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Hexaamminrutheniumtrichlorid

Hexaammineruthenium(III) chloride Struktur
14282-91-8
CAS-Nr.
14282-91-8
Bezeichnung:
Hexaamminrutheniumtrichlorid
Englisch Name:
Hexaammineruthenium(III) chloride
Synonyma:
RUTHENIUM HEXAMMINE TRICHLORIDE;NSC 172783;RuHex chloride;hexaamminetrichlororuthenium;Hexaammineruthenium(III) chL;hexaamminerutheniumtrichloride;Hexaammine-,trichloride,hydrate;Hexaammineruthenium(Ⅲ) chloride;Hexaammonium ruthenium chloride;Trichlororuthenium Hexaammoniate
CBNumber:
CB0434922
Summenformel:
ClH12N6Ru+2
Molgewicht:
232.66
MOL-Datei:
14282-91-8.mol

Hexaamminrutheniumtrichlorid Eigenschaften

storage temp. 
2-8°C
L?slichkeit
soluble in H2O
Aggregatzustand
Crystalline Powder
Farbe
Yellow
Wasserl?slichkeit
Very soluble in water.
InChI
InChI=1S/ClH.6H2N.Ru/h1H;6*1H2;/q;6*-1;+9/p-1
InChIKey
WXRKGULWJOAAIR-UHFFFAOYSA-M
SMILES
[Ru+3](N)(N)(N)(N)(N)N.[Cl-]
CAS Datenbank
14282-91-8(CAS DataBase Reference)
Sicherheit
  • Risiko- und Sicherheitserkl?rung
  • Gefahreninformationscode (GHS)
Kennzeichnung gef?hrlicher Xi
R-S?tze: 36/37/38
S-S?tze: 26-36
WGK Germany  3
RTECS-Nr. VM2651530
HS Code  28439000
Bildanzeige (GHS) GHS hazard pictograms
Alarmwort Warnung
Gefahrenhinweise
Code Gefahrenhinweise Gefahrenklasse Abteilung Alarmwort Symbol P-Code
H315 Verursacht Hautreizungen. Hautreizung Kategorie 2 Warnung GHS hazard pictogramssrc="/GHS07.jpg" width="20" height="20" /> P264, P280, P302+P352, P321,P332+P313, P362
H319 Verursacht schwere Augenreizung. Schwere Augenreizung Kategorie 2 Warnung GHS hazard pictogramssrc="/GHS07.jpg" width="20" height="20" /> P264, P280, P305+P351+P338,P337+P313P
H335 Kann die Atemwege reizen. Spezifische Zielorgan-Toxizit?t (einmalige Exposition) Kategorie 3 (Atemwegsreizung) Warnung GHS hazard pictogramssrc="/GHS07.jpg" width="20" height="20" />
Sicherheit
P261 Einatmen von Staub vermeiden.
P264 Nach Gebrauch gründlich waschen.
P264 Nach Gebrauch gründlich waschen.
P271 Nur im Freien oder in gut belüfteten R?umen verwenden.
P280 Schutzhandschuhe/Schutzkleidung/Augenschutz tragen.
P302+P352 BEI BERüHRUNG MIT DER HAUT: Mit viel Wasser/... (Hersteller kann, falls zweckm??ig, ein Reinigungsmittel angeben oder, wenn Wasser eindeutig ungeeignet ist, ein alternatives Mittel empfehlen) waschen.
P305+P351+P338 BEI KONTAKT MIT DEN AUGEN: Einige Minuten lang behutsam mit Wasser spülen. Eventuell vorhandene Kontaktlinsen nach M?glichkeit entfernen. Weiter spülen.

Hexaamminrutheniumtrichlorid Chemische Eigenschaften,Einsatz,Produktion Methoden

R-S?tze Betriebsanweisung:

R36/37/38:Reizt die Augen, die Atmungsorgane und die Haut.

S-S?tze Betriebsanweisung:

S26:Bei Berührung mit den Augen sofort gründlich mit Wasser abspülen und Arzt konsultieren.
S36:DE: Bei der Arbeit geeignete Schutzkleidung tragen.

Chemische Eigenschaften

Hexaammineruthenium(III) chloride, [Ru(NH3)6]Cl3, is a powdery, pale yellow, air stable, water-soluble powder.
Hexaammineruthenium(III) chloride and hexaammineruthenium(II) chloride are readily interconverted via electrochemical reduction and oxidation, respectively. As a result, hexaammineruthenium(III) chloride is often used as the analyte in cyclic voltammetry demonstrations. This property also makes [Ru(NH3)6]Cl3 highly useful in various biochemical analyses as an indicator of the occurrence of one-electron reactions.

Verwenden

Hexaamineruthenium(III) Chloride as an Electron Mediator for Glucose
Detection Glucose monitoring systems use hexaammineruthenium(III) chloride as an electron mediator. In one commercial blood glucose monitoring system, β-D-glucose reacts with GOD and hexaammineruthenium (III) chloride in the test strip, generating β-D-glucono-lactone and hexaammineruthenium (II) chloride. The amount of hexaammineruthenium (II) chloride that is produced is directly proportional to the amount of glucose in the blood sample. Oxidation of the hexaammineruthenium(II) chloride back to hexaammineruthenium (III) chloride then generates an electric current. The meter is used to convert the current into the value of the glucose concentration.
In another system reported in the literature, the thermostable FADGDH glucose-dehydrogenase complex, rather than GDH, was used as the enzyme and deposited’ along with hexaammineruthenium (III) chloride, onto a screen-printed carbon electrode (SPCE) (Ref 2). The sensor was shown to measure the whole-blood glucose level within 1 sec using a 150-nL whole-blood sample with both high precision and reproducibility. Importantly, the sensor reading was stable for more than 60 days, even at 70 °C.
In these systems, the hexaammineruthenium (III) chloride must be of consistent purity and quality to ensure consistent and accurate test results.
Reactions:
β-D-glucose + Hexammineruthenium(III) chloride + GOD → D-Glucono-δ-Lactone + Hexammineruthenium (II) chloride
Hexammineruthenium(II) chloride →Hexammineruthenium(III) chloride + e
https://www.strem.com

Application

Hexaammineruthenium III/II (HexRu(III)|HexRu(II)) couple is a commonly used electrochemical redox couple due to its chemical and electrochemical reversibility.
Hexaammineruthenium(III) chloride can be used to synthesize chloropentaammineruthenium(III) chloride.

Vorbereitung Methode

Hexammineruthenium (II) dichloride 34 g (ruthenium 0.12 mol) was dissolved in 270 mL of water, and 6.65 g (0.12 mol) of ammonium chloride was gradually added to it. Then, oxygen gas was blown into this solution to synthesize hexaammineruthenium (III) trichloride. Oxygen gas with a purity of 99.99% was blown at a flow rate of 0.5 L / min, and the reaction was performed while measuring the redox potential with an ORP meter inserted in the solution. Then, when the redox potential reached ?80 mV (vs. Ag / AgCl), the blowing of oxygen gas was stopped (the liquid temperature was 20-25 ℃). In the separation and extraction step, 36 g of ammonium chloride was dissolved in the filtrate and then cooled to 3 ° C. As a result, pale cream hexaammineruthenium (III) trichloride crystals were crystallized. Finally, the solution was filtered to separate hexaammineruthenium (III) trichloride crystals, washed with 50 mL of acetone, and dried at 60 ℃. for 2 hours to obtain Hexaammineruthenium(III) chloride crystals.

Allgemeine Beschreibung

Hexaammineruthenium III/II (HexRu(III)|HexRu(II)) couple is a commonly used electrochemical redox couple due to its chemical and electrochemical reversibility.

l?uterung methode

Crystallise it twice from 1M HCl.

Hexaamminrutheniumtrichlorid Upstream-Materialien And Downstream Produkte

Upstream-Materialien

Downstream Produkte


Hexaamminrutheniumtrichlorid Anbieter Lieferant Produzent Hersteller Vertrieb H?ndler.

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14282-91-8(Hexaamminrutheniumtrichlorid)Verwandte Suche:


  • hexaammine-,trichloride,(oc-6-11)-ruthenium(3+
  • hexaammine-ruthenium(3+trichloride
  • hexaamminerutheniumtrichloride
  • hexaamminerutheniumtrichloride,hydrate
  • hexaamminetrichlororuthenium
  • ruthenium(3+),hexaammine-,trichloride,hydrate
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  • HexaaMMinerutheniuM(III) chloride, 98% 250MG
  • Hexaammineruthenium(Ⅲ) chloride
  • NSC 172783
  • RuHex chloride
  • Trichlororuthenium Hexaammoniate
  • Ruthenium(3+),hexaammine-, chloride (1:3), (OC-6-11)-
  • Hexaammineruthenium(III) chL
  • HexaamMineruthenium(Iii) Chloride, Ru Min
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  • Ruthenium(3+) chloride ammoniate (1:3:6)
  • Hexaammonium ruthenium chloride
  • 14282-91-8
  • H18Cl3N6Ru
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  • Cl3H18N6Ru
  • H18N6RuCl3
  • Catalysis and Inorganic Chemistry
  • Ru Catalysts
  • Ru
  • Catalysis and Inorganic Chemistry
  • Ru CatalystsMetal and Ceramic Science
  • Ruthenium
  • Ruthenium Salts
  • Salts
  • metal-ammine complexes
  • Intermediate
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