Institute for Energy Problems of Chemical Physics, Russian Academy of Sciences , Leninskij pr. 38 k.2, 119334 Moscow, Russia.
Anal Chem. 2014 Mar 4;86(5):2595-600. doi: 10.1021/ac4038202. Epub 2014 Feb 14.
We present the investigation of hydrogen/deuterium (H/D) exchange of carbohydrates ions occurring in the electrospray ion source. The shape of the deuterium distribution was observed to be considerably dependent on the temperature of the ion transfer tube and the solvent used. If deuterated alcohol (EtOD or MeOD) or D2O/deuterated alcohol is used as an electrospray solvent, then for high temperatures (>350 °C), intensive back exchange is observed, resulting in ∼30% depth of the deuterium exchange. At low temperatures (<150 °C), the back exchange is weaker and the depth of the deuterium exchange is ∼70%. In the intermediate temperature region (∼250 °C), the deuterium distribution is unusually wide for methanol and bimodal for ethanol. The addition of 1% formic acid results in low (∼30%) depth of the deuterium exchange for any temperature in the operating region. The bimodal distribution for the ethanol can be possibly explained by the presence of differently folded gas-phase ions of carbohydrates.
我们研究了电喷雾离子源中碳水化合物离子的氢/氘(H/D)交换。观察到氘分布的形状在很大程度上取决于离子转移管的温度和所用的溶剂。如果使用氘代醇(EtOD 或 MeOD)或 D2O/氘代醇作为电喷雾溶剂,那么在高温(>350°C)下,会观察到强烈的反向交换,导致氘交换的深度约为 30%。在低温(<150°C)下,反向交换较弱,氘交换的深度约为 70%。在中间温度区域(约 250°C),甲醇的氘分布异常宽,乙醇的氘分布呈双峰。在操作区域的任何温度下,添加 1%甲酸都会导致氘交换的深度较低(约 30%)。乙醇的双峰分布可能可以通过碳水化合物的不同折叠气相离子的存在来解释。