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Refined by: resource type: Datasets remove
Result Number Material Type Add to My Shelf Action Record Details and Options
1
Step-Growth Polyesters with Biobased (R)-1,3-Butanediol
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Step-Growth Polyesters with Biobased (R)-1,3-Butanediol

CC0 1.0 Universal http://creativecommons.org/publicdomain/zero/1.0

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2
Supporting Data for Tandem ROMP/Hydrogenation Approach to Hydroxy-Telechelic Linear Polyethylene
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Supporting Data for Tandem ROMP/Hydrogenation Approach to Hydroxy-Telechelic Linear Polyethylene

CC0 1.0 Universal http://creativecommons.org/publicdomain/zero/1.0

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3
High performance cation exchange membranes synthesized via in-situ emulsion polymerization without organic solvents and corrosive acids
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High performance cation exchange membranes synthesized via in-situ emulsion polymerization without organic solvents and corrosive acids

http://creativecommons.org/licenses/by/4.0/legalcode ;DOI: 10.1039/C9TA06248C

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4
Supporting data for Core−Shell Gyroid in ABC Bottlebrush Block Terpolymers
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Supporting data for Core−Shell Gyroid in ABC Bottlebrush Block Terpolymers

CC0 1.0 Universal http://creativecommons.org/publicdomain/zero/1.0

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5
Supporting data for Star-to-bottlebrush transition in extensional and shear deformation of unentangled polymer melts
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Supporting data for Star-to-bottlebrush transition in extensional and shear deformation of unentangled polymer melts

CC0 1.0 Universal http://creativecommons.org/publicdomain/zero/1.0

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6
Supplementary information files for Elucidating the role of multivalency, shape, size and functional group density on antibacterial activity of diversified supramolecular nanostructures enabled by templated assembly
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Supplementary information files for Elucidating the role of multivalency, shape, size and functional group density on antibacterial activity of diversified supramolecular nanostructures enabled by templated assembly

CC BY 3.0 ;DOI: 10.17028/rd.lboro.22692169.v1

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7
In-Situ Emulsion Polymerization of Lithium Styrene Sulfonate in Porous Support for Rapid Synthesis of Cation Exchange Membranes
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In-Situ Emulsion Polymerization of Lithium Styrene Sulfonate in Porous Support for Rapid Synthesis of Cation Exchange Membranes

http://creativecommons.org/licenses/by/4.0/legalcode

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8
Supplementary Information files for Insights into the structures adopted by titanocalix[6 and 8]arenes and their use in the ring opening polymerization of cyclic esters
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Supplementary Information files for Insights into the structures adopted by titanocalix[6 and 8]arenes and their use in the ring opening polymerization of cyclic esters

CC BY-NC 4.0 ;DOI: 10.17028/rd.lboro.12820484.v1

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9
Microwave-induced self-organization in mineral systems. IX. Diluted FeOOH sol obtained from FeCl3 and Na2CO3 solutions (2.45 GHz; 450 W; 1 min; check experiment)
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Microwave-induced self-organization in mineral systems. IX. Diluted FeOOH sol obtained from FeCl3 and Na2CO3 solutions (2.45 GHz; 450 W; 1 min; check experiment)

CC-BY-4.0: Creative Commons Attribution 4.0 International Access constraints: unrestricted info:eu-repo/semantics/openAccess

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10
Microwave-induced self-organization in mineral systems. VI. Saturated FeOOH sol obtained from FeCl3 and Na2CO3 solutions (2.45 GHz; 200 W; 1 min)
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Microwave-induced self-organization in mineral systems. VI. Saturated FeOOH sol obtained from FeCl3 and Na2CO3 solutions (2.45 GHz; 200 W; 1 min)

CC-BY-4.0: Creative Commons Attribution 4.0 International Access constraints: unrestricted info:eu-repo/semantics/openAccess

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11
Microwave-induced self-organization in mineral systems. VII. Diluted FeOOH sol obtained from FeCl3 and Na2CO3 solutions (2.45 GHz; 200 W; 1 min)
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Microwave-induced self-organization in mineral systems. VII. Diluted FeOOH sol obtained from FeCl3 and Na2CO3 solutions (2.45 GHz; 200 W; 1 min)

CC-BY-4.0: Creative Commons Attribution 4.0 International Access constraints: unrestricted info:eu-repo/semantics/openAccess

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12
Microwave-induced self-organization in mineral systems. IX. Diluted FeOOH sol obtained from FeCl3 and Na2CO3 solutions (2.45 GHz; 450 W; 1 min)
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Microwave-induced self-organization in mineral systems. IX. Diluted FeOOH sol obtained from FeCl3 and Na2CO3 solutions (2.45 GHz; 450 W; 1 min)

CC-BY-4.0: Creative Commons Attribution 4.0 International Access constraints: unrestricted info:eu-repo/semantics/openAccess

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13
Figure 10. Chemo-Selective Polymerizations Using Mixtures of Epoxide, Lactone, Anhydride and CO2. Figure 13
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Figure 10. Chemo-Selective Polymerizations Using Mixtures of Epoxide, Lactone, Anhydride and CO2. Figure 13

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14
Figure 11. Chemo-Selective Polymerizations Using Mixtures of Epoxide, Lactone, Anhydride and CO2
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Figure 11. Chemo-Selective Polymerizations Using Mixtures of Epoxide, Lactone, Anhydride and CO2

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15
Microwave-induced self-organization in mineral systems. III. FeCl3 colloid (200 W; 2.45 GHz; 1 min)
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Microwave-induced self-organization in mineral systems. III. FeCl3 colloid (200 W; 2.45 GHz; 1 min)

CC-BY-4.0: Creative Commons Attribution 4.0 International Access constraints: unrestricted info:eu-repo/semantics/openAccess

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16
Microwave-induced self-organization in mineral systems. IV. FeCl3 colloid (450 W; 2.45 GHz)
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Microwave-induced self-organization in mineral systems. IV. FeCl3 colloid (450 W; 2.45 GHz)

CC-BY-4.0: Creative Commons Attribution 4.0 International Access constraints: unrestricted info:eu-repo/semantics/openAccess

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17
Microwave-induced self-organization in mineral systems. V. FeCl3 colloid (800 W; 2.45 GHz; 30 sec.)
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Microwave-induced self-organization in mineral systems. V. FeCl3 colloid (800 W; 2.45 GHz; 30 sec.)

CC-BY-4.0: Creative Commons Attribution 4.0 International Access constraints: unrestricted info:eu-repo/semantics/openAccess

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18
Research data supporting "Post-polymerisation functionalisation of conjugated polymer backbones and its application in multi-functional emissive nanoparticles"
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Research data supporting "Post-polymerisation functionalisation of conjugated polymer backbones and its application in multi-functional emissive nanoparticles"

https://creativecommons.org/licenses/by/4.0 ;DOI: 10.1038/s41467-018-05381-4

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