Knowledge (XXG)

Boris Derjaguin

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He is also known for having hotly rejected some of the then-new ideas of adhesion as presented by the Western bloc in the 1970s. His model came to be known as the DMT (after Derjaguin, Muller and Toporov) model, while the model presented by Western bloc scientists came to be known as the JKR (after
197:, after the initials of its authors: Derjaguin, Landau, Verwey, and Overbeek. It is universally included in text books on colloid chemistry and is still widely applied in modern studies of interparticle forces in colloids. In particular, the 216:
capillaries, it took on astonishing new properties. Eventually, the scientists who were involved in polywater admitted it did not exist, claiming they were misled by poorly designed experiments (Derjaguin rejected polywater in 1973).
225:. This rejection proved to be instrumental in the development of the Tabor and later Maugis parameters that quantify which contact model (of the JKR and DMT models) represent adhesive contact better for specific materials. 877: 471:—— (1992). "On the question of development of the thermodynamics of the systems with thin (non-gibbsian) interlayers: Methods for determination of the thermodynamic thickness of thin interlayers". 550: 527: 867: 882: 872: 401:—— (1989). "The influence of surface forces on the formation of structural peculiarities in the boundary layers of liquids and boundary phases". 887: 473: 857: 922: 852: 680: 445: 368: 193:
Derjaguin became famous in scientific circles for his work on the stability of colloids and thin films of liquids which is now known as the
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Derjaguin, B. V. (1980). "Analytical calculation of repulsion forces arising when the non-ionic diffuse adsorption layers are overlapped".
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is widely used in order to approximate the interaction between curved surfaces from a knowledge of the interaction for planar ones.
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B. V. Derjaguin, V. M. Muller and Y. P. Toporov, "Effect of contact deformations on the adhesion of particles",
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Derjaguin, B. V. (1993). "The world of neglected thicknesses and its place and role in nature and technology".
496: 295: 190:. An epoch in the development of the physical chemistry of colloids and surfaces is associated with his name. 198: 85: 892: 403: 494:—— (1992). "Summary of development of the theory of stability of colloids and thin films". 847: 842: 711: 642:"Selected works of B. V. Derjaguin. Vol. 3. Formation and growth of the new phase and new surfaces". 101: 783:
K. L. Johnson, K. Kendall and A. D. Roberts, "Surface energy and the contact of elastic solids",
727: 513: 420: 326: 312: 139: 74: 580:"Selected works of B. V. Derjaguin. Vol. 1. Surface forces in thin films and disperse systems". 752: 653: 622: 591: 451: 441: 364: 222: 93: 719: 702: 559: 536: 505: 482: 412: 389: 356: 335: 304: 293:—— (1982). "Certain results obtained in research on long-range surface forces". 279: 252: 159: 115: 661: 630: 599: 459: 352: 187: 324:—— (1987). "Modern state of the investigation of long-range surface forces". 715: 380: 50: 836: 563: 540: 486: 416: 393: 517: 424: 316: 731: 437: 171: 378:—— (1988). "Mechanical properties of the boundary lubrication layer". 347:—— (1987). "Some results from 50 years' research on surface forces". 822:
D. Maugis, "Adhesion of spheres: The JKR-DMT transition using a Dugdale model",
194: 89: 266:"Structural and thermodynamic peculiarities of the boundary layers of liquids" 135: 657: 626: 595: 665: 634: 603: 463: 455: 284: 265: 205: 105: 611:"Selected works of B. V. Derjaguin. Vol. 2. Dynamics of disperse systems". 700:
Derjaguin, B. V.; Churaev, N. V. (1973). "Nature of "anomalous water"".
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research during the 1960s and early 1970s. This field claimed that if
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Colloids and Surfaces A: Physicochemical and Engineering Aspects
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Colloids and Surfaces A: Physicochemical and Engineering Aspects
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Members of the German National Academy of Sciences Leopoldina
525:—— (1993). "Amendment of Archimedes' principle". 351:. Progress in Colloid & Polymer Science. Vol. 74. 751:, Springer-Verlag, Solid-State Sciences, Berlin 2000, 868:
Corresponding Members of the USSR Academy of Sciences
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D. Tabor, "Surface forces and surface interactions",
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Recipients of the Order of the Red Banner of Labour
131: 111: 81: 57: 28: 21: 182:, he laid the foundation of the modern science of 873:Full Members of the Russian Academy of Sciences 749:Contact, Adhesion and Rupture of Elastic Solids 434:Theory of Stability of Colloids and Thin Films 8: 18: 474:Advances in Colloid and Interface Science 283: 743: 741: 221:Johnson, Kendall and Roberts) model for 692: 204:Derjaguin was also briefly involved in 681:Lifshitz theory of van der Waals force 766: 764: 349:Surface Forces and Surfactant Systems 7: 796:D. Tabor, "The hardness of solids", 888:Recipients of the USSR State Prize 14: 858:20th-century Russian physicists 1: 923:Burials at Vagankovo Cemetery 853:20th-century Russian chemists 164:Бори́с Влади́мирович Деря́гин 152:Boris Vladimirovich Derjaguin 33:Boris Vladimirovich Derjaguin 564:10.1016/0927-7757(93)80154-7 541:10.1016/0927-7757(93)80257-F 487:10.1016/0001-8686(92)80076-A 417:10.1016/0166-6622(89)80142-8 394:10.1016/0043-1648(88)90250-5 178:chemist. As a member of the 645:Progress in Surface Science 614:Progress in Surface Science 583:Progress in Surface Science 244:Colloid and Polymer Science 180:Russian Academy of Sciences 16:Russian chemist (1902–1994) 939: 271:Pure and Applied Chemistry 212:was heated then cooled in 903:Russian physical chemists 824:J. Colloid Interface Sci. 811:J. Colloid Interface Sci. 785:Proc. R. Soc. Lond. A 324 772:J. Colloid Interface Sci. 497:Russian Chemical Bulletin 296:Russian Chemical Bulletin 163: 145: 124: 913:Soviet physical chemists 223:adhesive elastic contact 826:150 (1992), pp. 243-269 432:—— (1989). 285:10.1351/pac198052051163 264:—— (1980). 199:Derjaguin approximation 86:Derjaguin approximation 863:Scientists from Moscow 774:53 (1975), pp. 314-325 800:1 (1970), pp. 145-179 404:Colloids and Surfaces 170:– 16 May 1994) was a 166:) (9 August 1902 in 813:58 (1977), pp. 2-13 798:Rev. Phys. Technol. 787:(1971), pp. 301-313 716:1973Natur.244..430D 340:10.1021/la00077a001 102:Disjoining pressure 510:10.1007/BF00864326 361:10.1007/BFb0109369 355:. pp. 17–30. 309:10.1007/BF00956886 257:10.1007/BF01480837 140:Physical chemistry 75:Russian Federation 918:Soviet physicists 710:(5416): 430–431. 447:978-0-306-11022-1 370:978-3-7985-0745-6 353:Steinkopff Verlag 234:From 1980 onwards 149: 148: 126:Scientific career 930: 898:Russian chemists 827: 820: 814: 807: 801: 794: 788: 781: 775: 768: 759: 745: 736: 735: 724:10.1038/244430a0 697: 669: 638: 607: 567: 544: 521: 504:(8): 1321–1328. 490: 467: 428: 397: 374: 343: 320: 303:(8): 1528–1532. 289: 287: 278:(5): 1163–1178. 260: 165: 120: 116:USSR State Prize 98:Diffusiophoresis 67: 65: 42: 40: 19: 938: 937: 933: 932: 931: 929: 928: 927: 908:Soviet chemists 833: 832: 831: 830: 821: 817: 808: 804: 795: 791: 782: 778: 769: 762: 746: 739: 699: 698: 694: 689: 677: 672: 641: 610: 579: 575: 570: 547: 524: 493: 470: 448: 431: 400: 377: 371: 346: 323: 292: 263: 240: 236: 231: 138: 118: 104: 100: 96: 92: 88: 77: 68: 63: 61: 53: 44: 38: 36: 35: 34: 24: 23:Boris Derjaguin 17: 12: 11: 5: 936: 934: 926: 925: 920: 915: 910: 905: 900: 895: 890: 885: 880: 875: 870: 865: 860: 855: 850: 845: 835: 834: 829: 828: 815: 802: 789: 776: 760: 737: 691: 690: 688: 685: 684: 683: 676: 673: 671: 670: 639: 608: 576: 574: 571: 569: 568: 545: 522: 491: 468: 446: 429: 398: 375: 369: 344: 334:(5): 601–606. 321: 290: 261: 251:(4): 433–438. 237: 235: 232: 230: 229:Selected works 227: 147: 146: 143: 142: 133: 129: 128: 122: 121: 113: 109: 108: 83: 82:Known for 79: 78: 69: 66:(aged 91) 59: 55: 54: 51:Russian Empire 45: 32: 30: 26: 25: 22: 15: 13: 10: 9: 6: 4: 3: 2: 935: 924: 921: 919: 916: 914: 911: 909: 906: 904: 901: 899: 896: 894: 891: 889: 886: 884: 881: 879: 876: 874: 871: 869: 866: 864: 861: 859: 856: 854: 851: 849: 846: 844: 841: 840: 838: 825: 819: 816: 812: 806: 803: 799: 793: 790: 786: 780: 777: 773: 767: 765: 761: 758: 757:3-540-66113-1 754: 750: 744: 742: 738: 733: 729: 725: 721: 717: 713: 709: 705: 704: 696: 693: 686: 682: 679: 678: 674: 667: 663: 659: 655: 652:(1–4). 1994. 651: 647: 646: 640: 636: 632: 628: 624: 621:(1–4). 1993. 620: 616: 615: 609: 605: 601: 597: 593: 590:(1–4). 1992. 589: 585: 584: 578: 577: 572: 565: 561: 557: 553: 552: 546: 542: 538: 534: 530: 529: 523: 519: 515: 511: 507: 503: 499: 498: 492: 488: 484: 480: 476: 475: 469: 465: 461: 457: 453: 449: 443: 439: 435: 430: 426: 422: 418: 414: 410: 406: 405: 399: 395: 391: 387: 383: 382: 376: 372: 366: 362: 358: 354: 350: 345: 341: 337: 333: 329: 328: 322: 318: 314: 310: 306: 302: 298: 297: 291: 286: 281: 277: 273: 272: 267: 262: 258: 254: 250: 246: 245: 239: 238: 233: 228: 226: 224: 218: 215: 211: 207: 202: 200: 196: 191: 189: 185: 181: 177: 173: 169: 161: 157: 153: 144: 141: 137: 134: 130: 127: 123: 117: 114: 110: 107: 103: 99: 95: 91: 87: 84: 80: 76: 72: 60: 56: 52: 48: 43:9 August 1902 31: 27: 20: 893:Tribologists 823: 818: 810: 805: 797: 792: 784: 779: 771: 748: 707: 701: 695: 649: 643: 618: 612: 587: 581: 555: 549: 532: 526: 501: 495: 478: 472: 438:Plenum Press 433: 411:(1): 49–60. 408: 402: 388:(1): 19–27. 385: 379: 348: 331: 325: 300: 294: 275: 269: 248: 242: 219: 203: 192: 155: 151: 150: 125: 64:(1994-05-16) 848:1994 deaths 843:1902 births 747:D. Maugis, 535:: 289–290. 481:: 191–200. 195:DLVO theory 90:DLVO theory 62:16 May 1994 837:Categories 687:References 558:(1): 1–9. 136:Biophysics 39:1902-08-09 666:20767173M 658:311883926 635:19430223M 627:312119628 604:20699418M 596:311711602 464:10322147M 206:polywater 106:Polywater 94:DMT model 675:See also 573:Reprints 518:98301174 456:18959853 425:95738552 327:Langmuir 317:95538345 188:surfaces 184:colloids 156:Deryagin 732:4293924 712:Bibcode 176:Russian 160:Russian 755:  730:  703:Nature 664:  656:  633:  625:  602:  594:  516:  462:  454:  444:  423:  367:  315:  214:quartz 172:Soviet 168:Moscow 132:Fields 119:(1990) 112:Awards 71:Moscow 47:Moscow 728:S2CID 514:S2CID 421:S2CID 313:S2CID 210:water 753:ISBN 654:OCLC 623:OCLC 592:OCLC 452:OCLC 442:ISBN 381:Wear 365:ISBN 186:and 174:and 154:(or 58:Died 29:Born 720:doi 708:244 560:doi 537:doi 506:doi 483:doi 413:doi 390:doi 386:128 357:doi 336:doi 305:doi 280:doi 253:doi 249:258 839:: 763:^ 740:^ 726:. 718:. 706:. 662:OL 660:. 650:45 648:. 631:OL 629:. 619:43 617:. 600:OL 598:. 588:40 586:. 556:79 554:. 533:81 531:. 512:. 502:41 500:. 479:40 477:. 460:OL 458:. 450:. 440:. 436:. 419:. 409:38 407:. 384:. 363:. 330:. 311:. 301:31 299:. 276:52 274:. 268:. 247:. 162:: 158:; 73:, 49:, 734:. 722:: 714:: 668:. 637:. 606:. 566:. 562:: 543:. 539:: 520:. 508:: 489:. 485:: 466:. 427:. 415:: 396:. 392:: 373:. 359:: 342:. 338:: 332:3 319:. 307:: 288:. 282:: 259:. 255:: 41:) 37:(

Index

Moscow
Russian Empire
Moscow
Russian Federation
Derjaguin approximation
DLVO theory
DMT model
Diffusiophoresis
Disjoining pressure
Polywater
USSR State Prize
Biophysics
Physical chemistry
Russian
Moscow
Soviet
Russian
Russian Academy of Sciences
colloids
surfaces
DLVO theory
Derjaguin approximation
polywater
water
quartz
adhesive elastic contact
Colloid and Polymer Science
doi
10.1007/BF01480837
"Structural and thermodynamic peculiarities of the boundary layers of liquids"

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