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uprchlíci korálky večer low band gap p conjugated polymers jít na prohlídku města Všechny druhy Úměrný

Significant Enhancement of the Electrical Conductivity of Conjugated  Polymers by Post-Processing Side Chain Removal | Journal of the American  Chemical Society
Significant Enhancement of the Electrical Conductivity of Conjugated Polymers by Post-Processing Side Chain Removal | Journal of the American Chemical Society

Selenophene Bearing Low Band Gap Conjugated Polymers: Tuning Optoelectronic  Properties via Fluorene and Carbazole as Donor Moieties[v1] | Preprints
Selenophene Bearing Low Band Gap Conjugated Polymers: Tuning Optoelectronic Properties via Fluorene and Carbazole as Donor Moieties[v1] | Preprints

Narrow-band gap Benzodipyrrolidone (BDPD) based donor conjugated polymer: A  theoretical investigation - ScienceDirect
Narrow-band gap Benzodipyrrolidone (BDPD) based donor conjugated polymer: A theoretical investigation - ScienceDirect

Very Small Bandgap π-Conjugated Polymers with Extended Thienoquinoids |  Journal of the American Chemical Society
Very Small Bandgap π-Conjugated Polymers with Extended Thienoquinoids | Journal of the American Chemical Society

Structure and Optical Bandgap Relationship of π-Conjugated Systems | PLOS  ONE
Structure and Optical Bandgap Relationship of π-Conjugated Systems | PLOS ONE

Very Low Band Gap Thiadiazoloquinoxaline Donor–Acceptor Polymers as  Multi-tool Conjugated Polymers | Journal of the American Chemical Society
Very Low Band Gap Thiadiazoloquinoxaline Donor–Acceptor Polymers as Multi-tool Conjugated Polymers | Journal of the American Chemical Society

Synthesis of low band-gap 2D conjugated polymers and their application for  organic field effect transistors and solar cells - ScienceDirect
Synthesis of low band-gap 2D conjugated polymers and their application for organic field effect transistors and solar cells - ScienceDirect

Low-bandgap conjugated polymers enabling solution-processable tandem solar  cells | Nature Reviews Materials
Low-bandgap conjugated polymers enabling solution-processable tandem solar cells | Nature Reviews Materials

Polymers | Free Full-Text | Recent Development on Narrow Bandgap Conjugated  Polymers for Polymer Solar Cells
Polymers | Free Full-Text | Recent Development on Narrow Bandgap Conjugated Polymers for Polymer Solar Cells

Controlling Molecular Mass of Low-Band-Gap Polymer Acceptors for  High-Performance All-Polymer Solar Cells - ScienceDirect
Controlling Molecular Mass of Low-Band-Gap Polymer Acceptors for High-Performance All-Polymer Solar Cells - ScienceDirect

Frontiers | Low Bandgap Donor-Acceptor π-Conjugated Polymers From  Diarylcyclopentadienone-Fused Naphthalimides
Frontiers | Low Bandgap Donor-Acceptor π-Conjugated Polymers From Diarylcyclopentadienone-Fused Naphthalimides

π‐Conjugated Donor Polymers: Structure Formation and Morphology in  Solution, Bulk and Photovoltaic Blends - Hildner - 2017 - Advanced Energy  Materials - Wiley Online Library
π‐Conjugated Donor Polymers: Structure Formation and Morphology in Solution, Bulk and Photovoltaic Blends - Hildner - 2017 - Advanced Energy Materials - Wiley Online Library

Very Low Band Gap Thiadiazoloquinoxaline Donor–Acceptor Polymers as  Multi-tool Conjugated Polymers | Journal of the American Chemical Society
Very Low Band Gap Thiadiazoloquinoxaline Donor–Acceptor Polymers as Multi-tool Conjugated Polymers | Journal of the American Chemical Society

Low-Band gap Conjugated Polymers with Strong Absorption in the Second  Near-Infrared Region Based on Diketopyrrolopyrrole-Containing Quinoidal  Units | Macromolecules
Low-Band gap Conjugated Polymers with Strong Absorption in the Second Near-Infrared Region Based on Diketopyrrolopyrrole-Containing Quinoidal Units | Macromolecules

Low Band Gap Conjugated Semiconducting Polymers - Scharber - 2021 -  Advanced Materials Technologies - Wiley Online Library
Low Band Gap Conjugated Semiconducting Polymers - Scharber - 2021 - Advanced Materials Technologies - Wiley Online Library

Frontiers | Low Bandgap Donor-Acceptor π-Conjugated Polymers From  Diarylcyclopentadienone-Fused Naphthalimides
Frontiers | Low Bandgap Donor-Acceptor π-Conjugated Polymers From Diarylcyclopentadienone-Fused Naphthalimides

para-Azaquinodimethane: A Compact Quinodimethane Variant as an Ambient  Stable Building Block for High-Performance Low Band Gap Polymers (Journal  Article) | DOE PAGES
para-Azaquinodimethane: A Compact Quinodimethane Variant as an Ambient Stable Building Block for High-Performance Low Band Gap Polymers (Journal Article) | DOE PAGES

Tailoring π-conjugation and vibrational modes to steer on-surface synthesis  of pentalene-bridged ladder polymers | Nature Communications
Tailoring π-conjugation and vibrational modes to steer on-surface synthesis of pentalene-bridged ladder polymers | Nature Communications

Polymers | Free Full-Text | Synthesis and Photovoltaic Effect of  Electron-Withdrawing Units for Low Band Gap Conjugated Polymers Bearing  Bi(thienylenevinylene) Side Chains
Polymers | Free Full-Text | Synthesis and Photovoltaic Effect of Electron-Withdrawing Units for Low Band Gap Conjugated Polymers Bearing Bi(thienylenevinylene) Side Chains

Frontiers | Low Bandgap Donor-Acceptor π-Conjugated Polymers From  Diarylcyclopentadienone-Fused Naphthalimides
Frontiers | Low Bandgap Donor-Acceptor π-Conjugated Polymers From Diarylcyclopentadienone-Fused Naphthalimides

Regioregular narrow-bandgap-conjugated polymers for plastic electronics |  Nature Communications
Regioregular narrow-bandgap-conjugated polymers for plastic electronics | Nature Communications

Impact of polymorphism on the optoelectronic properties of a low-bandgap  semiconducting polymer | Nature Communications
Impact of polymorphism on the optoelectronic properties of a low-bandgap semiconducting polymer | Nature Communications

Broadband infrared photodetection using a narrow bandgap conjugated polymer  | Science Advances
Broadband infrared photodetection using a narrow bandgap conjugated polymer | Science Advances

Highly crystalline, low band-gap semiconducting polymers based on  phenanthrodithiophene-benzothiadiazole for solar cells and transistors -  Polymer Chemistry (RSC Publishing)
Highly crystalline, low band-gap semiconducting polymers based on phenanthrodithiophene-benzothiadiazole for solar cells and transistors - Polymer Chemistry (RSC Publishing)

Formation of energy bands in conjugated polymers. (Figure redrawn and... |  Download Scientific Diagram
Formation of energy bands in conjugated polymers. (Figure redrawn and... | Download Scientific Diagram

Small-bandgap quinoid-based π-conjugated polymers - Journal of Materials  Chemistry C (RSC Publishing) DOI:10.1039/D0TC01041C
Small-bandgap quinoid-based π-conjugated polymers - Journal of Materials Chemistry C (RSC Publishing) DOI:10.1039/D0TC01041C

Very Small Bandgap π-Conjugated Polymers with Extended Thienoquinoids |  Journal of the American Chemical Society
Very Small Bandgap π-Conjugated Polymers with Extended Thienoquinoids | Journal of the American Chemical Society