Cucurbit n uril-Based Microcapsules Self-Assembled within
Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials. Ji Liu † Yang Lan † Ziyi Yu ‡ Cindy S.Y. Tan † § Richard M. Parker ‡ Chris Abell ‡ Oren A. Scherman †
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Feb 12 2021 · Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials. Liu J Lan Y Yu Z Tan CS Parker RM Abell C Scherman OA. Acc Chem Res 50(2) 11 Jan 2017
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Mar 24 2021 · Cucurbit n uril-based microcapsules self-assembled within microfluidic droplets a versatile approach for supramolecular architectures and materials Acc Chem Res 50 ( 2 ) ( 2017 ) pp. 208217 CrossRef View Record in Scopus Google Scholar
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Monika Cziferszky Frank Biedermann Markus Kalberer and Oren A. Scherman Probing the stability of multicomponent self-assembled architectures based on cucurbit 8 uril in the gas phase Organic Biomolecular Chemistry 10.1039/c2ob06954g 10 12 (2447) (2012).
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Colloidal microcapsules (MCs) are highly modular inherently multiscale constructs of capsules stabilized by nano‐/microparticle shells with applications in many areas of materials and biological sciences such as drug delivery encapsulation and microreactors.
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Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials. Liu J Lan Y Yu Z Tan CS Parker RM Abell C Scherman OA. Acc Chem Res 50(2) 11 Jan 2017
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Oct 01 2019 · Cucurbit n uril-based microcapsules self-assembled within microfluidic droplets a versatile approach for supramolecular architectures and materials Acc. Chem. Res. 50 ( 2017 ) pp. 208217 CrossRef View Record in Scopus Google Scholar
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Ji Liu Yang Lan Ziyi Yu Cindy S.Y. Tan Richard M. Parker Chris Abell and Oren A. Scherman Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials Accounts
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Cucurbit n uril-based microcapsulesself-assembled within microfluidic droplets a versatile approach for supramolecular architectures and materials Acc. Chem. Res. 2017 50(2) . 22 Ji Liu Cindy Soo Yun Tan Ziyi Yu Yang Lan Chris Abell Oren A. Scherman.
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Oct 01 2019 · Cucurbit n uril-based microcapsules self-assembled within microfluidic droplets a versatile approach for supramolecular architectures and materials Acc. Chem. Res. 50 ( 2017 ) pp. 208217 CrossRef View Record in Scopus Google Scholar
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Dec 16 2014 · Two polymeric layers can be assembled and disassembled at the droplet interface using the efficiency of cucurbit 8 uril (CB 8 ) host–guest supramolecular chemistry. The microcapsules
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Cucurbit n uril-based microcapsulesself-assembled within microfluidic droplets a versatile approach for supramolecular architectures and materials Acc. Chem. Res. 2017 50(2) . 22 Ji Liu Cindy Soo Yun Tan Ziyi Yu Yang Lan Chris Abell Oren A. Scherman.
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For example Scherman and co-workers investigated supramolecular polymer microcapsules assembled at the liquid–liquid interface of microfluidic droplets by host–guest chemistry specifically cucurbit n uril (CB n )-mediated host–guest interactions . 45 In a recent work 46 they exploited the tendency of colloidal particles to accumulate
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Xiaohe Ren Ziyi Yu Yuchao Wu Ji Liu Chris Abell and Oren A. Scherman. Fabrication of cucurbit n uril-based catalytic microreactors through the immobilisation of metallic nanoparticles onto microchannels. From the themed collection In memory of Chris
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Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials. Article Feb 2017
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Feb 10 2012 · Although many techniques exist for preparing microcapsules it is still challenging to fabricate them in an efficient and scalable process without compromising functionality and encapsulation efficiency. We demonstrated a simple one-step approach that exploits a versatile host-guest system and uses microfluidic droplets to generate porous microcapsules with easily customizable functionality.
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Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials
Get PricePolymeric self-assembled cucurbit n urils Synthesis
In recent years cucurbit n urils (CB n or Q n s) have attracted considerable attention on account of their unique structural and host–guest binding properties.In this review we provide an overview of their self-assembly into polymeric species via Q n -mediated tertiary host–guest interactions and where appropriate focus on potential applications.
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Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials Article Jan 2017
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Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials Ji Liu † Yang Lan † Ziyi Yu ‡ Cindy S.Y. Tan † § Richard M. Parker ‡ Chris Abell ‡ and Oren A. Scherman †
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Sep 01 2020 · Cucurbit n uril-Based microcapsules self-assembled within microfluidic droplets a versatile approach for supramolecular architectures and materials Acc Chem Res 50 ( 2 ) ( 2017 ) pp. 208217 CrossRef View Record in Scopus Google Scholar
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Cucurbit n uril-based microcapsules self-assembled within microfluidic droplets a versatile approach for supramolecular architectures and materials. Acc. Chem.
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1 Introduction. The field of microencapsulation is rapidly expanding with applications as diverse as cell encapsulation 1 drug delivery 2 catalysis 3 4 food additives 5 and incorporation within electronic displays. 6 7 Numerous approaches to microencapsulation have been reported ranging from self‐assembled polymersomes 8 9 and vesicles 10 to colloidosomes 11 and polymer
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Jan 03 2018 · Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials. Liu J Lan Y Yu Z Tan CS Parker RM Abell C Scherman OA. Acc Chem Res 50(2) 11 Jan 2017
Get PriceYang LAN PostDoc Position PhD University of
Cucurbit n uril-Based Microcapsules Self-Assembled within Microfluidic Droplets A Versatile Approach for Supramolecular Architectures and Materials. Article Feb 2017
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Aug 07 2018 · (2017) Cucurbit n uril-based microcapsules self-assembled within microfluidic droplets A versatile approach for supramolecular architectures and materials. Acc Chem Res 50
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Apr 24 2020 · Cucurbit n urils (Q n s) are expected to become basic building units because they possess neutral electrostatic potential cavities negative electrostatic potential portal carbonyls and positive electrostatic potential outer surfaces which may result in the formation of Q n ‐based supramolecular frameworks (QSFs) assembled through the
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For example Scherman and co-workers investigated supramolecular polymer microcapsules assembled at the liquid–liquid interface of microfluidic droplets by host–guest chemistry specifically cucurbit n uril (CB n )-mediated host–guest interactions . 45 In a recent work 46 they exploited the tendency of colloidal particles to accumulate
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Mar 15 2019 · Cucurbit n uril-Based microcapsules self-assembled within microfluidic droplets a versatile approach for supramolecular architectures and materials Acc. Chem. Res. 50 ( 2017 ) pp. 208217 CrossRef View Record in Scopus Google Scholar
Get PriceElectrostatically Directed Self‐Assembly of Ultrathin
1 Introduction. The field of microencapsulation is rapidly expanding with applications as diverse as cell encapsulation 1 drug delivery 2 catalysis 3 4 food additives 5 and incorporation within electronic displays. 6 7 Numerous approaches to microencapsulation have been reported ranging from self‐assembled polymersomes 8 9 and vesicles 10 to colloidosomes 11 and polymer
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