Vicent Cristian, Martinez-Agramunt Victor, Gandhi Viraj, Larriba-Andaluz Carlos, Gusev Dmitry G, Peris Eduardo
Servei Central d'Instrumentació Científica (SCIC), Universitat Jaume I, Avda. Sos Baynat s/n, 12006, Castellón, Spain.
Institute of Advanced Materials (INAM), Universitat Jaume I, Av. Vicente Sos Baynat s/n, 12071, Castellón, Spain.
Angew Chem Int Ed Engl. 2021 Jul 5;60(28):15412-15417. doi: 10.1002/anie.202100914. Epub 2021 Jun 10.
The encapsulation of the tetracationic palladium metallosquare with four pyrene-bis-imidazolylidene ligands [1] with a series of organic molecules was studied by Electrospray ionization Travelling Wave Ion-Mobility Mass Spectrometry (ESI TWIM-MS). The method allowed to determine the Collision Cross Sections (CCSs), which were used to assess the size changes experienced by the host upon encapsulation of the guest molecules. When fullerenes were used as guests, the host is expanded ΔCCS 13 Å and 23 Å , for C or C , respectively. The metallorectangle [1] was also used for the encapsulation of a series of polycyclic aromatic hydrocarbons (PAHs) and naphthalenetetracarboxylic diimide (NTCDI), to form complexes of formula [(NTCDI) (PAH)@1] . For these host:guest adducts, the ESI IM-MS studies revealed that [1] is expanded by 47-49 Å .. The energy-minimized structures of [1] , [C @1] , [C @1] , [(NTCDI) (corannulene)@1] in the gas phase were obtained by DFT calculations.Introduction.
通过电喷雾电离行波离子迁移率质谱法(ESI TWIM-MS)研究了带有四个芘-双-咪唑啉亚基配体的四阳离子钯金属方[1]与一系列有机分子的包封情况。该方法能够测定碰撞截面(CCS),用于评估主体在包封客体分子时所经历的尺寸变化。当使用富勒烯作为客体时,对于C或C,主体分别膨胀ΔCCS 13 Å和23 Å。金属矩形[1]还用于包封一系列多环芳烃(PAH)和萘四羧酸二亚胺(NTCDI),以形成式[(NTCDI)(PAH)@1]的配合物。对于这些主体:客体加合物,ESI IM-MS研究表明[1]膨胀了47 - 49 Å。通过密度泛函理论(DFT)计算获得了气相中[1]、[C@1]、[C@1]、[(NTCDI)(碗烯)@1]的能量最小化结构。引言。