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164467-29-2

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164467-29-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 164467-29-2 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,6,4,4,6 and 7 respectively; the second part has 2 digits, 2 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 164467-29:
(8*1)+(7*6)+(6*4)+(5*4)+(4*6)+(3*7)+(2*2)+(1*9)=152
152 % 10 = 2
So 164467-29-2 is a valid CAS Registry Number.

164467-29-2Relevant articles and documents

Computational design, synthesis, and mechanochromic properties of new thiophene-based π-conjugated chromophores

Prampolini, Giacomo,Bellina, Fabio,Biczysko, Malgorzata,Cappelli, Chiara,Carta, Luciano,Lessi, Marco,Pucci, Andrea,Ruggeri, Giacomo,Barone, Vincenzo

, p. 1996 - 2004 (2013/03/29)

The possibility of exploiting supramolecular architectures for the preparation of innovative mechanochromic devices has been extended by designing novel thienyl-substituted 1,4-bis(ethynyl)benzene dyes, which are characterized by a conjugated, rigid, rodl

Single-step electron transfer on the nanometer scale: Ultra-fast charge shift in strongly coupled zinc porphyrin-gold porphyrin dyads

Fortage, Jerome,Boixel, Julien,Blart, Errol,Hammarstroem, Leif,Becker, Hans Christian,Odobel, Fabrice

supporting information; experimental part, p. 3467 - 3480 (2009/04/10)

The synthesis, electrochemical properties, and photoinduced electron transfer processes of a series of three novel zinc(II)-gold(III) bisporphyrin dyads (ZnP-S-AuP+) are described. The systems studied consist of two trisaryl porphyrins connected directly in the meso position via an alkyne unit to tert-(phenylenethynylene) or penta(phenylenethynylene) spacers. In these dyads, the estimated center to center interporphyrin separation distance varies from 32 to 45 A. The absorption, emission, and electrochemical data indicate that there are strong electronic interactions between the linked elements, thanks to the direct attachment of the spacer on the porphyrin ring through the alkyne unit. At room temperature in toluene, light excitation of the zinc porphyrin results in almost quantitative formation of the charge shifted state +ZnP-S-AuP, whose lifetime is in the order of hundreds of picoseconds. In this solvent, the charge-separated state decays to the ground state through the intermediate population of the zinc porphyrin triplet excited state. Excitation of the gold porphyrin leads instead to rapid energy transfer to the triplet ZnP. In dichloromethane the charge shift reactions are even faster, with time constants down to 2 ps, and may be induced also by excitation of the gold porphyrin. In this latter solvent, the longest charge-shifted lifetime (τ = 2.3 ns) was obtained with the penta(phenylenethynylene) spacer. The charge shift reactions are discussed in terms of bridge-mediated super-exchange mechanisms as electron or hole transfer. These new bis-porphyrin arrays, with strong electronic coupling, represent interesting molecular systems in which extremely fast and efficient long-range photoinduced charge shift occurs over a long distance. The rate constants are two to three orders of magnitude larger than for corresponding ZnP-AuP+ dyads linked via mesophenyl groups to oligo-phenyleneethynylene spacers. This study demonstrates the critical impact of the attachment position of the spacer on the porphyrin on the electron transfer rate, and this strategy can represent a useful approach to develop molecular photonic devices for long-range charge separations.

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