References
43
68. A. Kato, A. Tohsan, S. Kohjiya, T. Phakkeeree, P. Phinyocheep, Y. Ikeda, in Progress in Rubber
Nanocomposites, Chap. 12, ed. by S. Thomas, H.J. Maria (Woodhead/Elsevier, Amsterdam,
2017)
69. T. Ohashi, A. Tohsan, Y. Ikeda, Polym. Int. 66, 250 (2017)
70. S. Yamashita, S. Kohjiya, in Wood Processing and Utilization, Chap. 23, ed. by J. F. Kennedy,
G.O. Phillips, P.A. Williams (Ellis Horwood, Chichester, 1989)
71. Y. Ikeda, T. Phakkeeree, P. Junkong, H. Yokohama, P. Phinyocheep, R. Kitano, A. Kato, RSC
Adv. 7, 5222 (2017)
72. World Commission on Environment and Development, Our Common Future (Oxford
University Press, Oxford, 1987)
73. E.B. Barbier, Natural Resources and Economic Development (Cambridge University Press,
Cambridge, 2005)
74. J.W. Tester, E.M. Drake, M.W. Golay, M.J. Driscoll, W.A. Peters, Sustainable Energy:
Choosing among Options (MIT Press, Cambridge, MA, 2005)
75. E. Dinjus, U. Arnold, N. Dahmen, R. Hoefer, W. Wach, in Sustainable Solutions for Modern
Economics, Chap. 8, ed. by R. Hoefer (RSC Publishing, Cambridge, 2009)
76. K.C. Baranwal, in Vignettes from the International Rubber Science Hall of Fame 1958–1988:
36 Major Contributors to Rubber Science, ed. by B.N. Zimmerman (Rubber Division of
American Chemical Society, Akron, 1989), pp. 170–177
77. J.H. Fielding, Ind. Eng. Chem. 29, 880 (1937)
78. D.F. Twiss, J. Soc. Chem. Ind. 44, 106T (1925)
79. K. Fujimoto, Nippon Gomu Kyokaishi 37, 602 (1964) (in Japanese)
80. S. Fujiwara, K. Fujimoto, Rubber Chem. Technol. 44, 1273 (1971)
81. B. Bueche, J. Appl. Polym. Sci. 5, 271 (1961)
82. J. Furukawa, Nippon Gomu Kyokaishi 30, 909 (1957) (in Japanese)
83. L.L. Ban, W.M. Hess, L.A. Papazian, Rubber Chem. Technol. 47, 858 (1974)
84. M. Klüppel, Adv. Polym. Sci. 164, 1 (2003)
85. A.R. Payne, in Reinforcement of Elastomers, Chap. 3, ed. by G. Kraus (Interscience, New
York, 1965)
86. A. Einstein, Ann. Phys. 17, 549 (1905) (Title of this paper is “On the movement of small
particles suspended in stationary liquids required by the molecular-kinetic theory of heat”)
87. J. Stachel (ed.), Einstein’s Miraculous Year: Five Papers that Changed the Face of Physics
(Princeton University Press, Princeton, 1998)
88. J.S. Ligden, EINSTEIN 1995: The Standard of Greatness (Harvard University Press,
Cambridge, MA, 2005)
89. J. Renn, Ann. Phys. (Leipzig) 14(S1, Supplement) (2005), Einstein’s Annalen Papers, 23 (This
supplemental issue was published to commemorate the pathbreaking papers of Einstein’s
annus mirabilis 1905, which had changed our understanding of space, time, and radiation.
Renn begins his review paper by “Einstein’s 1905 paper on Brownian motion was an essential
contribution to the foundation of modern atomism [20].” Here, Ref. [86] shown above is cited
as 20)
90. A. Einstein, Ann. Phys. 19, 758 (1906)
91. A. Einstein, Ann. Phys. 34, 289 (1911)
92. A. Einstein, Ann. Phys. 34, 591 (1911) (error correction)
93. A. Einstein, in Investigations on the Theory of the Brownian Movement, edited with notes
by R. Fürth, translated by A.D. Cowper (Dover, New York, 1956) (This book is the English
translation of the original German version published in 1926. The explanation of Eq. (2.1) by
Einstein in the text is taken from p. 54 of this book)
94. R.M. Mazo, Brownian Motion: Fluctuations, Dynamics and Applications, Chap. 1 (Clarendon
Press, Oxford, 2002)
95. J. Perrin, C. R. Acad. Sci. (Paris) 147, 475, 530 (1908)
96. J. Perrin, Ann. Chim. Phys. 18, 1 (1909)
97. M.J. Nye (ed.), The Question of the Atom: From the Karlsruhe Congress to the First Solvay
Conference, 1860–1911 (Tomash Publishers, Los Angeles, 1984) (Contributions of Einstein
and Perrin to atomism are described in Chaps. 18 and 20, respectively)
43
68. A. Kato, A. Tohsan, S. Kohjiya, T. Phakkeeree, P. Phinyocheep, Y. Ikeda, in Progress in Rubber
Nanocomposites, Chap. 12, ed. by S. Thomas, H.J. Maria (Woodhead/Elsevier, Amsterdam,
2017)
69. T. Ohashi, A. Tohsan, Y. Ikeda, Polym. Int. 66, 250 (2017)
70. S. Yamashita, S. Kohjiya, in Wood Processing and Utilization, Chap. 23, ed. by J. F. Kennedy,
G.O. Phillips, P.A. Williams (Ellis Horwood, Chichester, 1989)
71. Y. Ikeda, T. Phakkeeree, P. Junkong, H. Yokohama, P. Phinyocheep, R. Kitano, A. Kato, RSC
Adv. 7, 5222 (2017)
72. World Commission on Environment and Development, Our Common Future (Oxford
University Press, Oxford, 1987)
73. E.B. Barbier, Natural Resources and Economic Development (Cambridge University Press,
Cambridge, 2005)
74. J.W. Tester, E.M. Drake, M.W. Golay, M.J. Driscoll, W.A. Peters, Sustainable Energy:
Choosing among Options (MIT Press, Cambridge, MA, 2005)
75. E. Dinjus, U. Arnold, N. Dahmen, R. Hoefer, W. Wach, in Sustainable Solutions for Modern
Economics, Chap. 8, ed. by R. Hoefer (RSC Publishing, Cambridge, 2009)
76. K.C. Baranwal, in Vignettes from the International Rubber Science Hall of Fame 1958–1988:
36 Major Contributors to Rubber Science, ed. by B.N. Zimmerman (Rubber Division of
American Chemical Society, Akron, 1989), pp. 170–177
77. J.H. Fielding, Ind. Eng. Chem. 29, 880 (1937)
78. D.F. Twiss, J. Soc. Chem. Ind. 44, 106T (1925)
79. K. Fujimoto, Nippon Gomu Kyokaishi 37, 602 (1964) (in Japanese)
80. S. Fujiwara, K. Fujimoto, Rubber Chem. Technol. 44, 1273 (1971)
81. B. Bueche, J. Appl. Polym. Sci. 5, 271 (1961)
82. J. Furukawa, Nippon Gomu Kyokaishi 30, 909 (1957) (in Japanese)
83. L.L. Ban, W.M. Hess, L.A. Papazian, Rubber Chem. Technol. 47, 858 (1974)
84. M. Klüppel, Adv. Polym. Sci. 164, 1 (2003)
85. A.R. Payne, in Reinforcement of Elastomers, Chap. 3, ed. by G. Kraus (Interscience, New
York, 1965)
86. A. Einstein, Ann. Phys. 17, 549 (1905) (Title of this paper is “On the movement of small
particles suspended in stationary liquids required by the molecular-kinetic theory of heat”)
87. J. Stachel (ed.), Einstein’s Miraculous Year: Five Papers that Changed the Face of Physics
(Princeton University Press, Princeton, 1998)
88. J.S. Ligden, EINSTEIN 1995: The Standard of Greatness (Harvard University Press,
Cambridge, MA, 2005)
89. J. Renn, Ann. Phys. (Leipzig) 14(S1, Supplement) (2005), Einstein’s Annalen Papers, 23 (This
supplemental issue was published to commemorate the pathbreaking papers of Einstein’s
annus mirabilis 1905, which had changed our understanding of space, time, and radiation.
Renn begins his review paper by “Einstein’s 1905 paper on Brownian motion was an essential
contribution to the foundation of modern atomism [20].” Here, Ref. [86] shown above is cited
as 20)
90. A. Einstein, Ann. Phys. 19, 758 (1906)
91. A. Einstein, Ann. Phys. 34, 289 (1911)
92. A. Einstein, Ann. Phys. 34, 591 (1911) (error correction)
93. A. Einstein, in Investigations on the Theory of the Brownian Movement, edited with notes
by R. Fürth, translated by A.D. Cowper (Dover, New York, 1956) (This book is the English
translation of the original German version published in 1926. The explanation of Eq. (2.1) by
Einstein in the text is taken from p. 54 of this book)
94. R.M. Mazo, Brownian Motion: Fluctuations, Dynamics and Applications, Chap. 1 (Clarendon
Press, Oxford, 2002)
95. J. Perrin, C. R. Acad. Sci. (Paris) 147, 475, 530 (1908)
96. J. Perrin, Ann. Chim. Phys. 18, 1 (1909)
97. M.J. Nye (ed.), The Question of the Atom: From the Karlsruhe Congress to the First Solvay
Conference, 1860–1911 (Tomash Publishers, Los Angeles, 1984) (Contributions of Einstein
and Perrin to atomism are described in Chaps. 18 and 20, respectively)
