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Supramolecular polymers constructed by crown ether-based molecular recognition

https://doi.org/10.1039/c1cs15220c
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78/78 checkable references clean · checked 2026-09-04

Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

The 78 checked references that resolve
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Supramolecular Polymers
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Supramolecular Polymerization
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Supramolecular Polymerizations and Main-Chain Supramolecular Polymers
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Surrogate‐stoppered [2]rotaxanes: a new route to larger interlocked architectures
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Complexation of Paraquat and Diquat by a bismetaphenylene-32-crown-10 derivative
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Complexation of Paraquat by a bisparaphenylene-34-crown-10 derivative
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Pseudorotaxanes Formed Between Secondary Dialkylammonium Salts and Crown Ethers
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Secondary dibenzylammonium ion binding by [24]crown-8 and [25]crown-8 macrocycles
resolves10.1021/cr970081q
Interlocked Macromolecules
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Ion Pairing in Fast-Exchange Host−Guest Systems:  Concentration Dependence of Apparent Association Constants for Complexes of Neutral Hosts and Divalent Guest Salts with Monovalent Counterions
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A New Cryptand:  Synthesis and Complexation with Paraquat
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A Bis(<i>m</i>‐phenylene)‐32‐crown‐10/Paraquat [2]Rotaxane
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Supramolecular Daisy Chains
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Self‐assembly of daisy chain oligomers from heteroditopic molecules containing secondary ammonium ion and crown ether moieties
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Self-Assembling Supramolecular Daisy Chains
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Self-Organization of a Heteroditopic Molecule to Linear Polymolecular Arrays in Solution
resolves10.1021/ma062080i
Formation of a Linear Supramolecular Polymer by Self-Assembly of Two Homoditopic Monomers Based on the Bis(<i>m</i>-phenylene)-32-crown-10/Paraquat Recognition Motif
resolves10.1002/(SICI)1521-3773(19990115)38:1/2<143::AID-ANIE143>3.0.CO;2-Y
Formation of Supramolecular Polymers from Homoditopic Molecules Containing Secondary Ammonium Ions and Crown Ether Moieties
resolves10.1039/a901044k
Stabilities of cooperatively formed cyclic pseudorotaxane dimers
resolves10.1021/ja020900a
Supramolecular Pseudorotaxane Polymers from Complementary Pairs of Homoditopic Molecules
resolves10.1021/ja8035465
Self-Sorting Organization of Two Heteroditopic Monomers to Supramolecular Alternating Copolymers
resolves10.1039/b905837k
Formation of linear main-chain polypseudorotaxanes with supramolecular polymer backbones via two self-sorting host–guest recognition motifs
resolves10.1021/ja034968h
First Pseudorotaxane-Like [3]Complexes Based on Cryptands and Paraquat:  Self-Assembly and Crystal Structures
resolves10.1021/ja0355877
A Cryptand/Bisparaquat [3]Pseudorotaxane by Cooperative Complexation
resolves10.1021/jo050187i
Bis(<i>m</i>-phenylene)-32-crown-10-Based Cryptands, Powerful Hosts for Paraquat Derivatives
resolves10.1021/ja110384v
Supramolecular AA−BB-Type Linear Polymers with Relatively High Molecular Weights via the Self-Assembly of Bis(<i>m</i>-phenylene)-32-Crown-10 Cryptands and a Bisparaquat Derivative
resolves10.1039/b417966h
A supramolecular poly[3]pseudorotaxane by self-assembly of a homoditopic cylindrical bis(crown ether) host and a bisparaquat derivative
resolves10.1039/c1cc12003d
New linear supramolecular polymers that are driven by the combination of quadruple hydrogen bonding and crown ether–paraquat recognition
resolves10.1021/ol9913587
Toward Daisy Chain Polymers:  “Wittig Exchange” of Stoppers in [2]Rotaxane Monomers
resolves10.1039/b206675k
An hermaphroditic [c2]daisy chain
resolves10.1039/B716331B
Capturing a [c2]daisy chain using the threading-followed-by-swelling approach
resolves10.1021/ol801390h
A New pH-Switchable Dimannosyl[c2]Daisy Chain Molecular Machine
resolves10.1021/ja900859d
Acid−Base Actuation of [<i>c</i>2]Daisy Chains
resolves10.1039/b924273b
On the thermodynamic and kinetic investigations of a [c2]daisy chain polymer
resolves10.1002/anie.200803036
An Acid–Base‐Controllable [c2]Daisy Chain
resolves10.1021/ja0725100
Bifunctional [c2]Daisy-Chains and Their Incorporation into Mechanically Interlocked Polymers
resolves10.1021/ja905924u
Switching and Extension of a [c2]Daisy-Chain Dimer Polymer
resolves10.1002/pola.22204
Synthesis of poly[2]rotaxane by Sonogashira polycondensation
resolves10.1246/cl.2001.774
Polyslipping: A New Approach to Polyrotaxane-like Assemblies
resolves10.1002/pola.10571
First poly[3]rotaxane synthesized through the noncovalent step‐growth polymerization of a homoditopic dumbbell compound and a macrocycle with a reversible thiol–disulfide interchange reaction
resolves10.1002/anie.200906389
Metal Coordination Mediated Reversible Conversion between Linear and Cross‐Linked Supramolecular Polymers
resolves10.1002/anie.201006999
A Dual‐Responsive Supramolecular Polymer Gel Formed by Crown Ether Based Molecular Recognition
resolves10.1039/c1cc11790d
Supramolecular polymer nanofibers via electrospinning of a heteroditopic monomer
resolves10.1021/ja044830e
Formation of a Supramolecular Hyperbranched Polymer from Self-Organization of an AB<sub>2</sub> Monomer Containing a Crown Ether and Two Paraquat Moieties
resolves10.1002/pola.24192
A hyperbranched, rotaxane‐type mechanically interlocked polymer
resolves10.1055/s-1978-24702
"Cascade"- and "Nonskid-Chain-like" Syntheses of Molecular Cavity Topologies
resolves10.1021/cr970069y
About Dendrimers:  Structure, Physical Properties, and Applications
resolves10.1021/cr900174j
Dendrimers as Carriers for Delivery of Chemotherapeutic Agents
resolves10.1021/ja010524e
Fast and Convenient Divergent Synthesis of Aliphatic Ester Dendrimers by Anhydride Coupling
resolves10.1021/ja00177a027
Preparation of polymers with controlled molecular architecture. A new convergent approach to dendritic macromolecules
resolves10.1021/ja00113a005
Double Exponential Dendrimer Growth
resolves10.1007/b11008
Rotaxane Dendrimers
resolves10.1039/b9py00380k
Self-assembly and thermodynamic synthesis of rotaxane dendrimers and related structures
resolves10.1021/jo0265784
Crowned Dendrimers:  pH-Responsive Pseudorotaxane Formation
resolves10.1021/ja012155s
Cooperative Self-Assembly of Dendrimers via Pseudorotaxane Formation from a Homotritopic Guest Molecule and Complementary Monotopic Host Dendrons
resolves10.1021/ol016928t
Dendrimer with Rotaxane-Like Mechanical Branching
resolves10.1021/ol026479c
Self-Assembly of Dendrimers by Slippage
resolves10.1021/ol061262u
Template-Directed Synthesis of Mechanically Interlocked Molecular Bundles Using Dynamic Covalent Chemistry
resolves10.1021/ja0501363
Template-Directed Dynamic Synthesis of Mechanically Interlocked Dendrimers
resolves10.1021/ma061707u
Dynamic Mechanically Interlocked Dendrimers:  Amplification in Dendritic Dynamic Combinatorial Libraries
resolves10.1021/ma047811y
Syntheses and Model Complexation Studies of Well-Defined Crown Terminated Polymers
resolves10.1002/pola.23435
Supramacromolecular self‐assembly: Chain extension, star and block polymers via pseudorotaxane formation from well‐defined end‐functionalized polymers
resolves10.1021/ja0438516
A Supramolecular Triarm Star Polymer from a Homotritopic Tris(Crown Ether) Host and a Complementary Monotopic Paraquat-Terminated Polystyrene Guest by a Supramolecular Coupling Method
resolves10.1021/ma901248m
Synthesis of Complementary Host- and Guest-Functionalized Polymeric Building Blocks and Their Self-Assembling Behavior
resolves10.1002/pola.23688
Supramacromolecular chemistry: Self‐assembly of polystyrene‐based multi‐armed pseudorotaxane star polymers from multi‐topic C <sub>60</sub> derivatives
resolves10.1021/ma201241t
Supramolecular Pseudorotaxane Graft Copolymer from a Crown Ether Polyester and a Complementary Paraquat-Terminated Polystyrene Guest
resolves10.1002/anie.200805712
Responsive Supramolecular Gels Constructed by Crown Ether Based Molecular Recognition
resolves10.1126/science.278.5343.1601
Reversible Polymers Formed from Self-Complementary Monomers Using Quadruple Hydrogen Bonding
resolves10.1021/ja981884d
Self-Association without Regard to Prototropy. A Heterocycle That Forms Extremely Stable Quadruply Hydrogen-Bonded Dimers
resolves10.1021/cr9003067
Metal- and Anion-Binding Supramolecular Gels
resolves10.1039/b909347h
Conducting supramolecular nanofibers and nanorods
resolves10.1002/anie.201002415
Water‐Soluble Supramolecular Polymerization Driven by Multiple Host‐Stabilized Charge‐Transfer Interactions
resolves10.1039/b705458k
Cyclodextrin-based supramolecular polymers
resolves10.1039/b925157j
Electrochemical stimulus-responsive supramolecular polymer based on sulfonatocalixarene and viologen dimers
resolves10.1002/anie.201006693
Formation of Linear Supramolecular Polymers That Is Driven by CH⋅⋅⋅π Interactions in Solution and in the Solid State
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