phenylene vinylene
Recently Published Documents


TOTAL DOCUMENTS

1536
(FIVE YEARS 57)

H-INDEX

88
(FIVE YEARS 4)

2022 ◽  
Author(s):  
Jihong Lyu ◽  
Christopher W. Bielawski
Keyword(s):  

New classes of poly(p-xylylene)s and poly(p-phenylene vinylene)s were synthesized and studied.


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Riley O’shea ◽  
William J. Kendrick ◽  
Can Gao ◽  
Tze Cin Owyong ◽  
Jonathan M. White ◽  
...  

AbstractA series of poly(phenylene-vinylene)-based copolymers are synthesized using the Gilch method incorporating monomers with sterically bulky sidechains. The photochemical upconversion performance of these polymers as emitters are investigated using a palladium tetraphenyltetrabenzoporphyrin triplet sensitizer and MEH-PPV as reference. Increased incorporation of sterically bulky monomers leads to a reduction in the upconversion efficiency despite improved photoluminescence quantum yield. A phosphorescence quenching study indicates issues with the energy transfer process between the triplet sensitizer and the copolymers. The best performance with 0.18% upconversion quantum yield is obtained for the copolymer containing 10% monomer with bulky sidechains.


2021 ◽  
Vol 1 ◽  
pp. 111
Author(s):  
Matthias Pletzer ◽  
Felix Plasser ◽  
Martina Rimmele ◽  
Martin Heeney ◽  
Florian Glöcklhofer

Background: Poly(p-phenylene vinylene)s (PPVs) and [2.2.2.2]paracyclophanetetraene (PCT) are both composed of alternating π-conjugated para-phenylene and vinylene units. However, while the former constitute a class of π-conjugated polymers that has been used in organic electronics for decades, the latter is a macrocycle that only recently revealed its potential for applications such as organic battery electrodes. The cyclic structure endows PCT with unusual properties, and further tuning of these may be required for specific applications. Methods: In this article, we adopt an approach often used for tuning the properties of PPVs, the introduction of alkoxy (or alkylthio) substituents at the phenylene units, for tuning the optoelectronic properties of PCT. The resulting methoxy- and methylthio-substituted PCTs, obtained by Wittig cyclisation reactions, are studied by UV-vis absorption, photoluminescence, and cyclic voltammetry measurements, and investigated computationally using the visualisation of chemical shielding tensors (VIST) method. Results: The measurements show that substitution leads to slight changes in terms of absorption/emission energies and redox potentials while having a pronounced effect on the photoluminescence intensity. The computations show the effect of the substituents on the ring currents and chemical shielding and on the associated local and global (anti)aromaticity of the macrocycles, highlighting the interplay of local and global aromaticity in various electronic states. Conclusions: The study offers interesting insights into the tuneability of the properties of this versatile class of π-conjugated macrocycles.


2021 ◽  
Author(s):  
Hiroki Fukumoto ◽  
Kazuki Shiitsuka ◽  
Keisuke Yamada ◽  
Shigeyuki Yamada ◽  
Tsutomu Konno ◽  
...  

2021 ◽  
pp. 118192
Author(s):  
Wonjin Choi ◽  
Ka Young Kim ◽  
Jaehyeon Park ◽  
Mirae Ok ◽  
Sukyoung Kim ◽  
...  

Author(s):  
Michael D. Garrison ◽  
Ania Sotuyo ◽  
John D. Stenger‐Smith ◽  
Lawrence C. Baldwin ◽  
Alfred J. Baca

2021 ◽  
Vol 230 ◽  
pp. 117764
Author(s):  
Andreia Morais ◽  
Douglas R. Bernardo ◽  
José C. Germino ◽  
Ana F. Nogueira ◽  
Jilian N. Freitas

Synlett ◽  
2021 ◽  
Author(s):  
Quentin Michaudel ◽  
Samuel J. Kempel ◽  
Ting-Wei Hsu

AbstractOlefin metathesis has tremendously impacted all fields of synthetic chemistry. However, the control of the olefin stereochemistry during this process remains a grand challenge. Recent innovations in catalyst design have permitted control of the stereochemistry of the olefin product. Here, we discuss the development of stereoretentive olefin metathesis, with an emphasis on the synthesis of stereodefined polyalkenamers through ring-opening metathesis polymerization (ROMP). We then present our application of this unique reaction manifold to the preparation of all-cis poly(p-phenylene vinylene)s (PPVs). A dithiolate Ru catalyst was found to deliver perfect cis selectivity for the polymerization of a paracyclophane diene monomer. By using optimized conditions, all-cis PPVs with narrow dispersities and predictable molar masses were obtained by varying the ratio of monomer to catalyst. The high chain fidelity of the stereoretentive ROMP with a paracyclophane diene monomer enabled the preparation of well-defined diblock copolymers with a norbornene co-monomer. Photochemical isomerization of all-cis to all-trans PPVs was effected with both homopolymers and diblock copolymers. This process was shown to be selective for the PPV block, and resulted in changes in optical properties, polymer size, and solubility. Stereoretentive ROMP provides a promising platform for synthesizing polymers with unique properties, including photoresponsive all-cis PPVs with living characteristics.1 Introduction2 Synthetic Applications of Stereoretentive Olefin Metathesis3 Stereocontrol of Polyalkenamers through Stereoretentive ROMP4 Stereoretentive ROMP To Access All-cis Poly(p-phenylene vinylene)s5 Conclusion


Sign in / Sign up

Export Citation Format

Share Document