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Tricicletă Fa un efort cub semiconductor polimeric tu esti deconectat Străin

A design strategy for high mobility stretchable polymer semiconductors |  Nature Communications
A design strategy for high mobility stretchable polymer semiconductors | Nature Communications

ICMAB - Organic Semiconductor/Polymer Blend Films for Organic Field‐Effect  Transistors
ICMAB - Organic Semiconductor/Polymer Blend Films for Organic Field‐Effect Transistors

Robust, high-performance n-type organic semiconductors | Science Advances
Robust, high-performance n-type organic semiconductors | Science Advances

Polymers | Free Full-Text | Organic Semiconductor/Insulator Polymer Blends  for High-Performance Organic Transistors
Polymers | Free Full-Text | Organic Semiconductor/Insulator Polymer Blends for High-Performance Organic Transistors

Stretchable, self-healing and semiconducting polymer films for electronic  skin (e-skin)
Stretchable, self-healing and semiconducting polymer films for electronic skin (e-skin)

ICMAB - Published a review on organic semiconductors and polymer blends for  organic field-effect transistors #OFETs
ICMAB - Published a review on organic semiconductors and polymer blends for organic field-effect transistors #OFETs

High-Performance n-Type Polymer Semiconductors: Applications, Recent  Development, and Challenges - ScienceDirect
High-Performance n-Type Polymer Semiconductors: Applications, Recent Development, and Challenges - ScienceDirect

Effective Use of Electrically Insulating Units in Organic Semiconductor  Thin Films for High‐Performance Organic Transistors - Kang - 2017 -  Advanced Electronic Materials - Wiley Online Library
Effective Use of Electrically Insulating Units in Organic Semiconductor Thin Films for High‐Performance Organic Transistors - Kang - 2017 - Advanced Electronic Materials - Wiley Online Library

Molecular Design of Stretchable Polymer Semiconductors: Current Progress  and Future Directions | Journal of the American Chemical Society
Molecular Design of Stretchable Polymer Semiconductors: Current Progress and Future Directions | Journal of the American Chemical Society

a) Chemical structure of semiconductor polymer PFBT and PS-PEG-COOH.... |  Download Scientific Diagram
a) Chemical structure of semiconductor polymer PFBT and PS-PEG-COOH.... | Download Scientific Diagram

Spontaneously formed high-performance charge-transport layers of organic  single-crystal semiconductors on precisely synthesized insulating polymers:  Applied Physics Letters: Vol 110, No 16
Spontaneously formed high-performance charge-transport layers of organic single-crystal semiconductors on precisely synthesized insulating polymers: Applied Physics Letters: Vol 110, No 16

Polymer/molecular semiconductor all-organic composites for high-temperature  dielectric energy storage | Nature Communications
Polymer/molecular semiconductor all-organic composites for high-temperature dielectric energy storage | Nature Communications

Organic semiconductor research takes substantial leap forward
Organic semiconductor research takes substantial leap forward

Polymers | Free Full-Text | Organic Semiconductor/Insulator Polymer Blends  for High-Performance Organic Transistors | HTML
Polymers | Free Full-Text | Organic Semiconductor/Insulator Polymer Blends for High-Performance Organic Transistors | HTML

Polymers | Free Full-Text | Organic Semiconductor/Insulator Polymer Blends  for High-Performance Organic Transistors | HTML
Polymers | Free Full-Text | Organic Semiconductor/Insulator Polymer Blends for High-Performance Organic Transistors | HTML

A New Technology for Semiconductor Film Production on Highly  Liquid-repellent Surfaces - High performance organic polymer transistors  have been realized - | KEK
A New Technology for Semiconductor Film Production on Highly Liquid-repellent Surfaces - High performance organic polymer transistors have been realized - | KEK

Film‐Depth‐Dependent Light Absorption and Charge Transport for Polymer  Electronics: A Case Study on Semiconductor/Insulator Blends by Plasma  Etching - Bu - 2016 - Advanced Electronic Materials - Wiley Online Library
Film‐Depth‐Dependent Light Absorption and Charge Transport for Polymer Electronics: A Case Study on Semiconductor/Insulator Blends by Plasma Etching - Bu - 2016 - Advanced Electronic Materials - Wiley Online Library

X-ray Detectors With Ultrahigh Sensitivity Employing High Performance  Transistors Based on a Fully Organic Small Molecule Semiconductor/Polymer  Blend Active Layer - ICMAB
X-ray Detectors With Ultrahigh Sensitivity Employing High Performance Transistors Based on a Fully Organic Small Molecule Semiconductor/Polymer Blend Active Layer - ICMAB

An aromatic amine-containing polymer as an additive to ambipolar polymer  semiconductor realizing unipolar n-type charge transport - ScienceDirect
An aromatic amine-containing polymer as an additive to ambipolar polymer semiconductor realizing unipolar n-type charge transport - ScienceDirect

Air and temperature sensitivity of n-type polymer materials to meet and  exceed the standard of N2200 | Scientific Reports
Air and temperature sensitivity of n-type polymer materials to meet and exceed the standard of N2200 | Scientific Reports

A New Technology for Semiconductor Film Production on Highly  Liquid-repellent Surfaces - High performance organic polymer transistors  have been realized - | KEK
A New Technology for Semiconductor Film Production on Highly Liquid-repellent Surfaces - High performance organic polymer transistors have been realized - | KEK

Conductive polymer - Wikipedia
Conductive polymer - Wikipedia

Organic-semiconductor: Polymer-electret blends for high-performance  transistors | SpringerLink
Organic-semiconductor: Polymer-electret blends for high-performance transistors | SpringerLink

Intrinsically stretchable polymer semiconductors: molecular design,  processing and device applications - Journal of Materials Chemistry C (RSC  Publishing)
Intrinsically stretchable polymer semiconductors: molecular design, processing and device applications - Journal of Materials Chemistry C (RSC Publishing)

A design strategy for high mobility stretchable polymer semiconductors |  Nature Communications
A design strategy for high mobility stretchable polymer semiconductors | Nature Communications

A polymer/semiconductor write-once read-many-times memory | Nature
A polymer/semiconductor write-once read-many-times memory | Nature