Accurate fluorescent polymeric thermometers containing an ionic component
Literature Information
Chie Gota, Seiichi Uchiyama, Tomohiko Ohwada
Fluorescent polymeric thermometers consisting of only N-alkylacrylamide and fluorescent components show rather low temperature resolution in their functional ranges (ca. 15–50 °C) because of the occurrence of intermolecular aggregation, which causes hysteresis in their fluorescence response to changes in temperature. By adding an ionic component to prevent such intermolecular aggregation, we obtained four fluorescent polymeric thermometers that offer high temperature resolution (<0.2 °C). Each new fluorescent polymeric thermometer covered the temperature range, 9–33 °C, 30–51 °C, 49–66 °C or 4–38 °C.
Related Literature
Redox initiation of bulk thiol–ene polymerizations
Megan A. Cole, Katherine C. Jankousky
DOI: 10.1039/C2PY20843A
The use of process simulation in supercritical fluids applications
Francisco Javier Gutiérrez Ortiz, Andrea Kruse
DOI: 10.1039/C9RE00465C
Refinery integration of lignocellulose for automotive fuel production via the bioCRACK process and two-step co-hydrotreating of liquid phase pyrolysis oil and heavy gas oil
Anna Huber, Samir Reiter, Mario Lukasch, Berndt Hammerschlag, Julia Außerleitner, Daniela Painer, Peter Pucher, Matthäus Siebenhofer, Nikolaus Schwaiger
DOI: 10.1039/C9RE00352E
Kinetics and reactor modeling of the conversion of n-pentane using HZSM-5 catalysts with different Si/Al ratios
Tomás Cordero-Lanzac, Andrés T. Aguayo, Javier Bilbao
DOI: 10.1039/C9RE00222G
Neutral, anionic, cationic, and zwitterionic diblock copolymers featuring poly(2-methoxyethyl acrylate) “hydrophobic” segments
Irakli Javakhishvili, Katja Jankova, Søren Hvilsted
DOI: 10.1039/C2PY20694C
The importance of ionic conduction in microwave heated polyesterifications
George Hargreaves, Adam Buttress, Georgios Dimitrakis, Christopher Dodds, Pierre Martin-Tanchereau, Matthew G. Unthank, Derek J. Irvine
DOI: 10.1039/C9RE00313D
Living lamellar crystal initiating polymerization and brittleness mechanism investigations based on crystallization during the ring-opening of cyclic butylene terephthalate oligomers
Zongbao Wang, Bingjie Wang, Quting Gou, Junwu Zhang, Jian Zhou, Peng Chen, Qun Gu
DOI: 10.1039/C2PY20847D
pH and reduction dual-responsive nanogel cross-linked by quaternization reaction for enhanced cellular internalization and intracellular drug delivery
Zhaohui Tang, Hai Sun, Xuesi Chen
DOI: 10.1039/C2PY20871G
Mesogen jacketed liquid crystalline polyacetylene containing triphenylene discogen: synthesis and phase structure
Zhen-Qiang Yu, Jacky W. Y. Lam, Keqing Zhao, Cai-Zhen Zhu, Shuang Yang, Jie-Sheng Lin, Bing Shi Li, Jian-Hong Liu, Er-Qiang Chen, Ben Zhong Tang
DOI: 10.1039/C2PY20535A
Visualization of the crucial step in SET-LRP
Martin E. Levere, Nga H. Nguyen, Xuefei Leng, Virgil Percec
DOI: 10.1039/C2PY21084C
You might also like
What is Ethyl 3-cyclohexylpropanoate (CAS: 10094-36-7)?
Ethyl 3-cyclohexylpropanoate is a clear, colorless to light yellow liquid with a...
How should waste containing 2-(Hydroxymethyl)-5-(methoxycarbonyl)-6-methyl-4-(2-nitrophenyl)nicotinic acid (CAS: 34783-31-8) be handled?
Waste containing 2-(Hydroxymethyl)-5-(methoxycarbonyl)-6-methyl-4-(2-nitrophenyl...
How should waste containing 2,4,6-Tris(pentafluoroethyl)-1,3,5-triazine (CAS: 858-46-8) be handled?
Waste containing 2,4,6-Tris(pentafluoroethyl)-1,3,5-triazine (CAS: 858-46-8) sho...
What precautions should be taken when handling Chloroac-nle-oh (CAS: 56787-36-1)?
When handling Chloroac-nle-oh (CAS: 56787-36-1), it is essential to wear appropr...
What industries use Ethyl 6-phenylimidazo[2,1-b][1,3]thiazole-3-carboxylate (CAS: 752244-05-6)?
Ethyl 6-phenylimidazo[2,1-b][1,3]thiazole-3-carboxylate is primarily used in the...
Are there alternatives to alpha-(2-Bromophenyl)benzylamine (CAS: 55095-15-3) in synthesis?
Alternatives to alpha-(2-Bromophenyl)benzylamine (CAS: 55095-15-3) in synthesis ...
How should waste containing 2-Chloro-5-methoxypyridine (CAS: 139585-48-1) be handled?
Waste containing 2-Chloro-5-methoxypyridine (CAS: 139585-48-1) should be managed...
What industries use 1-(4-Methoxyphenyl)-2,5-dimethyl-1H-pyrrole (CAS: 5044-27-9)?
1-(4-Methoxyphenyl)-2,5-dimethyl-1H-pyrrole (CAS: 5044-27-9) is used in various ...
Are there alternatives to 3-Bromo-5-(N-Boc)aminomethylisoxazole (CAS: 903131-45-3) in synthesis?
There are alternative reagents and compounds that can be used in the synthesis o...
What is Tungsten(IV) oxide (CAS: 12036-22-5)?
Tungsten(IV) oxide, also known as tungsten dioxide, is a chemical compound with ...
Source Journal
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.











![2-{3-[4-(3-Chlorophenyl)-1-piperazinyl]propyl}[1,2,4]triazolo[4,3-a]pyridin-3(2H)-one hydrochloride (1:1) structure 2-{3-[4-(3-Chlorophenyl)-1-piperazinyl]propyl}[1,2,4]triazolo[4,3-a]pyridin-3(2H)-one hydrochloride (1:1) structure](https://static.chemtradehub.com/structs/253/25332-39-2-496e.webp)


![Bis[(1,2,3,4,5-eta)-1-(diphenylphosphino)cyclopentadienyl]iron structure Bis[(1,2,3,4,5-eta)-1-(diphenylphosphino)cyclopentadienyl]iron structure](https://static.chemtradehub.com/structs/121/12150-46-8-ecd2.webp)