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Ground and valence excited states of BI: A MR-CISD+Q study

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The Journal of Chemical Physics 120 (16) 7470 (2004)
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The Cameron system of boron monofluoride, BF

J Lebreton, J Ferran and L Marsigny
Journal of Physics B: Atomic and Molecular Physics 8 (17) L465 (1975)
DOI: 10.1088/0022-3700/8/17/006
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Rotational analysis of the a3Π(0+, 1) → X1Σ+ system of 11BI

J.A. Coxon and S. Naxakis
Journal of Molecular Spectroscopy 121 (2) 453 (1987)
DOI: 10.1016/0022-2852(87)90062-2
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Electronically Excited States of Borylenes

Małgorzata Krasowska, Marc Edelmann and Holger F. Bettinger
The Journal of Physical Chemistry A 120 (32) 6332 (2016)
DOI: 10.1021/acs.jpca.6b04502
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Photochemical reactions of some boron trihalides

A. G. Briggs and R. E. Simmons
Naturwissenschaften 67 (8) 402 (1980)
DOI: 10.1007/BF00405483
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Extension of Gaussian‐2 (G2) theory to bromine‐ and iodine‐containing molecules: Use of effective core potentials

Mikhail N. Glukhovtsev, Addy Pross, Mark P. McGrath and Leo Radom
The Journal of Chemical Physics 103 (5) 1878 (1995)
DOI: 10.1063/1.469712
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The a3Πr-X1Σ+ transition of BI

J. Lebreton, J. Ferran, E. Mahieu, I. Dubois and H. Bredohl
Journal of Molecular Spectroscopy 141 (1) 145 (1990)
DOI: 10.1016/0022-2852(90)90284-W
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Electronic Absorption Spectra of Transient Boron-Sulphur Species in the Gas Phase

A. G. Briggs and R. E. Simmons
Spectroscopy Letters 19 (8) 953 (1986)
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Possible intermediates in the discharge synthesis of diboron tetrahalides

A.G. Briggs, A.G. Massey, M.S. Reason and P.J. Portal
Polyhedron 3 (3) 369 (1984)
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Accurate ab initio investigation of the ground and some low-lying electronic states of boron monoiodide, BI, and its ions BI+ and BI−

Marios-Peter Kitsaras and Aristotle Papakondylis
Chemical Physics Letters 692 367 (2018)
DOI: 10.1016/j.cplett.2017.12.036
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The a(3Π0+, 3Π1) → X1Σ+ visible band systems of boron monoiodide, BI

J.A. Coxon and S. Naxakis
Chemical Physics Letters 117 (3) 229 (1985)
DOI: 10.1016/0009-2614(85)80209-8
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