Kubo Mayuko, Goda Ryosuke, Muramatsu Satoru, Inokuchi Yoshiya
Department of Chemistry, Graduate School of Advanced Science and Engineering, Hiroshima University, Higashi-Hiroshima 739-8526, Japan.
J Phys Chem A. 2024 Sep 5;128(35):7353-7363. doi: 10.1021/acs.jpca.4c02121. Epub 2024 Aug 21.
We examined the conformation of benzo-15-crown-5 (B15C5) and benzo-18-crown-6 (B18C6) complexes with ammonium ions, NH, CHNH (MeNH), CHCHNH (EtNH), and CHCHCHNH (PrNH), using cold UV and IR spectroscopy in the gas phase. We measured the UV photodissociation (UVPD) spectra of the ammonium complexes and compared them with those of the K(B15C5) and K(B18C6) complexes in order to identify the conformation on the basis of the band position. The number of possible conformations for the ammonium complexes of B15C5 is limited compared with alkali metal ions with similar ionic radii. The NH(B15C5), MeNH(B15C5), and EtNH(B15C5) complexes show two conformers, whereas the K(B15C5) complex has three stable conformers. In the case of the PrNH(B15C5) complex, one conformer was found predominantly in the UVPD spectrum. The ammonium complexes of B15C5 prefer to adopt crown conformations with large dihedral angles on the C-O-C-C atoms around the benzene moiety. In the case of the ammonium complexes of B18C6, two or three conformers were found in the UVPD spectra. One conformation of the B18C6 complexes is similar to that of the K(B18C6) complex, which has a planar form on the C-O-C-C atoms around the benzene moiety. The other but dominant conformations of the ammonium complexes could be attributed to those with large C-O-C-C dihedral angles. These conformational findings for the ammonium complexes suggest that the benzo-crown ethers tend to adopt nonplanar conformations around the benzene moiety to encapsulate the ammonium ions. The IR-UV double-resonance (DR) spectra of the B15C5 and B18C6 complexes were compared to those of benzo-12-crown-4 (B12C4) and dibenzo-18-crown-6 (DB18C6) complexes. The N-H···O hydrogen bond (H-bond) is weaker with increasing ring size from B12C4 to B18C6, although the calculated binding energy is smaller for B12C4 than for B18C6. This result indicates that cooperative H-bonds with three N-H groups can strengthen the intermolecular bond between the ammonium ions and B18C6. The difference in the conformational preference between the ammonium and K complexes is attributed to directed N-H···O H-bonds in the ammonium complexes. Proton transfer and dissociation of the crown ring were also observed for the photoexcitation of the NH(B15C5) and NH(B18C6) complexes.
我们在气相中使用冷紫外光谱和红外光谱研究了苯并 - 15 - 冠 - 5(B15C5)和苯并 - 18 - 冠 - 6(B18C6)与铵离子NH、CHNH(MeNH)、CHCHNH(EtNH)以及CHCHCHNH(PrNH)形成的配合物的构象。我们测量了铵配合物的紫外光解离(UVPD)光谱,并将其与K(B15C5)和K(B18C6)配合物的光谱进行比较,以便根据谱带位置确定构象。与具有相似离子半径的碱金属离子相比,B15C5铵配合物的可能构象数量有限。NH(B15C5)、MeNH(B15C5)和EtNH(B15C5)配合物显示出两种构象,而K(B15C5)配合物有三种稳定构象。对于PrNH(B15C5)配合物,在UVPD光谱中主要发现一种构象。B15C5的铵配合物倾向于在苯环部分周围的C - O - C - C原子上采用具有大的二面角的冠醚构象。对于B18C6的铵配合物,在UVPD光谱中发现了两种或三种构象。B18C6配合物的一种构象与K(B18C6)配合物的构象相似,即在苯环部分周围的C - O - C - C原子上具有平面形式。铵配合物的其他但占主导的构象可归因于具有大的C - O - C - C二面角的构象。铵配合物的这些构象研究结果表明,苯并冠醚倾向于在苯环部分周围采用非平面构象来包封铵离子。将B15C5和B18C6配合物的红外 - 紫外双共振(DR)光谱与苯并 - 12 - 冠 - 4(B12C4)和二苯并 - 18 - 冠 - 6(DB18C6)配合物的光谱进行了比较。从B12C4到B18C6,随着环尺寸的增加,N - H···O氢键(H键)变弱,尽管计算得到的B12C4的结合能比B18C6的小。该结果表明,具有三个N - H基团的协同H键可以增强铵离子与B18C6之间的分子间键。铵配合物和K配合物之间构象偏好的差异归因于铵配合物中定向的N - H···O H键。对于NH(B15C5)和NH(B18C6)配合物光激发,还观察到了冠醚环的质子转移和解离。