Rotational Spectra and Search for Aromatic Imines: 9-Iminofluorene and Benzophenone imine

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Main Authors: Ren, Huanyu, Stewart, D. Archie, Wenzel, Gabi, Speak, Thomas H., Holdren, Martin S., Willis, Reace H. J., McGuire, Brett A.
Format: Preprint
Published: 2025
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author Ren, Huanyu
Stewart, D. Archie
Wenzel, Gabi
Speak, Thomas H.
Holdren, Martin S.
Willis, Reace H. J.
McGuire, Brett A.
author_facet Ren, Huanyu
Stewart, D. Archie
Wenzel, Gabi
Speak, Thomas H.
Holdren, Martin S.
Willis, Reace H. J.
McGuire, Brett A.
contents Interstellar detections of several cyano derivatives of large polycyclic aromatic hydrocarbons (PAHs) have now been achieved, enabled by accurate laboratory measurements of their microwave rotational spectra. These results highlight the continued promise of other N-containing unsaturated PAHs, such as aromatic imines, as candidates for future laboratory studies and astronomical searches. In this work, we present broadband spectroscopic measurements of 9-iminofluorene and benzophenone imine in the 6-18\,GHz band. These measurements yield accurate rotational, centrifugal distortion, and $^{14}$N quadrupole coupling constants for both molecules. Using these experimentally-derived constants, we attempted a search for both molecules in the cold molecular cloud TMC-1 using observations from the Green Bank Telescope (GBT). Neither of these two ketimines was detected above the current noise level, establishing upper limits for their column densities of $5.1\times10^{12}\,\text{cm}^{-2}$ for 9-iminofluorene and $1.3\times10^{13}\,\text{cm}^{-2}$ for benzophenone imine. We also attempted a search for phenylmethanimine (both E/Z isomers) as the simplest aromatic aldimine, but neither was detected in TMC-1. To provide insight into these non-detections, we propose and evaluate different formation pathways using respective potential energy surfaces as determined by high-precision quantum chemical calculations. The result suggests the presence of an entrance barrier to forming the intermediate species, potentially explaining the low abundance.
format Preprint
id arxiv_https___arxiv_org_abs_2512_06579
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Rotational Spectra and Search for Aromatic Imines: 9-Iminofluorene and Benzophenone imine
Ren, Huanyu
Stewart, D. Archie
Wenzel, Gabi
Speak, Thomas H.
Holdren, Martin S.
Willis, Reace H. J.
McGuire, Brett A.
Astrophysics of Galaxies
Interstellar detections of several cyano derivatives of large polycyclic aromatic hydrocarbons (PAHs) have now been achieved, enabled by accurate laboratory measurements of their microwave rotational spectra. These results highlight the continued promise of other N-containing unsaturated PAHs, such as aromatic imines, as candidates for future laboratory studies and astronomical searches. In this work, we present broadband spectroscopic measurements of 9-iminofluorene and benzophenone imine in the 6-18\,GHz band. These measurements yield accurate rotational, centrifugal distortion, and $^{14}$N quadrupole coupling constants for both molecules. Using these experimentally-derived constants, we attempted a search for both molecules in the cold molecular cloud TMC-1 using observations from the Green Bank Telescope (GBT). Neither of these two ketimines was detected above the current noise level, establishing upper limits for their column densities of $5.1\times10^{12}\,\text{cm}^{-2}$ for 9-iminofluorene and $1.3\times10^{13}\,\text{cm}^{-2}$ for benzophenone imine. We also attempted a search for phenylmethanimine (both E/Z isomers) as the simplest aromatic aldimine, but neither was detected in TMC-1. To provide insight into these non-detections, we propose and evaluate different formation pathways using respective potential energy surfaces as determined by high-precision quantum chemical calculations. The result suggests the presence of an entrance barrier to forming the intermediate species, potentially explaining the low abundance.
title Rotational Spectra and Search for Aromatic Imines: 9-Iminofluorene and Benzophenone imine
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2512.06579