跳转至内容
Merck
CN
  • Definitive proof of graphene hydrogenation by Clemmensen reduction: use of deuterium labeling.

Definitive proof of graphene hydrogenation by Clemmensen reduction: use of deuterium labeling.

Nanoscale (2015-05-28)
Zdeněk Sofer, Ondřej Jankovský, Alena Libánská, Petr Šimek, Michal Nováček, David Sedmidubský, Anna Macková, Romana Mikšová, Martin Pumera
摘要

Graphane is one of the most intensively studied derivatives of graphene. Here we demonstrate the evaluation of exact degree of graphene hydrogenation using the Clemmensen reduction reaction and deuterium labeling. The Clemmensen reduction reaction is based on application of zinc in an acid environment. It effectively reduces various functional groups (like ketones) present in graphite oxide. However, the mechanism of reduction is still unknown and elusive. Here we bring a major insight into the mechanisms of the Clemmensen reduction via deuterium labeling and the topochemical approach applied on graphite oxide. The use of deuterated reactants and the exact measurement of deuterium concentration in reduced/hydrogenated graphene by nuclear methods can be used for accurate estimation of C-H bond abundance in graphene. Various topochemical configurations of experiments showed that the reduction of a ketonic group proceeds in contact with the zinc metal by a carbenoid mechanism. Our results showed that the application of nuclear methods of isotope analysis in combination with deuterium labeling represents a very effective tool for investigation of graphene based materials. Our results demonstrate that graphene based materials can also be effectively used for the investigation of organic reaction mechanisms, because the robust structure of graphene allows the use of various spectroscopic techniques which could not be applied on small organic molecules.

材料
Product Number
品牌
产品描述

Sigma-Aldrich
氧化氘, 99.9 atom % D
Sigma-Aldrich
N,N-二甲基甲酰胺, anhydrous, 99.8%
Sigma-Aldrich
硝酸, 70%, purified by redistillation, ≥99.999% trace metals basis
Sigma-Aldrich
盐酸 溶液, 1.0 N, BioReagent, suitable for cell culture
Sigma-Aldrich
硫酸, 99.999%
Sigma-Aldrich
氧化氘, 99.9 atom % D, contains 0.05 wt. % 3-(trimethylsilyl)propionic-2,2,3,3-d4 acid, sodium salt
Sigma-Aldrich
盐酸, 36.5-38.0%, BioReagent, Molecular Biology
Sigma-Aldrich
N,N-二甲基甲酰胺, Molecular Biology, ≥99%
Supelco
盐酸 溶液, volumetric, 0.1 M HCl (0.1N), endotoxin free
Sigma-Aldrich
盐酸 溶液, for amino acid analysis, ~6 M in H2O
Sigma-Aldrich
氧化氘, 99.9 atom % D, contains 0.75 wt. % 3-(trimethylsilyl)propionic-2,2,3,3-d4 acid, sodium salt
Sigma-Aldrich
过氧化氢 溶液, 34.5-36.5%
Sigma-Aldrich
硝酸, ACS reagent, ≥90.0%
Sigma-Aldrich
盐酸 溶液, 32 wt. % in H2O, FCC
Sigma-Aldrich
硝酸钠, 99.995% trace metals basis
Sigma-Aldrich
氧化氘, filtered, 99.8 atom % D
Sigma-Aldrich
氧化氘, 99.8 atom % D
Sigma-Aldrich
硝酸钡, 99.999% trace metals basis
Sigma-Aldrich
氧化氘, 99.9 atom % D, contains 1 % (w/w) 3-(trimethylsilyl)-1-propanesulfonic acid, sodium salt (DSS)
Sigma-Aldrich
硝酸钠, ≥99.0%, suitable for plant cell culture
Sigma-Aldrich
硝酸钠, BioUltra, ≥99.0% (T)
Sigma-Aldrich
氧化氘, 70 atom % D
Sigma-Aldrich
硝酸钠, BioXtra, ≥99.0%
Sigma-Aldrich
氧化氘, 60 atom % D
Sigma-Aldrich
硝酸-14N 溶液, ~10 N in H2O, 99.99 atom % 14N
Sigma-Aldrich
硝酸钠-14N, 99.95 atom % 14N
Sigma-Aldrich
高锰酸钾, LR, ≥99%