMMUNICATIONS (2021)

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Superstrong Adhesive of Isocyanate-Free Polyurea with a Branched Structure

Hongxing Yang et al.

Summary: This study verified the relationship between branching degree and bonding performance by synthesizing branched polyureas with different branching degrees. The results showed that the bonding strength of branched polyurea increased with an increase of terminal functional groups.

ACS APPLIED POLYMER MATERIALS (2021)

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A self-healing and recyclable polyurethane-urea Diels-Alder adduct synthesized from carbon dioxide and furfuryl amine

Peixuan Wu et al.

Summary: The synthesis of a new environmentally friendly, self-healing, and recyclable polymeric material PUUa-DA, using CO2 and bio-based furfuryl amine, demonstrates high thermal stability and mechanical properties. The incorporation of reversible hydrogen bonds and heat-responsive Diels-Alder bonds enables 94% recovery of tensile strength upon heating, making it a potential functional material for various practical applications.

GREEN CHEMISTRY (2021)

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Novel Highly Branched Polymer Wood Adhesive Resin

Taohong Li et al.

ACS SUSTAINABLE CHEMISTRY & ENGINEERING (2020)

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Hybrid polyhydroxyurethanes: How to overcome limitations and reach cutting edge properties?

Yvan Ecochard et al.

EUROPEAN POLYMER JOURNAL (2020)

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New Kind of Thermoplastic Polyurea Elastomers Synthesized from CO2 and with Self-Healing Properties

Peixuan Wu et al.

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New Polymerizations Based on Green Monomer of Carbon Dioxide

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Amorphous and Crystallizable Thermoplastic Polyureas Synthesized through a One-pot Non-isocyanate Route

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CO2 Capture and in situ Catalytic Transformation

Hong-Chen Fu et al.

FRONTIERS IN CHEMISTRY (2019)

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Direct Synthesis of Polyurea Thermoplastics from CO2 and Diamines

Shan Jiang et al.

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Advances in the use of CO2 as a renewable feedstock for the synthesis of polymers

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Superstretchable, Self-Healing Polymeric Elastomers with Tunable Properties

Peng-Fei Cao et al.

ADVANCED FUNCTIONAL MATERIALS (2018)

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Synthesis and characterization of isocyanate-free polyureas

Joseph M. Dennis et al.

GREEN CHEMISTRY (2018)

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Non-isocyanate strategy for anionically stabilized water-borne polyurea dispersions and coatings

Shuang Ma et al.

JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY (2018)

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Transformation of CO2 into polyureas with 3-amino-1,2,4-triazole potassium as a solid base catalyst

Peixue Wang et al.

NEW JOURNAL OF CHEMISTRY (2018)

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Catalytic polymerization of CO2 to polyureas over K3PO4 catalyst

Peixue Wang et al.

JOURNAL OF CO2 UTILIZATION (2018)

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Isocyanate-Free Approach to Water-Borne Polyurea Dispersions and Coatings

Shuang Ma et al.

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Isocyanate- and Solvent-Free Route to Thermoplastic Poly(amide-urea) Derived from Renewable Resources

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Polyureas derived from CO2 and diamines: highly efficient catalysts for C-H arylation of benzene

Zhenghui Liu et al.

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Synthesis of polyureas with CO2 as carbonyl building block and their high performances

Zhong Ying et al.

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Synthesis of polyurea from 1,6-hexanediamine with CO2 through a two-step polymerization

Shan Jiang et al.

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Carbon dioxide as a sustainable resource for macrocyclic oligourea

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Crystallizable and Tough Aliphatic Thermoplastic Polyureas Synthesized through a Nonisocyanate Route

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Synthesis of a novel hydrophobic polyurea gel from CO2 and amino-modified polysiloxane

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[n]-Oligourea-Based Green Sorbents with Enhanced CO2 Sorption Capacity

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Poly(hydroxy urethane)s based on renewable diglycerol dicarbonate

Julien L. J. van Velthoven et al.

EUROPEAN POLYMER JOURNAL (2015)

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Enhancing Mechanical Performance of a Covalent Self-Healing Material by Sacrificial Noncovalent Bonds

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High-Performance Segmented Polyurea by Transesterification of Diphenyl Carbonates with Aliphatic Diamines

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Highly efficient isocyanate-free microwave-assisted synthesis of [6]-oligourea

Abdussalam K. Qaroush et al.

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Polyureas from diamines and carbon dioxide: synthesis, structures and properties

Chaoyong Wu et al.

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Well-defined Biobased Segmented Polyureas Synthesis via a TBD-catalyzed Isocyanate-free Route

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