Nägeli, C.V., Die Starkokörner, F. Schultluch. Zurich 1858.
2.
Nägeli, C.V. and Schwendener , S., Das Mikroskop , 2 Aufl., W. Englemann, Leipzig1877.
3.
Gilson, E., La Cellule, 9, 337 (1893).
4.
Johnson, D.S. , Botan. Gaz., 20, 16 (1895).
5.
THE TRANSMISSION OF X-RAYS THROUGH FIBROUS, LAMELLAR AND GRANULAR SUBSTANCES. Nishikawa, S. and Ono, S., Proc. Math. Phys. Soc. Tokyo, 7, 131 (1913).
6.
SPECTRUM OF X-RAYS OBTAINED BY MEANS OF LAMELLAR OR FIBROUS SUBSTANCES. Nishikawa, S., Proc. Math. Phys. Soc. Tokyo , 7, 296 (1914).
7.
PHOTOGRAPHY OF X-RAY SPECTRA, de Broglie, M., Compl. rend. , 157, 924 (1913).
8.
INTERFERENCE OF X-RAYS USING IRREGULARLY ORIENTED PARTICLES. Debye, P. and Scherrer, P.
9.
Z. Physik., 17, 277 (1916).
10.
Nachs. Gisell. Wiss. Gottingen (1916), p. 16.
11.
III. Z. Physik., 18, 291 (1917).
12.
THE SIMULTANEOUS ACTION OF DOUBLE REFRACTION BY RODS. Ambronn, II., Kolloid Z., 18, 273-81 (1916).
13.
ESTIMATION OF THE SIZE AND INTERNAL STRUCTURE OF COLLOIDAL PARTICLES BY MEANS OF X RAYS. RAYS. Scherrer, P., Nachs. Gissel. Wiss. Gottingen (1918), p. 98.
14.
Zsigmondy, R. , Lehrbach der Kolloidchemie. 3. Aufl., O. Spamer, Leipzig ( 1920), p. 408.
15.
X-RAY SPECTROSCOPIC INVESTIGATION ON CELLULOSE. Herzog. R.O. and Jancke, W., Z. Physik., 3, 196-8 (1920).
16.
PHYSICAL STRUCTURE OF SOME ORGANIC COMPOUNDS OF HIGH MOLECULAR WEIGHT. Herzog, R.O. and Jancke, W., Ber., 53B, 2162-4 (1920).
17.
X-RAY SPECTROSCOPIC INVESTIGARIONS ON CELLULOSE, II. Herzog, R.O., Jancke, W. and Polanyi, M.Z. Physik., 3, 343 (1920).
18.
THE X-RAY FIBER DIAGRAM. Polanyi, M., Z. Physik. , 7, 149-80 (1921).
19.
FIBER STRUCTURE IN THE LIGHT OF X-RAYS. Polanyi, M., Naturwissenchaften, 9, 337 (1921).
20.
RÖNTGEN-SPECTROGRAPHIC INVESTIGATION OF CELLULOSE. Herzog, R.O., Cellulosechemie, 2, 101-2 (1921),
21.
THE CHEMICAL CONSTITUTION OF CELLULOSE. Polanyi, M., Naturwissenschaften . 9, 288 (1921).
22.
X-RAY SPECTROSCOPIC INVESTIGATION OF HIGH MOLECULAR ORGANIC COMPOUNDS. Herzog, R.O. and Jancke, W., Z. für angew. Chem., 34, 385 (1921).
23.
THE UTILIZATION OF X-RAY IN THE EXAMINATION OF TEXTILES. Truesdale, R. and Hayes, C., J. Textile Inst., 12, 418-9 (1921).
24.
THE X RAY FIBER DIAGRAM. Polanyi, M. and Wissenberg, K., Z. Physik. , 9, 123; 9, 180; 10, 44 (1922).
25.
THE STRUCTURE OF STARCH GRAINS. Sponsler, O.L., Am. J. Botany , 9, 471-92 (1922).
26.
THE DEFORMATION OF CELLULOSE. Herzog, R.O., Papierfabr ., 21, 388-9 (1923).
27.
CELLULOSE. Hess, K., Weltzien , W. and Messmer, Ann., 435, 1-144 (1923).
28.
STRUCTURAL UNITS OF STARCH DETERMINED BY X-RAY CRYSTAL STRUCTURE METHOD. Sponsler, O.L., J. Gen. Physiol., 5, 757-76 (1923).
29.
Silk Fibroin. I.Brill, R., Ann., 434, 204-17 (1923).
30.
X RAY OBSERVATIONS ON CELLULOSE. III. Gonell, II. W., Z. Physik. , 23, 118-20 (1924).
31.
X RAY INVESTIGATION OF SUBSTANCES WHICH GIVE A FIBROUS DIAGRAM . Katz, J.R. , Z. Physik., 25, 321 (1924).
32.
X RAY REFLECTION FROM VERY THIN CRYSTALS. Sponsler, O.L., Phys. Rev., 23, 662 (1924)
33.
X RAY SPECTROPHOTOGRAPHIC COMPARISON OF TUNICIN WITH CELLULOSE . Herzog, R.O. and Gonell, H.W., Z. Physiol. Chem., 141, 63-7 (1924).
34.
THE FINE STRUCTURE OF ARTIFICIAL SILK. Herzog, R.O. and Gonell, H.W., Kolloid-Z. , 35, 201-2 (1924).
35.
THE FINE STRUCTURE OF FIBROUS MATERIALS. Herzog, R.O., Naturschaften, 12, 955-60 (1924).
36.
THE APPLICATION OF X RAY SPECTROSCOPY OF PROBLEMS TO SWELLING. Katz, J.R., Z. Physik., 25, 639-66 (1924).
37.
POSSIBILITIES IN THE CONSTITUTION OF CELLULOSE. Herzog, R.O., Cellulosechemie, 6, 39-40 (1925).
NEW X-RAY DATA THAT MAY POINT TO THE EXISTENCE OF CELLULOSE OF DIFFERENT DEGREES OF POLYMERIZATION. Katz, J.R., Cellulosechemie , 6, 37-39 (1925).
40.
X RAY DIFFRACTION PATTERNS FROM PLANT FIBERS. Sponsler, O.L., J. Gen. Physiol., 9, 221-33 (1925).
41.
X RAY DIFFRACTION PATTERNS FROM PLANT MATERIALS. Sponsler. O.L., Science, 62, 347-8 (1925).
42.
X RAY DIFFRACTION PATTERNS OF CELLULOSE HYDRATE AND ITS REVERSION PRODUCTS. Katz. J.R. and Mark, H., Z. Electrochem., 31, 103-12 (1925).
43.
THE RELATION BETWEEN THE X-RAY DIFFRACTION PATTERN AND THE ALKALI CONTENT DURING SWELLING OF CELLULOSE IN AQUEOUS AND ALCOHOLIC AQUEOUS SODIUM HYDROXIDE. Katz, J.R. and Vieweg, W., Z. Elecktrochem. , 31, 137-9 (1925).
44.
X RAY DATA CORRELATED WITH ALKALI ADSORPTION DURING THE SWELLING OF CELLULOSE IN VARIOUS ALKALIES. Katz, J.R., Cellulosechemie , 6, 35-7 (1925).
45.
Changes InFIBER X RAY DIAGRAMS OF CELLULOSE DUE TO SWELLING IN CONCENTRATED AQUEOUS SOLUTIONS. Katz, J. R. and Mark, H., Z. Physik. Chem., 115, 385-404 (1925).
46.
THE FINE STRUCTURE OF THE CELLULOSE FIBER AND ITS SIGNIFICANCE IN PURIFICATION PROCESSES. Herzog , R.O., Papierfabr., 23, 121-2 (1925).
47.
X-RAY SPECTROGRAPHIC COMPARISON OF LICHENIN AND CELLULOSE. Herzog, R.O., Z. Physiol. Chem., 152, 119-24 (1926).
48.
INVESTIGATIONS ON CELLULOSE AND LICHENIN BY USE OF X-RAY SPECTRUM . Ott, E., Helvetica Chim. Acta, 9, 31-2 (1926).
49.
THE WEIGHTING OF SILK. Herzog, R.O. and Gonell, H.W., Z. Angew. Chem., 39, 380-1 (1926).
50.
RECENT PROGRESS IN THE KNOWLEDGE OF FIBROUS MATERIALS. Herzog, R.O., Papierfabr., 24, 137-42 (1926).
51.
PROGRESS IN THE KNOWLEDGE OF FIBROUS MATERIALS. Herzog, R.O., Z. Angew. Chem., 39, 297-302 (1926).
52.
X-RAY INVESTIGATIONS ON CELLULOSE. Herzog, R.O., Paper Trade J., 83, No. 1, 51-5 (1926).
53.
THE NATURE OF THE STRUCTURE OF CELLULOSE AND ITS SIGNIFICANCE IN CHEMICAL TRANSFORMATIONS. Herzog R.O., J. Phys. Chem.30, 457-69 (1926).
54.
X-RAY DETERMINATION OF THE STRUCTURE OF ORGANIC SUBSTANCES, ESPECIALLY THOSE OF HIGH MOLECULAR WEIGHT. Mark, H., Ber., 59B, 2982-3000 (1926).
55.
THE FINE STRUCTURE OF ANIMAL AND VEGETABLE SUBSTANCES AS REVEALED BY X-RAYS. Bragg, W. II., J. Textile Inst., 17, P174-83 (1926).
56.
LONG CHAIN MOLECULES. Bragg, W.H., Chemistry and Industry, 45, 245-8 (1926) ; J. Soc. Dyers Colorists, 42, 337 (1926).
57.
APPLICATION OF X-RAYS IN THE TEXTILE INDUSTRY. Clark, G.L., Proc. Am. Assoc. Text. Chem. Cols., 1926, 234-41; Am. Dyestuff Rept., 15, 788-95 (1926).
58.
X-RAYS AND COLLOIDS. Clark, G.L., 4th Colloid Symposium Monograph, P. 169 (1926).
59.
MOLECULAR STRUCTURE OF PLANT FIBERS DETERMINED BY X-RAYS. Sponsler, O.L., J. Gen. Physiol., 9, 677-95 (1926).
60.
THE STRUCTURE OF RAMIE CELLULOSE AS DERIVED FROM X-RAY DATA . Sponsler, O.L. and Dore, W.H., Fourth Colloid Symposium Monograph , 1926, P. 174-202. Freudenberg , K., Leiteg Am., 461, 130 (1926).
61.
HeatDEVELOPMENTS ON INFLATION AND MERCERIZATION AND CELLULOSE COMPARED WITH RESULTS OF ABSORPTION EXPERIMENTS AND X-RAY MEASUREMENTS. Katz, J. R., Z. Elektrochem., 32, 269-74 (1926)
62.
THE X-RAY SPECTRUM OF THE SO-CALLED GLADSTONE ALKALI-CELLULOSE COMBINATION. Katz, J.R., Z. Physik. Chem., 124, 352-8
63.
THE CRYSTALLINE STRUCTURE OF ACETYL- AND NITRO-CELLULOSE. Herzog, R.O., Helvetica Chim. Acta, 9, 631-3 (1926).
64.
HAS CELLULOSE A CHEMICAL COMPLEX OF FOUR XEXOSE GROUPS? Hess, Kurt, Naturwissenschaften, 14, 822-3 (1926).
65.
REPLY TO THE REMARKS OF HESS. Herzog, R.O., Naturwissenschaften , 14, 952 (1926).
66.
CELLULOSE SPACE LATTICE OF PLANT FIBERS. Sponsler, O.L., Nature, 120, 767 (1927).
67.
POLYMERIZED FORMALDEHYDE—A MODEL OF CELLULOSE, Staudinger, II, Johner, H., Signer, R., Mic, G., and Hengstenberg, J. , Z. Physik. Chem., 126, 425-48 (1927).
68.
DISPERSAIDOLOGICAL INVESTIGATIONS, XVIII. METHODS OF OBTAINING FIBROUS PRECIPITATES OF ANY SUBSTANCES. THE STRUCTURE OF FIBERS IN GENERAL AND THAT OF CELLULOSE FIBERS IN PARTICULAR. Von Veimarn , P.P., Repts. Imp. Ind. Research Inst, Osaka, Japan, 8, 7-17 (1927).
69.
X-RAY EXAMINATION AND THE STRUCTURE OF TEXTILE FIBERS. Levi, G.R., Giom. Chem. Ind. Applicata, 9, 269-75 (1927).
70.
The Swelling AndMERCERIZATION OF NATURAL CELLULOSE FIBERS IN NITRIC ACID. X-RAY RESEARCH. Katz, J. R. and Hess, K., Z. Physik. Chem., 122, 126-36 (1927).
71.
THE X-RAY DIAGRAM OF CELLULOSE HYDRATE. Herzog, R.O., Ber., 60B, 600-3 (1927).
72.
X-RAY INVESTIGATION OF CELLULOSE NITRATE. Herzog, R.O. and S. von Náray-Szabó , Z. Physik. Chem., 130, 616-25 (1927).
73.
THE CRYSTALLINE ORIENTATION OF CELLULOSE IN SOME PLANTS. Herzog, R.O. and Jancke, W., Naturwissenschaften, 16, 238, (1928).
74.
X-RAY OBSERVATIONS ON CELLULOSE. Herzog, R.O. and Jancke, W., Naturwissenschaften , 16, 618 (1928).
75.
THE X-RAY DIAGRAM OF CELLULOSE. Herzog, R.O. and Jancke, W.Z. Physik. Chem. A, 139, 235-62 (1928).
76.
X-RAY SPECTROGRAPHIC OBSERVATIONS ON CELLULOSE. Herzog, R.O. and Jancke, W., Z. Physik., 49, 27-30 (1928).
77.
DEFORMATION OF FIBERS. Herzog, R.O. and Jancke, W., Z. Physik., 32, 753-8 (1928).
78.
STUDY OF CELLULOSE FIBERS BY X-RAY. Cassal, A. and Rolland, J., Rev. Gen. Mat. Color., 32, 333 (1928).
79.
STUDY OF CELLULOSE FIBERS BY X-RAYS. Cassal, A. and Rolland, J., Rev. Gen. Color. , 32, 333-41 (1928).
80.
THE STRUCTURE OF THE CRYSTALLIZED COMPONENTS OF CELLULOSE . Meyer, K. and Mark, H., Ber., 61B, 593-614 (1928).
81.
NEW THEORIES OF ORGANIC STRUCTURE, THE STUDY OF HIGHER POLYMER. COMPOUNDS. Meyer, K., Z. Angew Chem., 41, 935-47 (1928) ; Naturwessenchaften, 16, 781-93 (1928).
82.
CELLULOSE. Hess, K. and Trogus, C., Ber., 61B, 1982-96 (1928).
83.
THE CELLULOSE PROBLEM. Meyer, K. and Mark, II, Ber., 61B, 24326 (1928).
84.
ERRONEOUS DETERMINATION OF THE CELLULOSE SPACE LATTICE. Sponsler, O.L., Naturwissenschaften, 16, 263 (1928).
85.
X RAY METHODS IN DETERMINING STRUCTURE OF CELLULOSE FIBERS. ORGANO MOLECULAR INVESTIGATION. Sponsler, O.L., Ind. Eng. Chem., 20, 1060-2 (1928).
86.
THE MOLECULAR STRUCTURE OF THE CELL WALL FIBERS. A SUMMARY OF X-RAY INVESTIGATIONS. Sponsler , O.L., Am. J. Bot., 15, 525 (1928).
87.
THE PHYSICAL BASIS OF NÄGELI'S MICELLA THEORY. Mark, H., Naturwessenschaften, 16, 892-900 (1928).
88.
The Form AndSIZE OF THE MICELLES OF CELLULOSE AND RUBBER. Hengstenberg, J. and Mark, H., Z. Krist., 69, 271-84 (1928).
89.
X-RAY INVESTIGATION OF WOOLEN SAMPLES. Threadgold, T.D., J. Textile Inst., 19, 233-6T (1928).
90.
STRUCTURE OF SILK FIBROIN. Meyer, K. and Mark, H., Ber., 61B, 1932-6 (1928).
91.
CHEMISTRY AND PHYSICS OF ARTIFICIAL SILK. X RAY STUDY. Herzog, R.O., J. Textile Inst., 19, 138-46T (1928).
92.
SUBSTANCES ACCOMPANYING CELLULOSE. V. CELLULOSE FROM YOUNG SHOOTS AND OLD HEART WOOD. Hess, K., Ludkte , M. and Rein, H., Ann., 466 (18-26), 58-72 (1928).
93.
X-RAY INVESTIGATION OF DYED CELLULOSE. THE THEORY OF DYEING . Bion, Fritz,Helv. Phys. Acta.11, 165-85 (1928).
94.
CELLULOSE STRUCTURE AND DIRECT DYEING. Meyer, K., Melliand Textilber. , 9, 573-5 (1928) ; The Melliand , 1, 76-9 (1929).
95.
X-RAY STUDIES OF THE STRUCTURE OF SALTS ADSORBED ON CELLULOSE. Aborn , R.H. and Dividson, R.L., Nature, 122, 440 (1928).
96.
X-RAY INVESTIGATIONS ON CELLULOSE AND ITS DERIVATIVES. Trillat, J.J., Rev. gen. Colloides, 6, 57-68 (1928).
97.
STUDIES ON CELLULOSE AND ITS DERIVATIVES. Trillat,. J.J., Rev. gen. Colloides, 6, 177-92 (1928).
98.
THE STRUCTURE OF CELLULOSE AND CELLULOSE ACETATE BY MEANS OF X-RAYS. Trillat, J.J., Compt. rend., 186, 859-61 (1928).
99.
THE STUDY OF CELLULOSE AND CELLULOSE ACETATES BY MEANS OF X-RAYS. Trillat, J.J., Rev. gen. Colloides, 6 89-95 (1928).
100.
X-RAY EXAMINATION OF A CELLOBIOSE ANHYDRIDE, Bergman, J.Herzog, R.O. and Jancke, W., Naturwissenschaften, 16, 464 (1928).
101.
STRUCTURE OF MERCERIZED CELLULOSE. I. THE SPACE LATTICE OF MERCERIZED RAMIE CELLULOSE AS DEVELOPED FROM X-RAY DATA. Sponsler, O.L. and Dore, W.H., J. Am. Chem. Soc., 30, 1940-50 (1928).
102.
RELATION BETWEEN SWELLING, SALT FORMATION AND MICROSTRUCTURE IN THE CELLULOSE FIBER. Trogus, C., Papier-Fabr., 27, 33-60 (1928).
103.
X-RAY DIAGRAM OF NITROCELLULOSE AND ACETYLCELLULOSEST v. Náray-Szabó and von Susich, G.V. , Z. Physik. Chem., 134, 26470 (1928).
104.
THE ACTION OF CONCENTRATED NITRIC ACID ON CELLULOSE. X-RAY STUDY. Andress, K.R., Z. Physik. Chem., 136, 279-88 (1928).