# | Author / Year / Journal | Recs
|
---|
1 | FRANKLIN RE, 1951, P ROY SOC LOND A MAT, V209, P196 | WoS | 447
|
2 | FRANKLIN RE, 1951, ACTA CRYSTALLOGR, V4, P253 | WoS | 370
|
3 | FRANKLIN RE, 1953, NATURE, V171, P740 | WoS | 298
|
4 | FRANKLIN RE, 1953, ACTA CRYSTALLOGR, V6, P673 | WoS | 277
|
5 | WATSON JD, 1953, NATURE, V171, P737 | WoS | 264
|
6 | FRANKLIN RE, 1950, ACTA CRYSTALLOGR, V3, P107 | WoS | 229
|
7 | WARREN BE, 1941, PHYS REV, V59, P693 | WoS | 156
|
8 | WILKINS MHF, 1953, NATURE, V171, P738 | WoS | 150
|
9 | COCHRAN W, 1952, ACTA CRYSTALLOGR, V5, P581 | WoS | 110
|
10 | FRANKLIN RE, 1956, NATURE, V177, P929 | WoS | 102
|
11 | LANGRIDGE R, 1960, J MOL BIOL, V2, P19 | WoS | 99
|
12 | WATSON JD, 1953, NATURE, V171, P964 | WoS | 96
|
13 | FRANKLIN RE, 1958, ACTA CRYSTALLOGR, V11, P213 | WoS | 92
|
14 | FRANKLIN RE, 1955, ACTA CRYSTALLOGR, V8, P777 | WoS | 90
|
15 | KLUG A, 1958, ACTA CRYSTALLOGR, V11, P199 | WoS | 90
|
16 | FRANKLIN RE, 1949, T FARADAY SOC, V45, P274 | WoS | 88
|
17 | BISCOE J, 1942, J APPL PHYS, V13, P364 | WoS | 86
|
18 | WATSON JD, 1954, BIOCHIM BIOPHYS ACTA, V13, P10 | WoS | 84
|
19 | BERNAL JD, 1941, J GEN PHYSIOL, V25, P111 | WoS | 83
|
20 | CASPAR DLD, 1963, ADV PROTEIN CHEM, V18, P37 | WoS | 83
|
21 | FRANKLIN RE, 1953, ACTA CRYSTALLOGR, V6, P678 | WoS | 82
|
22 | FRAENKELCONRAT H, 1955, P NATL ACAD SCI USA, V41, P690 | WoS | 78
|
23 | CASPAR DLD, 1956, NATURE, V177, P928 | WoS | 76
|
24 | MARVIN DA, 1961, J MOL BIOL, V3, P547 | WoS | 76
|
25 | LANGRIDGE R, 1960, J MOL BIOL, V2, P38 | WoS | 74
|
26 | FRANKLIN RE, 1956, BIOCHIM BIOPHYS ACTA, V19, P403 | WoS | 71
|
27 | KLUG A, 1960, ADV VIRUS RES, V7, P225 | WoS | 71
|
28 | CRICK FHC, 1954, P ROY SOC LONDON S A, V223, P80 | WoS | 68
|
29 | FRANKLIN RE, 1957, NATURE VIRUSES, P39 | WoS | 68
|
30 | FRANKLIN RE, 1955, NATURE, V175, P379 | WoS | 67
|
# | Author / Year / Journal | Recs
|
---|
31 | WANG AHJ, 1979, NATURE, V282, P680 | WoS | 67
|
32 | FRANKLIN RE, 1953, NATURE, V172, P156 | WoS | 65
|
33 | FULLER W, 1965, J MOL BIOL, V12, P60 | WoS | 63
|
34 | FEUGHELMAN M, 1955, NATURE, V175, P834 | WoS | 62
|
35 | HIRSCH PB, 1954, P ROY SOC LOND A MAT, V226, P143 | WoS | 61
|
36 | AVERY OT, 1944, J EXP MED, V79, P137 | WoS | 60
|
37 | DREW HR, 1981, J MOL BIOL, V151, P535 | WoS | 57
|
38 | CRICK FHC, 1956, NATURE, V177, P473 | WoS | 55
|
39 | FALK M, 1963, J AM CHEM SOC, V85, P387 | WoS | 55
|
40 | FRANKLIN RE, 1949, T FARADAY SOC, V45, P668 | WoS | 54
|
41 | OBERLIN A, 1984, CARBON, V22, P521 | WoS | 54
|
42 | CASPAR DLD, 1962, COLD SPRING HARB SYM, V27, P1 | WoS | 51
|
43 | BRENNER S, 1959, BIOCHIM BIOPHYS ACTA, V34, P103 | WoS | 50
|
44 | FRANKLIN RE, 1955, BIOCHIM BIOPHYS ACTA, V18, P313 | WoS | 50
|
45 | KLUG A, 1957, BIOCHIM BIOPHYS ACTA, V25, P242 | WoS | 50
|
46 | FALK M, 1963, J AM CHEM SOC, V85, P391 | WoS | 47
|
47 | FRAENKELCONRAT H, 1957, VIROLOGY, V4, P1 | WoS | 47
|
48 | TUINSTRA F, 1970, J CHEM PHYS, V53, P1126 | WoS | 47
|
49 | COOPER PJ, 1966, J MOL BIOL, V16, P562 | WoS | 44
|
50 | FRANKLIN RE, 1955, NATURE, V175, P1076 | WoS | 44
|
51 | WILKINS MHF, 1953, NATURE, V172, P759 | WoS | 44
|
52 | BACON GE, 1951, ACTA CRYSTALLOGR, V4, P558 | WoS | 43
|
53 | CASPAR DLD, 1956, NATURE, V177, P475 | WoS | 43
|
54 | HERSHEY AD, 1952, J GEN PHYSIOL, V36, P39 | WoS | 42
|
55 | KLUG A, 1959, BIOCHIM BIOPHYS ACTA, V32, P203 | WoS | 42
|
56 | ARNOTT S, 1972, BIOCHEM BIOPH RES CO, V47, P1504 | WoS | 41
|
57 | FALK M, 1962, J AM CHEM SOC, V84, P3843 | WoS | 41
|
58 | GIERER A, 1956, NATURE, V177, P702 | WoS | 41
|
59 | SCHRAMM G, 1947, Z NATURFORSCH B, V2, P249 | WoS | 41
|
60 | HARRIS JI, 1955, J BIOL CHEM, V214, P215 | WoS | 40
|
# | Author / Year / Journal | Recs
|
---|
61 | IVANOV VI, 1974, J MOL BIOL, V87, P817 | WoS | 40
|
62 | PAULING L, 1951, P NATL ACAD SCI USA, V37, P205 | WoS | 40
|
63 | BUTLER PJG, 1971, NATURE-NEW BIOL, V229, P47 | WoS | 39
|
64 | FRANKLIN RE, 1959, PLANT PATHOLOGY PROB, P447 | WoS | 39
|
65 | HARRIS JI, 1952, NATURE, V170, P613 | WoS | 39
|
66 | HOUSKA CR, 1954, J APPL PHYS, V25, P1503 | WoS | 39
|
67 | KOPKA ML, 1983, J MOL BIOL, V163, P129 | WoS | 39
|
68 | LESLIE AGW, 1980, J MOL BIOL, V143, P49 | WoS | 39
|
69 | SAENGER W, 1986, NATURE, V324, P385 | WoS | 39
|
70 | FRANKLIN RE, 1948, FUEL, V27, P46 | WoS | 38
|
71 | FRAENKELCONRAT H, 1956, J AM CHEM SOC, V78, P882 | WoS | 37
|
72 | STUBBS G, 1977, NATURE, V267, P216 | WoS | 37
|
73 | DREW HR, 1981, P NATL ACAD SCI USA, V78, P2179 | WoS | 35
|
74 | HART R, 1955, P NATIONAL ACADEMY S, V41, P261 | WoS | 35
|
75 | WILLIAMS RC, 1951, J AM CHEM SOC, V73, P2057 | WoS | 35
|
76 | ARNOTT S, 1973, J MOL BIOL, V81, P93 | WoS | 34
|
77 | DURHAM ACH, 1971, NATURE-NEW BIOL, V229, P37 | WoS | 34
|
78 | POHL FM, 1972, J MOL BIOL, V67, P375 | WoS | 34
|
79 | BLOOMER AC, 1978, NATURE, V276, P362 | WoS | 33
|
80 | IVANOV VI, 1973, BIOPOLYMERS, V12, P89 | WoS | 33
|
81 | SCHRAMM G, 1955, Z NATURFORSCH B, V10, P493 | WoS | 33
|
82 | DICKERSON RE, 1981, J MOL BIOL, V149, P761 | WoS | 32
|
83 | MARKHAM R, 1963, VIROLOGY, V20, P88 | WoS | 32
|
84 | MESELSON M, 1958, P NATL ACAD SCI USA, V44, P671 | WoS | 32
|
85 | SAENGER W, 1984, PRINCIPLES NUCL ACID | WoS | 32
|
86 | SCHRAMM G, 1955, Z NATURFORSCH B, V10, P481 | WoS | 32
|
87 | WING R, 1980, NATURE, V287, P755 | WoS | 32
|
88 | BRAHMS J, 1964, J MOL BIOL, V10, P73 | WoS | 31
|
89 | VANKREVELEN DW, 1961, COAL | WoS | 31
|
90 | LANGRIDGE R, 1957, J BIOPHYS BIOCH CYTO, V3, P767 | WoS | 30
|
# | Author / Year / Journal | Recs
|
---|
91 | RULAND W, 1968, CHEM PHYS CARBON, V4, P1 | WoS | 30
|
92 | ARNOTT S, 1974, J MOL BIOL, V88, P509 | WoS | 29
|
93 | ARNOTT S, 1980, NATURE, V283, P743 | WoS | 29
|
94 | DIAMOND R, 1958, ACTA CRYSTALLOGR, V11, P129 | WoS | 29
|
95 | FISCHBACH DB, 1971, CHEM PHYS CARBON, V7, P1 | WoS | 29
|
96 | SCHRAMM G, 1947, ZX NATURFORSCH B, V2, P112 | WoS | 29
|
97 | DIAMOND R, 1957, ACTA CRYSTALLOGR, V10, P359 | WoS | 28
|
98 | GIERER A, 1957, NATURE, V179, P1297 | WoS | 28
|
99 | KLUG A, 1960, J MOL BIOL, V2, P201 | WoS | 28
|
100 | WILKINS MHF, 1951, NATURE, V167, P759 | WoS | 28
|
101 | ASTBURY WT, 1947, S SOC EXP BIOL, V1, P66 | WoS | 27
|
102 | BOEDTKER H, 1958, J AM CHEM SOC, V80, P2550 | WoS | 27
|
103 | BROOKS JD, 1968, CHEMISTRY PHYSICS CA, V4, P243 | WoS | 27
|
104 | CHARGAFF E, 1950, EXPERIENTIA, V6, P201 | WoS | 27
|
105 | DAVIES DR, 1963, J MOL BIOL, V6, P251 | WoS | 27
|
106 | DREW H, 1980, NATURE, V286, P567 | WoS | 27
|
107 | FINCH JT, 1959, NATURE, V183, P1709 | WoS | 27
|
108 | MARKHAM R, 1949, PARASITOLOGY, V39, P330 | WoS | 27
|
109 | MARKHAM R, 1951, FARADAY SOC DISC, V11, P221 | WoS | 27
|
110 | SCHRAMM G, 1955, NATURE, V175, P549 | WoS | 27
|
111 | ANSEVIN AT, 1959, NATURE LONDON, V183, P1601 | WoS | 26
|
112 | BERMAN HM, 1992, BIOPHYS J, V63, P751 | WoS | 26
|
113 | BROOKS JD, 1965, CARBON, V3, P185 | WoS | 26
|
114 | DOTY P, 1959, P NATL ACAD SCI USA, V45, P482 | WoS | 26
|
115 | FINCH JT, 1966, NATURE, V212, P349 | WoS | 26
|
116 | HUXLEY HE, 1960, J MOL BIOL, V2, P189 | WoS | 26
|
117 | PAULING L, 1953, P NATL ACAD SCI USA, V39, P84 | WoS | 26
|
118 | BACON GE, 1950, ACTA CRYSTALLOGR, V3, P137 | WoS | 25
|
119 | BONIJOLY M, 1982, INT J COAL GEOL, V1, P283 | WoS | 25
|
120 | DACEY JR, 1954, T FARADAY SOC, V50, P740 | WoS | 25
|
# | Author / Year / Journal | Recs
|
---|
121 | FRANKLIN RE, 1956, BIOCHIM BIOPHYS ACTA, V19, P203 | WoS | 25
|
122 | HEIDENREICH RD, 1968, J APPL CRYSTALLOGR, V1, P1 | WoS | 25
|
123 | IIJIMA S, 1991, NATURE, V354, P56 | WoS | 25
|
124 | WATSON JD, 1953, COLD SPRING HARB SYM, V18, P123 | WoS | 25
|
125 | ARNOTT S, 1969, ACTA CRYSTALLOGR B, V25, P2192 | WoS | 24
|
126 | BLAYDEN HE, 1944, P C ULTRAFINE STRUCT, P176 | WoS | 24
|
127 | FRAENKELCONRAT H, 1957, BIOCHIM BIOPHYS ACTA, V25, P87 | WoS | 24
|
128 | KLUG A, 1958, DISCUSS FARADAY SOC, V25, P104 | WoS | 24
|
129 | NIXON HL, 1960, J MOL BIOL, V2, P197 | WoS | 24
|
130 | NIXON HL, 1960, VIROLOGY, V10, P157 | WoS | 24
|
131 | OBERLIN A, 1975, CARBON, V13, P367 | WoS | 24
|
132 | PILET J, 1973, BIOPOLYMERS, V12, P387 | WoS | 24
|
133 | SUTHERLAND GBB, 1957, P ROY SOC LOND A MAT, V239, P446 | WoS | 24
|
134 | TSUGITA A, 1960, P NATL ACAD SCI USA, V46, P1463 | WoS | 24
|
135 | ARNOTT S, 1974, J MOL BIOL, V88, P523 | WoS | 23
|
136 | BAWDEN FC, 1937, P ROY SOC LOND B BIO, V123, P274 | WoS | 23
|
137 | BRUNAUER S, 1938, J AM CHEM SOC, V60, P309 | WoS | 23
|
138 | CHAMPNESS JN, 1976, NATURE, V259, P20 | WoS | 23
|
139 | DAHN JR, 1993, ELECTROCHIM ACTA, V38, P1179 | WoS | 23
|
140 | GIERER A, 1956, Z NATURFORSCH B, V11, P138 | WoS | 23
|
141 | HALL CE, 1958, J AM CHEM SOC, V80, P2556 | WoS | 23
|
142 | HOLMES KC, 1958, VIROLOGY, V6, P328 | WoS | 23
|
143 | JENKINS GM, 1972, P ROY SOC LOND A MAT, V327, P501 | WoS | 23
|
144 | KROTO HW, 1985, NATURE, V318, P162 | WoS | 23
|
145 | NELSON JB, 1945, P PHYS SOC LOND, V57, P477 | WoS | 23
|
146 | PILET J, 1972, NATURE-NEW BIOL, V236, P99 | WoS | 23
|
147 | WANG AHJ, 1981, SCIENCE, V211, P171 | WoS | 23
|
148 | WARREN BE, 1934, J CHEM PHYS, V2, P551 | WoS | 23
|
149 | ASTM D150880 | | 22
|
150 | DEFONTON S, 1980, J MATER SCI, V15, P909 | WoS | 22
|
# | Author / Year / Journal | Recs
|
---|
151 | FITZER E, 1971, CHEMISTRY PHYSICS CA, V7, P237 | WoS | 22
|
152 | GREGORY J, 1965, J MOL BIOL, V13, P796 | WoS | 22
|
153 | HOLMES KC, 1975, NATURE, V254, P192 | WoS | 22
|
154 | HORNE RW, 1961, VIROLOGY, V15, P348 | WoS | 22
|
155 | KENNARD O, 1986, J BIOMOL STRUCT DYN, V3, P623 | WoS | 22
|
156 | OBERLIN A, 1979, CARBON, V17, P7 | WoS | 22
|
157 | STANLEY WM, 1935, SCIENCE, V81, P644 | WoS | 22
|
158 | BRAGG WL, 1952, P ROY SOC A, V213, P425 | WoS | 21
|
159 | GUINIER A, 1955, SMALL ANGLE SCATTERI | WoS | 21
|
160 | HORNE RW, 1959, J MOL BIOL, V1, P84 | WoS | 21
|
161 | KAKINOKI J, 1960, ACTA CRYSTALLOGR, V13, P171 | WoS | 21
|
162 | LAUFFER MA, 1958, NATURE, V181, P1338 | WoS | 21
|
163 | MALENKOV G, 1975, FEBS LETT, V51, P38 | WoS | 21
|
164 | NAMBA K, 1986, SCIENCE, V231, P1401 | WoS | 21
|
165 | NODA T, 1965, CARBON, V3, P289 | WoS | 21
|
166 | OBERLIN A, 1989, CHEM PHYS CARBON, V22, P1 | WoS | 21
|
167 | WILKINS MHF, 1953, BIOCHIM BIOPHYS ACTA, V10, P192 | WoS | 21
|
168 | ANDERER FA, 1960, NATURE, V186, P922 | WoS | 20
|
169 | BERNAL JD, 1924, P R SOC LOND A-CONTA, V106, P749 | WoS | 20
|
170 | BERNAL JD, 1941, J GEN PHYSIOL, V25, P147 | WoS | 20
|
171 | CONNER BN, 1982, NATURE, V295, P294 | WoS | 20
|
172 | DIAMOND R, 1960, PHIL T R SOC LONDO A, V252, P193 | WoS | 20
|
173 | FRATINI AV, 1982, J BIOL CHEM, V257, P4686 | WoS | 20
|
174 | HARRIS PJF, 1997, PHILOS MAG A, V76, P667 | WoS | 20
|
175 | NAMBA K, 1989, J MOL BIOL, V208, P307 | WoS | 20
|
176 | WILKINS MHF, 1963, SCIENCE, V140, P941 | WoS | 20
|
177 | BRADBURY EM, 1961, J MOL BIOL, V3, P301 | WoS | 19
|
178 | DURHAM ACH, 1971, NATURE-NEW BIOL, V229, P42 | WoS | 19
|
179 | FRANKLIN RE, 1955, ACTA CRYST, V8, P151 | WoS | 19
|
180 | INAGAKI M, 1977, HIGH TEMP HIGH PRESS, V9, P453 | WoS | 19
|
# | Author / Year / Journal | Recs
|
---|
181 | KAMIYA K, 1968, B CHEM SOC JPN, V41, P2169 | WoS | 19
|
182 | KAUZMANN W, 1959, ADV PROTEIN CHEM, V14, P1 | WoS | 19
|
183 | KNIGHT CA, 1954, ADV VIRUS RES, V2, P153 | WoS | 19
|
184 | LAMOND TG, 1965, CARBON, V3, P59 | WoS | 19
|
185 | SATO K, 1994, SCIENCE, V264, P556 | WoS | 19
|
186 | STEERE RL, 1957, J BIOPHYS BIOCHEM CY, V3, P45 | WoS | 19
|
187 | WASER J, 1955, ACTA CRYSTALLOGR, V8, P142 | WoS | 19
|
188 | WOLF B, 1975, BIOCHEM, V14, P1661 | WoS | 19
|
189 | ARNOTT S, 1968, NATURE, V220, P561 | WoS | 18
|
190 | BARRETT AN, 1971, COLD SPRING HARB SYM, V36, P433 | WoS | 18
|
191 | CALLADINE CR, 1984, J MOL BIOL, V178, P773 | WoS | 18
|
192 | CARTZ L, 1960, PHILOS T R SOC, V252, P557 | WoS | 18
|
193 | DICKERSON RE, 1992, METHOD ENZYMOL, V211, P67 | WoS | 18
|
194 | FONG R, 1990, J ELECTROCHEM SOC, V137, P2009 | WoS | 18
|
195 | FRANKLIN RE, 1956, BIOCHIM BIOPHYS ACTA, V21, P405 | WoS | 18
|
196 | KLUG A, 1979, J MOL BIOL, V131, P669 | WoS | 18
|
197 | LAUFFER MA, 1944, J AM CHEM SOC, V66, P1188 | WoS | 18
|
198 | MAIRE J, 1970, CHEMISTRY PHYSICS CA, V6, P125 | WoS | 18
|
199 | MROZOWSKI S, 1952, PHYS REV, V85, P609 | WoS | 18
|
200 | NAMBA K, 1985, ACTA CRYSTALLOGR A, V41, P252 | WoS | 18
|