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1354745-59-7

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1354745-59-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1354745-59-7 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,3,5,4,7,4 and 5 respectively; the second part has 2 digits, 5 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 1354745-59:
(9*1)+(8*3)+(7*5)+(6*4)+(5*7)+(4*4)+(3*5)+(2*5)+(1*9)=177
177 % 10 = 7
So 1354745-59-7 is a valid CAS Registry Number.

1354745-59-7Downstream Products

1354745-59-7Relevant articles and documents

Key factors to prepare polyelectrolytes showing temperature-sensitive lower critical solution temperature-type phase transitions in water

Kohno, Yuki,Ohno, Hiroyuki

, p. 91 - 94 (2012)

Tetrabutylphosphonium styrenesulfonate and its homopolymer showed a lower critical solution temperature-type phase transition in water. As the hydrophobicity of these monomeric and polymeric salts affects phase behaviour, the phase transition temperature of the polyelectrolyte was changed by the introduction of monomers having different alkyl chain length on the phosphonium cations. Journal compilation CSIRO 2011.

Insights into the denaturation of bovine serum albumin with a thermo-responsive ionic liquid

Li, Wenlong,Wu, Peiyi

, p. 6161 - 6171 (2014)

Influence of bovine serum albumin on the phase transition behavior of the synthetic ionic liquid tetrabutylphosphonium styrenesulfonate ([P 4,4,4,4][SS]) together with the interactions between [P 4,4,4,4][SS] and bovine serum albumin (BSA) was investigated by differential scanning calorimetry (DSC), turbidity measurements, FT-IR, in combination with perturbation correlation moving window (PCMW) and two-dimensional correlation spectroscopy (2DCOS). Our results reveal that the addition of BSA would increase the phase transition temperature but weaken the transition behavior of [P4,4,4,4][SS] solution. DSC and turbidity data show us that the transition temperature of a ternary system with 20 wt% BSA added is 3 °C higher than that with 20% (w/v) [P4,4,4,4][SS] solution. Interactions between [P4,4,4,4][SS] and BSA together with the phase transition behavior of [P4,4,4,4][SS] are responsible for the denaturation of BSA upon heating. PCMW determined the obvious distinctions in LCST of different chemical groups manifesting their various response sequences in the phase separation and denaturation upon heating. Finally, 2DCOS was employed to elucidate the sequential order of chemical group motions during heating. It is worth noting that the appearance of the isosbestic point in the CO groups of FTIR spectra indicates the direct transformation of the conformation of α-helix, random coil to β-sheet and β-turn without an intermediate transition state. Additionally, the phase separation process of ionic liquid is able to recover to the original state before heating while the denaturation of BSA is irreversible after a cooling process. This journal is the Partner Organisations 2014.

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