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Andrew R. Barron

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Ross Racing. Barron has previously raced Lotus Seven, Caterham Seven, and Lotus Type 61 Formula Ford. He has been SW Division SCCA E-Production Champion, 2013 Monoposto Formula Ford Champion, 2013 SVRA Group 2 Sprint Series Champion and 2014 Monoposto Formula Ford Champion. In 2018, he raced FIA Formula Opel Racing with a Formula Vauxhall Lotus.
158:. He is the founder and director of Energy Safety Research Institute (ESRI) at Swansea University, which consolidates the energy research at the University with a focus on environmental impact and future security. At Rice University, he leads a Research Group and has served as Associate Dean for Industry Interactions and Technology Transfer. 349:
chemically made by a top-down approach from mineral with which they shared their structures. With the ability to make a range of nanoparticles with different functional groups and control over size, Barron found that the structure and physical properties of macroscopic materials could be controlled by alterations at the
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Barron lives with his wife, Merrie Barron, in both Swansea (Wales) and Houston (Texas). Since he moved to Texas in 1990s, he has participated in motor racing as a sport. In 1999 American Lemans Series, he was team principle for team in the GTS class. He participated in the final season of USRRC under
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In mid 2010s, Barron returned to the issue of water purification. He has investigated the nano control over the surface of a material that allows for the creation of both super hydrophilic surfaces that allow for separation of oil and water without fouling. In this area, his research has been focused
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While investigating MAO-like structures, Barron noticed the relationship between clusters and minerals, at the same time he became interested in metalloxane polymers. He determined that these "polymers" were actually nanoparticles. Furthermore, he showed that these metal oxide nanoparticles could be
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Barron rationalized that if hollow ceramic spheres could be made on a large scale they could replace dense ceramics being used in oil extraction and minimize waste. He created a spin-of company to commercialize this technology. In 2010, Barron and his team, on the request of U.S. Navy, developed a
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Following his studies on ceramic nanoparticles and the discovery of their applications, he founded Oxane Materials in 2002. The company developed nanoproducts with applications in the field of energy. Building on his research with nanoparticles, Barron founded Natcore Technology in 2004 and joined
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Ogrin, Douglas; Anderson, Robin E.; Colorado, Ramon; Maruyama, Benji; Pender, Mark J.; Moore, Valerie C.; Pheasant, Sean T.; McJilton, Laura; Schmidt, Howard K.; Hauge, Robert H.; Billups, W. Edward; Tour, James M.; Smalley, Richard E.; Barron, Andrew R. (2007).
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in 1995, when he joined Rice University as professor of Chemistry and Materials Science. He stepped down from his position at Gallia in 1997. In 1998, he was appointed as the Charles W. Duncan Jr.-Welch Foundation Chair in Chemistry at Rice University.
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on energy problems including sustainable resources and waste recovery, reducing the impact of hydrocarbon energy sources, carbon dioxide valorisation and long-term sequestration and the next generation of the energy distribution.
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From 2006 to 2008, he served as the Associate Dean of Industry Interactions and Technology Transfer at the institute. In 2013 he was appointed as the Sêr Cymru Chair of Low Carbon Energy and Environment, College of Engineering,
340:, he termed this as "Latent Lewis acidity", and showed that this mechanism applied to a number of MAO style polymerization systems. Barron's model has been evolved by others but is essentially the same as now widely accepted. 929:
Schulz, Stephan; Gillan, Edward G.; Ross, Jean L.; Rogers, Lillian M.; Rogers, Robin D.; Barron, Andrew R. (1996). "Synthesis of Gallium Chalcogenide Cubanes and Their Use as CVD Precursors for Ga2E3 (E = S, Se)".
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In the early 1990s, Barron developed interest in studying how the structure of a molecule could overcome thermodynamic control and create new solid state structures. As such, he synthesized a class of cubic
178:. Later, application of nanotechnology to energy problems became the focal point of his work. He has authored over 440 papers and 6 books, including a book co-authored with his wife, Merrie Barron, entitled 165:
and their applications. Early on, he studied how the structure of a molecule could overcome thermodynamic control and create new solid state structures. Some of his early work also dealt with alumoxanes and
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in 2009. Barron has served as a board member of the Houston Clean Energy Park. His research in the field of energy resulted in the foundation of Energy Safety Research Institute, which he leads, at
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Barron investigated the impact of a fullerene on wide range of systems. Initial work was concerned with the toxicity on various cell types. The results of this work demonstrated that inclusion of C
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as an assistant professor of chemistry and was promoted to associate professor in 1991. Barron founded Gallia inc. in 1992 and became Chairman of its Scientific Advisory board.
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Three-coordinate Aluminum is not a Prerequisite for Catalytic Activity in the Zirconocene-alumoxane Polymerization of Ethylene. Journal of the American Chemical Society (1995)
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since 2014. He is also part of the editorial boards of Main Group Chemistry and Materials Science in Semiconductor Processing. Barron has served on the advisory board of
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Increasing the efficiency of single walled carbon nanotube amplification by Fe–Co catalysts through the optimization of CH4/H2 partial pressures, Nano letters (2011)
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Superhydrophilic Functionalization of Microfiltration Ceramic Membranes Enables Separation of Hydrocarbons from Frac and Produced Water. Scientific Reports (2018)
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Synthesis, Characterization, and Carbon Dioxide Absorption of Covalently Attached Polyethyleneimine-functionalized Single-wall Carbon Nanotubes. ACS Nano (2008)
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In his latest work, Barron has studied catalysis with growth of single walled carbon nanotubes (SWCNTs). He pioneered the concept of amplification of a CNT.
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Branched hydrocarbon low surface energy materials for superhydrophobic nanoparticle derived surfaces, ACS Applied Materials & Interfaces (2015)
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From Minerals to Materials: Synthesis of Alumoxanes from the Reaction of Boehmite with Carboxylic Acids. Journal of Materials Chemistry (1995)
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ceramic membrane with microscale pores that could filter out contaminants from waters and protect divers' wet suits without getting blocked.
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Effects of Mechanical Flexion on the Penetration of Fullerene Amino Acid-derivatized Peptide Nanoparticles Through Skin. Nano Letters (2007)
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the scientific advisory board of the company. The company manufactures nanoparticles and technology with applications in the solar sectors.
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Barron, Andrew R.; Hall, Stephen W.; Cowley, Alan H. (1987). "Cyclic carboxylic monophosphides: a new class of phosphorus heterocycle".
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Single Wall Carbon Nanotube Amplification: En route to a Type-specific Growth Mechanism. Journal of the American Chemical Society (2006)
1353: 1277: 883: 150:(born 20 May 1962) is a British chemist, academic, and entrepreneur. He is the Sêr Cymru Chair of Low Carbon Energy and Environment at 992:
Defriend, Kimberly A.; Barron, Andrew R. (2003). "Strengthening of porous alumina bodies using carboxylate-alumoxane nanoparticles".
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Barron has received several awards for his research and work. He received the Humboldt Senior Scientist Research Award in 1997, the
1098:(2007). "Effects of Mechanical Flexion on the Penetration of Fullerene Amino Acid-Derivatized Peptide Nanoparticles through Skin". 239:
for his post-doctoral research, which dealt with the chemistry of multiple bonds to phosphorus and carbon. He published the first
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Nitrene addition to exfoliated graphene: a one-step route to highly functionalized graphene, Chemical Communications (2010)
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Easily Regenerated Readily Deployable Absorbent for Heavy Metal Removal from Contaminated Water, Scientific Reports (2017)
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Defriend, Kimberly A.; Barron, Andrew R. (2003). "A flexible route to high strength α-alumina and aluminate spheres".
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Andrew R. Barron (July 1995). "New Method for the Determination of the Trialkylaluminum Content in Alumoxanes".
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Organic compounds in produced waters from shale gas wells, Environmental Science: Processes & Impacts (2014)
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Barron is the co-founder of Oxane Materials and Natcore Technology. He was a co-founder of the Rice Alliance.
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Barron was the first to discover that nanoparticle derived ceramics could be designed to have intra-granular
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Barron, Andrew R. (1995). "New Method for the Determination of the Trialkylaluminum Content in Alumoxanes".
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consistent with methylalumoxane and he showed that despite being octet molecules they had significant
1343: 1095: 193: 170:. In the early 2000s, his research began to focus on carbon nanomaterials, the functionalization of 570:
Spatial and contamination dependent electrical properties of carbon nanotubes, Nano Letters (2017)
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Hydrolysis of tri-tert-butylaluminum: The First Structural Characterization of Alkylalumoxanes
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Norman Hackerman Award in Chemical Research in 2002 and the Lifetime Achievement Award by
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Rouse, Jillian G.; Yang, Jianzhong; Ryman-Rasmussen, Jessica P.; Barron, Andrew R.;
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High-yield Organic Dispersions of Unfunctionalized Graphene. Nano Letters (2009)
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is "building the bridge to a sustainable, affordable and secure energy future."
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Following from his work on the chalcogenides, Barron was the first person to
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Chemistry of Electronic Materials: From Raw Materials to Integrated Circuit.
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compounds and showed that a new meta-stable phase could be synthesized.
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2013 - Applied Inorganic Chemistry Award (Royal Society of Chemistry)
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2002 - Welch Foundation Norman Hackerman Award in Chemical Research
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Barron is the editor of Journal of Nanomaterials since 2013 and
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of a C≅P triple bond in 1988 in a paper he co-authored with
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characterise an alumoxane in 1993. These structures were
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Charles W. Duncan Jr.-Welch Foundation Chair in Chemistry
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Journal of the Chemical Society, Chemical Communications
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Most of Barron's work has revolved around the study of
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Organometallics, Nano Engineering, Energy, Environment
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Professor of Materials Science & Nano Engineering
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structure drastically lowered any toxicity effects.
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Sêr Cymru Chair of Low Carbon Energy and Environment
836:"New solar energy firm launches, heats competition" 612:Ltd (www.waters-creative.co.uk), Waters Creative. 484:Alumoxanes: Rationalization of Black Box Materials 297:King Abdullah University of Science and Technology 534:. Journal of the American Chemical Society (1993) 196:in Nanotechnology in 2011. He is a fellow of the 1325: 1310:"Prof. Andrew R. Barron | Chameleon Events" 956: 811: 703:Project Management for Scientists and Engineers 514:Physical Methods in Chemistry and Nano Science. 431:1997 - Hümboldt Senior Scientist Research Award 180:Project Management for Scientists and Engineers 1026: 991: 916:"Editorial Advisory Panel and Editorial Board" 710: 231:After completing his PhD, Barron moved to the 862: 589: 587: 490:Covalent Ceramics II: Volume 327: Non-Oxides 308:Molecular control over solid state structure 1235:"Final 2014 Monoposto Championship Results" 828: 203: 584: 450:2011 - World Technology Award (Materials) 428:1995 - Fellow, Royal Society of Chemistry 422:1992 to 1994 - Alcoa Directors Fellowship 386: 1063:"Enhanced oil recovery method developed" 847: 845: 728: 343: 890: 876: 367: 1326: 789: 787: 785: 783: 757: 755: 753: 751: 749: 694: 673: 842: 508:Chemistry of the Main Group Elements. 444:2011 - Lifetime Achievement Award in 805: 649: 425:1995 - Corday Morgan Medal and Prize 404: 1148:The Journal of Physical Chemistry C 922: 780: 746: 667: 624: 413:1987 - Du Pont Young Faculty Fellow 13: 520: 456:2016 - Erasmus+ Vilnius University 416:1991 - Meldola Medal and Prize by 14: 1365: 1354:Alumni of Imperial College London 1260:"ARB Motorsports United Kingdom" 395: 1302: 1284: 1270: 1252: 1227: 1202: 1184: 1166: 1134: 1087: 1073: 1055: 1020: 985: 950: 908: 472: 467:University of Technology Brunei 254: 605: 1: 577: 323: 237:University of Texas at Austin 1029:Journal of Materials Science 994:Journal of Materials Science 7: 302: 241:structural characterization 10: 1370: 1096:Monteiro-Riviere, Nancy A. 799:Royal Society of Chemistry 459:2019 - Star of Asia Award 418:Royal Society of Chemistry 198:Royal Society of Chemistry 194:Houston Technology Center 141: 127: 119: 109: 104: 94: 82: 77: 73: 65: 53: 28: 21: 477: 410:1983 - HVA Briscoe Prize 204:Early life and education 1349:Rice University faculty 1041:10.1023/A:1024494821196 1006:10.1023/A:1022364822978 898:"jnm - Editorial Board" 387:Environmental research 1314:chameleonevents.co.uk 344:Ceramic nanomaterials 247:. In 1987, he joined 168:ceramic nanomaterials 822:10.1039/C39870001753 618:www.esri-swansea.org 368:Carbon nanomaterials 330:crystallographically 212:, and brought up in 1280:. 5 September 2019. 1154:(48): 17804–17806. 1112:2007NanoL...7..155R 971:10.1021/om00007a070 724:. 14 February 2018. 706:. Connexions. 2011. 688:10.1021/om00007a070 599:Science | AAAS 278:University of Wales 208:Barron was born in 78:Academic background 1296:Swansea University 853:"Andrew R. Barron" 595:"Science in Wales" 502:Project Management 441:Visiting Innovator 293:Scientific Reports 286:Swansea University 282:Swansea University 274:Swansea University 261:Harvard University 249:Harvard University 226:Geoffrey Wilkinson 210:Welwyn Garden City 174:and single walled 152:Swansea University 132:Swansea University 99:Geoffrey Wilkinson 46:Welwyn Garden City 1160:10.1021/jp0712506 1120:10.1021/nl062464m 1035:(12): 2673–2678. 944:10.1021/om960480w 938:(22): 4880–4883. 816:(23): 1753–1754. 740:www.mediwales.com 601:. April 26, 2013. 464:Adjunct Professor 405:Awards and honors 334:spectroscopically 145: 144: 1361: 1344:British chemists 1318: 1317: 1306: 1300: 1299: 1288: 1282: 1281: 1274: 1268: 1267: 1256: 1250: 1249: 1247: 1246: 1237:. Archived from 1231: 1225: 1224: 1222: 1221: 1212:. Archived from 1206: 1200: 1199: 1188: 1182: 1181: 1170: 1164: 1163: 1138: 1132: 1131: 1091: 1085: 1084: 1077: 1071: 1070: 1059: 1053: 1052: 1024: 1018: 1017: 989: 983: 982: 965:(7): 3581–3583. 954: 948: 947: 926: 920: 919: 912: 906: 905: 894: 888: 887: 880: 874: 873: 866: 860: 859: 857: 849: 840: 839: 832: 826: 825: 809: 803: 802: 791: 778: 777: 775: 774: 765:. Archived from 759: 744: 743: 732: 726: 725: 722:The Conversation 714: 708: 707: 698: 692: 691: 682:(7): 3581–3583. 671: 665: 664: 653: 647: 646: 644: 643: 634:. Archived from 628: 622: 621: 609: 603: 602: 591: 222:Imperial College 190:Welch Foundation 176:carbon nanotubes 148:Andrew R. Barron 95:Doctoral advisor 89:Imperial College 42: 38: 36: 23:Andrew R. Barron 19: 18: 1369: 1368: 1364: 1363: 1362: 1360: 1359: 1358: 1324: 1323: 1322: 1321: 1308: 1307: 1303: 1290: 1289: 1285: 1276: 1275: 1271: 1258: 1257: 1253: 1244: 1242: 1233: 1232: 1228: 1219: 1217: 1208: 1207: 1203: 1196:Engineering.com 1190: 1189: 1185: 1172: 1171: 1167: 1139: 1135: 1092: 1088: 1079: 1078: 1074: 1061: 1060: 1056: 1025: 1021: 990: 986: 959:Organometallics 955: 951: 932:Organometallics 927: 923: 914: 913: 909: 896: 895: 891: 882: 881: 877: 868: 867: 863: 855: 851: 850: 843: 834: 833: 829: 810: 806: 793: 792: 781: 772: 770: 761: 760: 747: 734: 733: 729: 718:"Andrew Barron" 716: 715: 711: 700: 699: 695: 676:Organometallics 672: 668: 661:barron.rice.edu 655: 654: 650: 641: 639: 630: 629: 625: 610: 606: 593: 592: 585: 580: 533: 529: 523: 521:Selected papers 480: 475: 439:Prince of Wales 407: 398: 389: 375: 370: 351:nanometer scale 346: 326: 310: 305: 257: 206: 156:Rice University 136:Rice University 134: 60: 58: 49: 43: 40: 34: 32: 24: 17: 16:British chemist 12: 11: 5: 1367: 1357: 1356: 1351: 1346: 1341: 1336: 1320: 1319: 1301: 1283: 1269: 1264:arbmotorsports 1251: 1226: 1201: 1183: 1165: 1133: 1106:(1): 155–160. 1086: 1072: 1054: 1019: 1000:(5): 927–935. 984: 949: 921: 907: 889: 875: 861: 841: 827: 804: 779: 745: 727: 709: 693: 666: 648: 623: 604: 582: 581: 579: 576: 575: 574: 571: 568: 565: 562: 559: 556: 553: 550: 547: 544: 541: 538: 535: 531: 527: 522: 519: 518: 517: 511: 505: 499: 493: 487: 479: 476: 474: 471: 470: 469: 460: 457: 454: 451: 448: 446:Nanotechnology 442: 435: 432: 429: 426: 423: 420: 414: 411: 406: 403: 397: 394: 388: 385: 373: 369: 366: 345: 342: 325: 322: 309: 306: 304: 301: 256: 253: 205: 202: 143: 142: 139: 138: 129: 125: 124: 121: 120:Sub-discipline 117: 116: 111: 107: 106: 102: 101: 96: 92: 91: 86: 80: 79: 75: 74: 71: 70: 67: 63: 62: 55: 51: 50: 44: 30: 26: 25: 22: 15: 9: 6: 4: 3: 2: 1366: 1355: 1352: 1350: 1347: 1345: 1342: 1340: 1339:Living people 1337: 1335: 1332: 1331: 1329: 1315: 1311: 1305: 1297: 1293: 1287: 1279: 1273: 1265: 1261: 1255: 1241:on 2019-01-16 1240: 1236: 1230: 1216:on 2019-01-16 1215: 1211: 1205: 1197: 1193: 1187: 1179: 1175: 1169: 1161: 1157: 1153: 1149: 1145: 1137: 1129: 1125: 1121: 1117: 1113: 1109: 1105: 1101: 1097: 1090: 1083:. 2017-09-26. 1082: 1076: 1068: 1064: 1058: 1050: 1046: 1042: 1038: 1034: 1030: 1023: 1015: 1011: 1007: 1003: 999: 995: 988: 980: 976: 972: 968: 964: 960: 953: 945: 941: 937: 933: 925: 917: 911: 903: 899: 893: 886:. 2018-03-23. 885: 879: 871: 865: 854: 848: 846: 837: 831: 823: 819: 815: 808: 800: 796: 790: 788: 786: 784: 769:on 2018-03-30 768: 764: 758: 756: 754: 752: 750: 741: 737: 731: 723: 719: 713: 705: 704: 697: 689: 685: 681: 677: 670: 662: 658: 652: 638:on 2018-06-26 637: 633: 627: 619: 615: 608: 600: 596: 590: 588: 583: 572: 569: 566: 563: 560: 557: 554: 551: 548: 545: 542: 539: 536: 525: 524: 515: 512: 509: 506: 503: 500: 497: 494: 491: 488: 485: 482: 481: 468: 465: 461: 458: 455: 452: 449: 447: 443: 440: 436: 433: 430: 427: 424: 421: 419: 415: 412: 409: 408: 402: 396:Personal life 393: 384: 381: 379: 365: 361: 359: 354: 352: 341: 339: 338:Lewis acidity 335: 331: 321: 319: 316: 300: 298: 294: 289: 287: 283: 279: 275: 269: 265: 262: 252: 250: 246: 242: 238: 234: 233:United States 229: 227: 223: 219: 215: 211: 201: 199: 195: 191: 186: 183: 181: 177: 173: 169: 164: 163:nanoparticles 159: 157: 153: 149: 140: 137: 133: 130: 126: 122: 118: 115: 112: 108: 105:Academic work 103: 100: 97: 93: 90: 87: 85: 81: 76: 72: 69:Merrie Barron 68: 64: 56: 52: 47: 41:(age 62) 31: 27: 20: 1313: 1304: 1295: 1286: 1272: 1263: 1254: 1243:. 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Index

Welwyn Garden City
Alma mater
Imperial College
Geoffrey Wilkinson
Chemistry
Swansea University
Rice University
Swansea University
Rice University
nanoparticles
ceramic nanomaterials
fullerenes
carbon nanotubes
Welch Foundation
Houston Technology Center
Royal Society of Chemistry
Welwyn Garden City
Farnham
Surrey
Imperial College
Geoffrey Wilkinson
United States
University of Texas at Austin
structural characterization
Alan Cowley
Harvard University
Harvard University
Swansea University
University of Wales
Swansea University

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