solvent stability
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2021 ◽  
Vol 12 (1) ◽  
Author(s):  
Chi-Yuan Yang ◽  
Marc-Antoine Stoeckel ◽  
Tero-Petri Ruoko ◽  
Han-Yan Wu ◽  
Xianjie Liu ◽  
...  

AbstractConducting polymers, such as the p-doped poly(3,4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS), have enabled the development of an array of opto- and bio-electronics devices. However, to make these technologies truly pervasive, stable and easily processable, n-doped conducting polymers are also needed. Despite major efforts, no n-type equivalents to the benchmark PEDOT:PSS exist to date. Here, we report on the development of poly(benzimidazobenzophenanthroline):poly(ethyleneimine) (BBL:PEI) as an ethanol-based n-type conductive ink. BBL:PEI thin films yield an n-type electrical conductivity reaching 8 S cm−1, along with excellent thermal, ambient, and solvent stability. This printable n-type mixed ion-electron conductor has several technological implications for realizing high-performance organic electronic devices, as demonstrated for organic thermoelectric generators with record high power output and n-type organic electrochemical transistors with a unique depletion mode of operation. BBL:PEI inks hold promise for the development of next-generation bioelectronics and wearable devices, in particular targeting novel functionality, efficiency, and power performance.


Polymers ◽  
2021 ◽  
Vol 13 (4) ◽  
pp. 534
Author(s):  
Chiara Di Mauro ◽  
Alice Mija

The design of polymers from renewable resources with recycling potential comes from economic and environmental problems. This work focused on the impact of disulphide bonds in the dicarboxylic acids reactions with three epoxidized vegetable oils (EVOs). For the first time, the comparison between aromatic vs. aliphatic dicarboxylic acids, containing or not S–S bonds with EVOs was discussed and evaluated by dynamic scanning calorimetry. The obtained thermosets showed reprocessability, by the dual dynamic exchange mechanism. The virgin and reprocessed materials were characterized and the thermomechanical properties were compared. The thermosets derived from EVOs with high epoxy content combined with aromatic diacids containing disulphide bridges showed high glass transition values (~111 °C), high crosslink densities and good solvent stability.


AMB Express ◽  
2020 ◽  
Vol 10 (1) ◽  
Author(s):  
Mariana B. Méndez ◽  
Jorge A. Trelles ◽  
Cintia W. Rivero

Abstract A novel IDA-LaNDT derivative was able to reach the highest productivity in the biosynthesis of a well-known antitumoral agent called decitabine. However, the combination of two simple and inexpensive techniques such as ionic absorption and gel entrapment with the incorporation of a bionanocomposite such as bentonite significantly improved the stability of this biocatalyst. These modifications allowed the enhancement of storage stability (for at least 18 months), reusability (400 h of successive batches without significant loss of its initial activity), and thermal and solvent stability with respect to the non-entrapped derivative. Moreover, reaction conditions were optimized by increasing the solubility of 5-aza by dilution with dimethylsulfoxide. Therefore, a scale-up of the bioprocess was assayed using the developed biocatalyst, obtaining 221 mg/L·h of DAC. Finally, green parameters were calculated using the nanostabilized biocatalyst, whose results indicated that it was able to biosynthesize DAC by a smooth, cheap, and environmentally friendly methodology.


2020 ◽  
Author(s):  
Mariana B. Méndez ◽  
Jorge A. Trelles ◽  
Cintia W Rivero

Abstract A novel IDA-LaNDT derivative was able to reach the highest productivity in the biosynthesis of a well-known antitumoral agent called decitabine. However, the combination of two simple and inexpensive techniques such as ionic absorption and gel entrapment with the incorporation of a bionanocomposite such as bentonite significantly improved the stability of this biocatalyst. These modifications allowed the enhancement of storage stability (for at least 18 months), reusability (400 h of successive batches without significant loss of its initial activity), and thermal and solvent stability with respect to the non-entrapped derivative. Moreover, reaction conditions were optimized by increasing the solubility of 5-aza by dilution with dimethylsulfoxide. Therefore, a scale-up of the bioprocess was assayed using the developed biocatalyst, obtaining 221 mg/L.h of DAC. Finally, green parameters were calculated using the nanostabilized biocatalyst, whose results indicated that it was able to biosynthesize DAC by a smooth, cheap, and environmentally friendly methodology.


2020 ◽  
Vol 67 (4) ◽  
pp. 516-526 ◽  
Author(s):  
Alfons J. Pineda‐Knauseder ◽  
David A. Vargas ◽  
Rudi Fasan

Fuel ◽  
2020 ◽  
Vol 267 ◽  
pp. 117086 ◽  
Author(s):  
Qiang Sheng ◽  
Gang Wang ◽  
Nan Jin ◽  
Maen M. Husein ◽  
Jinsen Gao

2020 ◽  
Vol 11 (2) ◽  
Author(s):  
Spasojević M. ◽  
Prodanović O. ◽  
Pantić N. ◽  
Popović N. ◽  
Balaž A. M. ◽  
...  

Strategies based on the enzyme application are increasingly replacing the conventionalchemical procedures because of their efficiency, quicker performance and environmentalprotection. However, natural enzymes can rarely be used in industrysince their beneficial features cannot endure the industrial conditions. Additionaldrawbacks of natural enzymes are their inhibition by reaction products and difficultyto be removed from the reaction mixture. The most promising techniqueto substantially improve the enzyme properties, such as activity, pH, thermal andorganic-solvent stability, reusability and storage stability, in non-natural environmentsis by the enzyme immobilization. In this review different techniques usedto immobilize enzymes to inert carriers were summarized. Different materials ofboth the organic and inorganic origin were used as carriers for the enzyme immobilization.A class of new materials where the enzyme performance was enhancedby combining different classical materials and shaping in specific forms was alsosummarized.


2020 ◽  
Vol 55 (17) ◽  
pp. 7321-7336 ◽  
Author(s):  
Ying Xue ◽  
Chunmei Li ◽  
Jiaojun Tan ◽  
Zhengzhou Su ◽  
Yumin Yang ◽  
...  

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