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1
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22144435558
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For examples, see: a
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For examples, see: a) A. Petitjean, H. Nieregarten, A. Van Dorsselaer, J.-M. Lehn, Angew. Chem. 2004, 116, 3781;
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Petitjean, A.1
Nieregarten, H.2
Van Dorsselaer, A.3
Lehn, J.-M.4
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3
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41649094864
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b) A. Petitjean, L. A. Cuccia, M. Schmutz, J.-M. Lehn, J. Org. Chem. 2008, 73, 2481;
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Petitjean, A.1
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4
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0000447945
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c) K. Oh, K.-S. Jeong, J. S. Moore, Nature 2001, 414, 889;
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Oh, K.1
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5
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0037140740
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d) T. Nishinaga, A. Tanatani, K. Oh, J. S. Moore, J. Am. Chem. Soc. 2002, 124, 5934;
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Nishinaga, T.1
Tanatani, A.2
Oh, K.3
Moore, J.S.4
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7
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-
59049085277
-
-
In this study, it is convenient to define oligosaccharides and linear polymeric molecules as host and guest, respectively
-
In this study, it is convenient to define oligosaccharides and linear polymeric molecules as "host" and "guest", respectively.
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-
-
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8
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33749838793
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a) T. Sanji, N. Kato, M. Kato, M. Tanaka, Angew. Chem. 2005, 117, 7467;
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Sanji, T.1
Kato, N.2
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10
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31544462051
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b) T. Sanji, N. Kato, M. Tanaka, Org. Lett. 2006, 8, 235;
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Sanji, T.1
Kato, N.2
Tanaka, M.3
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11
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34347248246
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c) T. Sanji, N. Kato, M. Tanaka, Macromolecules 2006, 39, 7508;
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Macromolecules
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Sanji, T.1
Kato, N.2
Tanaka, M.3
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12
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54549113279
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d) T. Sanji, N. Kato, M. Tanaka, Chem. Asian J. 2008, 3, 46.
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Chem. Asian J
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Sanji, T.1
Kato, N.2
Tanaka, M.3
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13
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0141609454
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a) A. Star, D. W. Steuerman, J. R. Heath, J. F. Stoddart, Angew. Chem. 2002, 114, 2618;
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Star, A.1
Steuerman, D.W.2
Heath, J.R.3
Stoddart, J.F.4
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15
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16844373815
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b) C. Li, M. Numata, A.-H. Bae, K. Sakurai, S. Shinkai, J. Am. Chem. Soc. 2005, 127, 4548;
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Li, C.1
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Sakurai, K.4
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17
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33646070936
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d) O.-K. Kim, J. Je, J. S. Melinger, J. Am. Chem. Soc. 2006, 128, 4532;
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J. Am. Chem. Soc
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Kim, O.-K.1
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Melinger, J.S.3
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18
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53849113933
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e) M. Ikeda, Y. Furusho, K. Okoshi, S. Tanahara, K. Maeda, S. Nishino, T. Mori, E. Yashima, Angew. Chem. 2006, 118, 6641;
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Ikeda, M.1
Furusho, Y.2
Okoshi, K.3
Tanahara, S.4
Maeda, K.5
Nishino, S.6
Mori, T.7
Yashima, E.8
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20
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45149112160
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f) M. J. Frampton, T. D. W. Claridge, G. Latini, S. Brovelli, F. Cacialli, H. L. Anderson, Chem. Commun. 2008, 2797.
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Frampton, M.J.1
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Brovelli, S.4
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Anderson, H.L.6
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23
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34547448298
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H. Goto, Y. Furusho, E. Yashima, J. Am. Chem. Soc. 2007, 129, 9168.
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J. Am. Chem. Soc
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Goto, H.1
Furusho, Y.2
Yashima, E.3
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24
-
-
0001385972
-
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PEG can form an inclusion complex with cyclodextrins, see: a
-
PEG can form an inclusion complex with cyclodextrins, see: a) A. Harada, M. Kamachi, Macromolecules 1990, 23, 2821;
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Macromolecules
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Harada, A.1
Kamachi, M.2
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25
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0000827460
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b) A. Harada, J. Li, M. Kamachi, Nature 1992, 356, 325.
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Nature
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Harada, A.1
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Kamachi, M.3
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26
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0035542907
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w = 97 kDa) catalyzes the enzymatic polymerization with the regio- and stereoselective construction of an α-glycosidic bond, which leads to the direct formation amylose, a α-(1 → 4)-glucan chain; a) S. Kobayashi, H. Uyama, S. Kimura, Chem. Rev. 2001, 101, 3793;
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w = 97 kDa) catalyzes the enzymatic polymerization with the regio- and stereoselective construction of an α-glycosidic bond, which leads to the direct formation amylose, a α-(1 → 4)-glucan chain; a) S. Kobayashi, H. Uyama, S. Kimura, Chem. Rev. 2001, 101, 3793;
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27
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0037253189
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b) S. Shoda, R. Izumi, M. Fujita, Bull. Chem. Soc. Jpn. 2003, 76, 1;
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Bull. Chem. Soc. Jpn
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Shoda, S.1
Izumi, R.2
Fujita, M.3
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28
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22744448866
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c) S. Kobayashi, M. Ohmae, S. Fujikawa, H. Ochiai, Macromol. Symp. 2005, 226, 147;
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Kobayashi, S.1
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Fujikawa, S.3
Ochiai, H.4
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31
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0035820003
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a) J. Kadokawa, Y. Kaneko, H. Tagaya, K. Chiba, Chem. Commun. 2001, 449;
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Chem. Commun
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Kadokawa, J.1
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0035845816
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b) J. Kadokawa, Y. Kaneko, A. Nakaya, H. Tagaya, Macromolecules 2001, 34, 6536.
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Macromolecules
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Kadokawa, J.1
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Tagaya, H.4
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33
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59049088785
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-
A small peak around 19 mL and a shoulder around 15 mL are due to uncomplexed Glc8-phos and phosphorylase, respectively. The tail on the peak in the GPC trace of Glc8 is probably due to a mixture of anomers.
-
A small peak around 19 mL and a shoulder around 15 mL are due to uncomplexed Glc8-phos and phosphorylase, respectively. The tail on the peak in the GPC trace of Glc8 is probably due to a mixture of anomers.
-
-
-
-
34
-
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59049107028
-
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The GPC and NMR data before and after filtration (pore size 0.45 μm) to avoid formation of aggregation show the same spectroscopic features.
-
The GPC and NMR data before and after filtration (pore size 0.45 μm) to avoid formation of aggregation show the same spectroscopic features.
-
-
-
-
36
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0010253696
-
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b) K. Tamao, H. Tsuji, M. Terada, M. Asahara, S. Yamaguchi, Angew. Chem. 2000, 112, 3425;
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Tamao, K.1
Tsuji, H.2
Terada, M.3
Asahara, M.4
Yamaguchi, S.5
-
38
-
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0000933543
-
-
The observed CD spectral feature is almost the same as that of chiral polysilanes in solution, see: a
-
The observed CD spectral feature is almost the same as that of chiral polysilanes in solution, see: a) M. Fujiki, J. Am. Chem. Soc. 1994, 116, 11976;
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(1994)
J. Am. Chem. Soc
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-
-
Fujiki, M.1
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40
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59049094423
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-
A preliminary experiment shows that eight sugar units in the oligosaccharide are not a critical length for wrapping the oligosilanes see the Supporting Information for details
-
A preliminary experiment shows that eight sugar units in the oligosaccharide are not a critical length for wrapping the oligosilanes (see the Supporting Information for details).
-
-
-
-
41
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18744371594
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a) T. Sanji, M. Kato, M. Tanaka, Macromolecules 2005, 38, 4034;
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Macromolecules
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Sanji, T.1
Kato, M.2
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0038818912
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b) T. Sanji, A. Yoshiwara, H. Sakurai, M. Tanaka, Chem. Commun. 2003, 1506.
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Chem. Commun
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Sanji, T.1
Yoshiwara, A.2
Sakurai, H.3
Tanaka, M.4
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