The laser-induced fluorescence excitation, dispersed fluorescence, and IR-UV double resonance spectra of chiral (±)-indan-1-ol have been measured in a supersonic expansion. Three low energy conformers of the molecule have been identified, and the ground state vibrational modes of each conformer are tentatively assigned with the aid of quantum chemistry calculations. The frequencies of the ν(OH) and ν(CH) stretch modes of the two most abundant conformers have been measured by fluorescence dip IR spectroscopy and have been used for their assignment. The dispersed fluorescence spectra clearly indicate the coupling of low-frequency modes, as was seen in other substituted indanes such as 1-aminoindan and 1-amino-2-indanol. (R)- and (S)-indan-1-ol distinctly form different types of clusters with (R)- and (S)- methyl- and ethyl-lactate. Both hetero- and homochiral clusters are characterized by complex spectra which exhibit a progression built on low-frequency intermolecular modes.

1.
J. M.
Hollas
and
E.
Khailipour
,
J. Mol. Spectrosc.
77
,
124
(
1979
).
2.
T. L.
Smithson
,
J. A.
Duckett
, and
H.
Weiser
,
J. Phys. Chem.
88
,
1102
(
1984
).
3.
K. H.
Hassan
and
J. M.
Hollas
,
Chem. Phys. Lett.
169
,
179
(
1990
).
4.
K. H.
Hassan
and
J. M.
Hollas
,
Chem. Phys. Lett.
157
,
183
(
1989
).
5.
J.
Zhang
,
W. Y.
Chiang
, and
J.
Laane
,
J. Chem. Phys.
100
,
3455
(
1994
).
6.
T.
Klots
,
S. N.
Lee
, and
J.
Laane
,
J. Phys. Chem.
103
,
833
(
1999
).
7.
M. J.
Watkins
,
D. E.
Belcher
, and
M. C. R.
Cockett
,
J. Chem. Phys.
116
,
7855
(
2002
).
8.
A.
Das
,
K. K.
Mahato
,
S. S.
Panja
, and
T.
Chakraborty
,
J. Chem. Phys.
119
,
2523
(
2003
).
9.
D.
Scuderi
,
A.
Paladini
,
M.
Satta
,
D.
Catone
,
S.
Piccirillo
,
M.
Speranza
, and
A.
Giardini-Guidoni
,
Phys. Chem. Chem. Phys.
4
,
4999
(
2002
).
10.
K.
Le Barbu-Debus
,
F.
Lahmani
,
A.
Zehnacker-Rentien
, and
N.
Guchhait
,
Phys. Chem. Chem. Phys.
8
,
1001
(
2006
).
11.
K.
Le Barbu-Debus
,
F.
Lahmani
,
A.
Zehnacker-Rentien
, and
N.
Guchhait
,
Chem. Phys. Lett.
422
,
218
(
2006
).
12.
G. R.
Desiraju
and
T.
Steiner
,
The Weak Hydrogen Bond in Structural Chemistry and Biology
(
Oxford University Press
,
Oxford
,
1999
).
13.
T. M.
Fong
,
M. A.
Cascieri
,
H.
Yu
,
A.
Bansal
,
C.
Swain
, and
C. D.
Strader
,
Nature (London)
363
,
350
(
1993
).
14.
J.
Laane
,
J. Phys. Chem. A
104
,
7715
(
2000
).
15.
J.
Laane
, in
Structures and Conformations of Non-rigid Molecules
, edited by
J.
Laane
,
M.
Dakkouri
,
B.
van der Veken
, and
H.
Oberhammer
(
Elsevier
,
Amsterdam
,
1993
), Chap. 4.
16.
M. J.
Watkins
,
D. E.
Belcher
, and
M. C. R.
Cockett
,
J. Chem. Phys.
116
,
7868
(
2002
).
17.
E.
Bondoc
,
T.
Klots
, and
J.
Laane
,
J. Phys. Chem. A
104
,
275
(
2000
).
18.
Z.
Arp
,
N.
Meinander
,
J.
Choo
, and
J.
Laane
,
J. Chem. Phys.
116
,
6648
(
2002
).
19.
K. H.
Hassan
and
J. M.
Hollas
,
J. Mol. Spectrosc.
147
,
100
(
1991
).
20.
M.
Amat
,
O.
Bassas
,
M. A.
Pericas
,
M.
Pasto
, and
J.
Bosch
,
Chem. Commun. (Cambridge)
2005
,
1327
.
21.
K.
Kinbara
,
Y.
Kobayashi
, and
K.
Saigo
,
J. Chem. Soc., Perkin Trans. 2
2000
,
111
.
22.
M.
Masui
and
T.
Shioii
,
Tetrahedron Lett.
39
,
5195
(
1998
).
23.
D.
Consalvo
,
A.
Van der Avoird
,
S.
Piccirillo
,
M.
Coreno
,
A.
Giardini-Guidoni
,
A.
Mele
, and
M.
Snels
,
J. Chem. Phys.
99
,
8398
(
1993
).
24.
K.
Le Barbu-Debus
,
N.
Seurre
,
F.
Lahmani
, and
A.
Zehnacker-Rentien
,
Phys. Chem. Chem. Phys.
4
,
4866
(
2004
).
25.
N.
Borho
,
T.
Haber
, and
M. A.
Suhm
,
Phys. Chem. Chem. Phys.
3
,
1945
(
2001
).
26.
M.
Mons
,
F.
Piuzzi
,
I.
Dimicoli
,
A.
Zehnacker-Rentier
, and
F.
Lahmani
,
Phys. Chem. Chem. Phys.
2
,
5065
(
2000
);
K.
Le Barbu-Debus
,
A.
Zehnacker-Rentien
,
F.
Lahmani
,
M.
Mons
,
F.
Piuzzi
, and
I.
Dimicoli
,
Chirality
13
,
715
(
2001
).
[PubMed]
27.
D.
Catone
,
A.
Giardini-Guidoni
,
A.
Paladini
,
S.
Piccirillo
,
F.
Rondino
,
M.
Satta
,
D.
Scuderi
, and
M.
Speranza
,
Angew. Chem.
43
,
1868
(
2004
).
28.
A.
Latini
,
D.
Toja
,
A.
Giardini-Guidoni
,
S.
Piccirillo
, and
M.
Speranza
,
Angew. Chem., Int. Ed.
38
,
815
(
1999
).
29.
F.
Lahmani
,
K.
Le Barbu-Debus
, and
A.
Zehnacker-Rentien
,
J. Phys. Chem. A
103
,
1991
(
1999
).
30.
D.
Scuderi
,
A.
Paladini
,
M.
Satta
,
D.
Catone
,
F.
Rondino
,
M.
Tacconi
,
A.
Filippi
,
S.
Piccirillo
,
M.
Speranza
, and
A.
Giardini-Guidoni
,
Phys. Chem. Chem. Phys.
5
,
4370
(
2003
).
31.
K.
Le Barbu-Debus
,
F.
Lahmani
, and
A.
Zehnacker-Rentien
,
J. Phys. Chem. A
106
,
6271
(
2002
).
32.
C. K.
Nandi
,
M. K.
Hazra
, and
T.
Chakraborty
,
J. Chem. Phys.
123
,
124310
(
2005
).
33.
N.
Seurre
,
K.
Le Barbu-Debus
,
F.
Lahmani
,
A.
Zehnacker-Rentien
, and
J.
Sepiol
,
Chem. Phys.
295
,
21
(
2003
).
34.
M. J.
Frisch
,
G. W.
Trucks
,
H. B.
Schlegel
 et al., GAUSSIAN 98, Revision A. 9,
Gaussian, Inc.
, Pittsburgh, PA,
1998
.
35.
G. J.
Small
,
J. Chem. Phys.
54
,
3300
(
1971
).
36.
W. L.
Smith
,
J. Mol. Spectrosc.
187
,
6
(
1998
).
37.
G. M.
Sando
,
K. G.
Spears
, and
J. T.
Hupp
,
J. Phys. Chem. A
105
,
5317
(
2001
).
38.
R. S.
Ruoff
,
T. D.
Klots
,
T.
Emilson
, and
H. S.
Gutowsky
,
J. Chem. Phys.
93
,
3124
(
1990
).
39.
K.
Le Barbu-Debus
,
V.
Brenner
,
Ph.
Millié
,
F.
Lahmani
, and
A.
Zehnacker-Rentien
,
J. Phys. Chem. A
102
,
128
(
1998
).
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