Enzymatic Synthesis of Oligo(ethylene glycol)-Bearing Cellulose Oligomers for in Situ Formation of Hydrogels with Crystalline Nanoribbon Network Structures.
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Summary
These findings open a new avenue for the enzymatic reaction-based facile production of novel cellulosic soft materials with regular nanostructures.
- Type
- article
- Published
- 2016-06-24
- Cited by
- 41
- References
- 54
- OpenAlex
- https://openalex.org/W27340728
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22846157
Keywords
Stadium, Landscape architect, Field (mathematics), Geography, Archaeology
References
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- Molecular Conformation in Oligo(ethylene glycol)-Terminated Self-Assembled Monolayers on Gold and Silver Surfaces Determines Their Ability To Resist Protein Adsorption
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- Synthesis of a Cellobiosylated Dimer and Trimer and of Cellobiose‐Coated Polyamidoamine (PAMAM) Dendrimers to Study Accessibility of an Enzyme, Cellodextrin Phosphorylase
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- Synthesis of cellulose in vitro by using a cellulase/surfactant complex in a nonaqueous medium.
Cited by
- Multidimensional Self-Assembled Structures of Alkylated Cellulose Oligomers Synthesized via in Vitro Enzymatic Reactions.
- Enzymatic Synthesis of Cellulose Oligomer Hydrogels Composed of Crystalline Nanoribbon Networks under Macromolecular Crowding Conditions.
- Effect of solution viscosity on the production of nanoribbon network hydrogels composed of enzymatically synthesized cellulose oligomers under macromolecular crowding conditions
- Enzymatic synthesis and protein adsorption properties of crystalline nanoribbons composed of cellulose oligomer derivatives with primary amino groups
- A Bottom-Up Synthesis of Vinyl-Cellulose Nanosheets and Their Nanocomposite Hydrogels with Enhanced Strength.
- Self-Assembly of Cellulose Oligomers into Nanoribbon Network Structures Based on Kinetic Control of Enzymatic Oligomerization.
- Environmentally friendly pathways towards the synthesis of vinyl-based oligocelluloses.
- Nanoribbon network formation of enzymatically synthesized cellulose oligomers through dispersion stabilization of precursor particles
- Unravelling the Specificity of Laminaribiose Phosphorylase from Paenibacillus sp. YM‐1 towards Donor Substrates Glucose/Mannose 1‐Phosphate by Using X‐ray Crystallography and Saturation Transfer Difference NMR Spectroscopy
- Templated Synthesis of Gold Nanoparticles on Surface-Aminated 2D Cellulose Assemblies
- Mechanically robust crystalline monolayer assemblies of oligosaccharide-based amphiphiles on water surfaces.
- Bottom-up Chemoenzymatic Synthesis Towards Novel Fluorinated Cellulose-like Materials
- The current status of the enzyme-mediated isolation and functionalization of nanocelluloses: production, properties, techno-economics, and opportunities
- Phosphorylase-catalyzed bottom-up synthesis of short-chain soluble cello-oligosaccharides and property-tunable cellulosic materials.
- Chemoenzymatic Synthesis of Fluorinated Cellodextrins Identifies a New Allomorph for Cellulose‐Like Materials
- Self-assembly of cellulose for creating green materials with tailor-made nanostructures.
- Enzyme-catalyzed propagation of cello-oligosaccharide chains from bifunctional oligomeric primers for the preparation of block co-oligomers and their crystalline assemblies
- Enhanced Self-Assembly and Mechanical Properties of Cellulose-Based Triblock Copolymers: Comparisons with Amylose-Based Triblock Copolymers
- Postsynthesis Self- And Coassembly of Enzymatically Produced Fluorinated Cellodextrins and Cellulose Nanocrystals.
- Phosphorylase-catalyzed synthesis and self-assembled structures of cellulose oligomers in the presence of protein denaturants
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