167:. During the independence and partition of British India in 1947, he along with his family migrated to India and received his early education there. He graduated from high school in 1955, followed by B.Sc. degree in 1959 from R.K. Arya College of Punjab University. He then worked as a Laboratory Instructor in Chemistry at the Arya College for one year. In 1960, he enrolled in
257:
Trained in EPR spectroscopy during his Ph.D. work, Seehra discovered the sample size effect in EPR which affects the EPR linewidths, he then went on to study various factors that affect the EPR linewidths with special attention to the changes observed near magnetic ordering temperatures such as in
187:
After receiving Ph.D. in 1969, Seehra joined West
Virginia University (WVU) as Assistant Professor of Physics, becoming Associate Professor in 1973 and full Professor in 1977. In 1992, he was appointed Eberly Family Distinguished Professor of Physics. After retiring in 2016 as Eberly Distinguished
217:
NPs with applications in biomedicine and catalysis, his research implied that transformation of Ce to Ce driven by oxygen vacancies is the key factor to understand the catalytic properties of ceria. Another important research has been the ferromagnetic and semiconducting behavior of sputtered
196:
Broadly, Seehra’s research work has focused on structural and magnetic properties of transition metal oxides, sulfides, fluorides, spinels, perovskites and carbons, and size and surface effects in magnetic nanostructures and their applications in catalysis and biomedicine.
352:
Seehra’s research on carbons include modeling of disorder in graphitic carbons, x-ray diffraction and Raman spectroscopy of commercial graphene-based materials and use of nanocarbons for energy-efficient hydrogen production via water electrolysis.
295:). He also conducted a study focused on the role of magnetic anisotropy and spin-lattice coupling in the temperature dependence of EPR linewidths. His research combining theory, EPR and magnetic studies explained the origin of spin canting in
209:
nanoparticles (NPs) which showed strong size and temperature dependence of magnetism in CuO NPs prepared by the sol-gel method and structural characterization via x-ray diffraction and high-resolution transmission electron microscopy. For
135:
Seehra has authored over 325 publications. His research has focused on structural and magnetic properties of materials, with focus on nanomaterials and thin films, and their applications in catalysis and biomedicine. He is a fellow of the
399:
Park, W. K., Ortega-Hertogs, R. J., Moodera, J. S., Punnoose, A., & Seehra, M. S. (2002). Semiconducting and ferromagnetic behavior of sputtered Co-doped TiO 2 thin films above room temperature. Journal of
Applied Physics, 91(10),
406:
Das, S. R., Choudhary, R. N. P., Bhattacharya, P., Katiyar, R. S., Dutta, P., Manivannan, A., & Seehra, M. S. (2007). Structural and multiferroic properties of La-modified Bi Fe O 3 ceramics. Journal of
Applied physics, 101(3),
477:
248:
quantum dots, and FePt NPs. His study regarding the size dependence of magnetic properties of maghemite NPs demonstrated unusual enhancement of effective magnetic anisotropy with decreasing particle size.
1386:
403:
Dutta, P., Pal, S., Seehra, M. S., Shi, Y., Eyring, E. M., & Ernst, R. D. (2006). Concentration of Ce3+ and oxygen vacancies in cerium oxide nanoparticles. Chemistry of
Materials, 18(21), 5144-5146.
410:
Dutta, P., Seehra, M. S., Thota, S., & Kumar, J. (2007). A comparative study of the magnetic properties of bulk and nanocrystalline Co3O4. Journal of
Physics: Condensed Matter, 20(1), 015218.
481:
325:
due to stabilization of crystal structure and nonuniformity in spin cycloid structure by La substitution. Seehra investigated the temperature dependence of dielectric constants of
337:
NPs, his studies showed how the size dependence of the magnetic ordering temperature and optical properties are related. The decrease in the optical band gap of the semiconductor
396:
Punnoose, A., Magnone, H., Seehra, M. S., & Bonevich, J. (2001). Bulk to nanoscale magnetism and exchange bias in CuO nanoparticles. Physical Review B, 64(17), 174420.
148:(UK). WVU has honored him with the Buswell Award for advancing the career of women scientists under his mentorship and Order of Vandalia Award for Distinguished Service.
1479:
1444:
171:
and received his M.Sc. degree in
Physics in 1962, followed by one-year teaching as a Lecturer in Physics at Jain College, Ambala City. In 1963, he moved to the
711:
Punnoose, A.; Phanthavady, T.; Seehra, M. S.; Shah, N.; Huffman, G. P. (2004). "Magnetic properties of ferrihydrite nanoparticles doped with Ni, Mo, and Ir".
1454:
1449:
244:. Among his other notable magnetic studies on NPs are those on nearly defect-free maghemite NPs, ferrihydrite NPs undoped and doped with Ni, Mo, and Ir,
449:
1469:
1464:
1474:
435:
151:
Seehra has edited books on
Magnetic Spinels, Nanostructured Materials, and Noble and Precious Metals, published by InTech Publishers (UK).
1305:"Correlation between X-ray diffraction and Raman spectra of 16 commercial graphene–based materials and their resulting classification"
1065:"Paramagnetic resonance, magnetic susceptibility, and antiferromagnetic exchange in a Cr5+ paramagnet: Potassium perchromate (K3CrO8)"
236:
NPs, he used magnetic and electron magnetic resonance studies and showed how the properties of NPs differ from those of bulk Co
1459:
128:(born 1940) is an Indian-American Physicist, academic and researcher. He is Eberly Distinguished Professor Emeritus at
1387:"Mohindar Singh Seehra, PhD, Presented with the Albert Nelson Marquis Lifetime Achievement Award by Marquis Who's Who"
1116:
Das, S. R.; Choudhary, R. N. P.; Bhattacharya, P.; Katiyar, R. S.; Dutta, P.; Manivannan, A.; Seehra, M. S. (2007).
137:
141:
94:
59:
809:"Unusual enhancement of effective magnetic anisotropy with decreasing particle size in maghemite nanoparticles"
129:
113:
296:
176:
98:
1434:
1353:
259:
1273:
1026:"The linear temperature dependence of the paramagnetic resonance linewidth in the manganate perovskites"
574:"Semiconducting and ferromagnetic behavior of sputtered Co-doped TiO2 thin films above room temperature"
572:
Park, Wan Kyu; Ortega-Hertogs, Ricardo J.; Moodera, Jagadeesh S.; Punnoose, Alex; Seehra, M. S. (2002).
285:
266:
1400:
754:
Neeleshwar, S.; Chen, C. L.; Tsai, C. B.; Chen, Y. Y.; Chen, C. C.; Shyu, S. G.; Seehra, M. S. (2005).
188:
Professor
Emeritus at WVU, he continues collaborative research with research groups in USA and India.
1439:
1246:
1207:
1168:
1129:
1076:
998:
957:
918:
877:
830:
794:"Size-dependent magnetic parameters of fcc FePt nanoparticles: Applications to magnetic hyperthermia"
767:
720:
671:
624:
585:
515:
226:
145:
612:
755:
659:
503:
463:
326:
1157:"Effect of temperature and antiferromagnetic ordering on the dielectric constants of MnO and MnF2"
1234:
1156:
1045:
846:
820:
736:
640:
368:
1985 - Outstanding
Researcher of the College of Arts and Sciences award, West Virginia University
314:
In his paper published in 2006, he studied structural and multiferroic properties of La-modified
168:
1025:
1354:"Nanocarbon boosts energy-efficient hydrogen production in carbon-assisted water electrolysis"
1334:
986:
906:
1365:
1324:
1316:
1285:
1254:
1215:
1176:
1137:
1084:
1037:
1006:
965:
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838:
775:
728:
679:
632:
593:
554:
523:
334:
245:
219:
211:
206:
315:
1414:
1196:"Size-dependent shifts of the Néel temperature and optical band-gap in NiO nanoparticles"
907:"Antisymmetric Exchange and Exchange-Narrowed Electron-Paramagnetic-Resonance Linewidths"
636:
1250:
1211:
1172:
1133:
1080:
1002:
961:
922:
881:
834:
771:
724:
675:
628:
589:
519:
1329:
1304:
866:"New Method for Measuring the Static Magnetic Susceptibility by Paramagnetic Resonance"
1303:
Seehra, Mohindar S.; Narang, Vishal; Geddam, Usha K.; Stefaniak, Aleksandr B. (2017).
1180:
808:
573:
1428:
1289:
1102:
1049:
1041:
850:
793:
740:
697:
383:
2017 - Albert Nelson
Marquis Lifetime Achievement Award, Marquis Who's Who in America
172:
644:
386:
2019 - Order of Vandalia Award for distinguished service to West Virginia University
1369:
1195:
1117:
613:"A comparative study of the magnetic properties of bulk and nanocrystalline Co3O4"
333:
and discussed how the dielectric, magnetic and optical properties are related. In
1320:
1064:
1024:
Seehra, Mohindar S.; Ibrahim, Manjula M.; Babu, V Suresh; Srinivasan, G. (1996).
542:
371:
1992 - Eberly Family Distinguished Professor of Physics, West Virginia University
541:
Dutta, P.; Pal, S.; Seehra, M. S.; Shi, Y.; Eyring, E. M.; Ernst, R. D. (2006).
779:
732:
683:
527:
87:
1258:
1274:"Modeling of disorder and X-ray diffraction in coal-based graphitic carbons"
1010:
1338:
946:"Frequency Dependence of the EPR Linewidth in MnF2 Near the Critical Point"
658:
Dutta, P.; Manivannan, A.; Seehra, M. S.; Shah, N.; Huffman, G. P. (2004).
930:
543:"Concentration of Ce3+ and Oxygen Vacancies in Cerium Oxide Nanoparticles"
164:
160:
1103:"Magnetic properties of Mn3O4 and a solution of the canted-spin problem"
1118:"Structural and multiferroic properties of La-modified BiFeO3 ceramics"
698:"Neutron scattering and magnetic studies of ferrihydrite nanoparticles"
321:
ceramics and showed enhancement in the multiferroic properties of BiFeO
1219:
1141:
970:
945:
890:
865:
842:
597:
558:
1088:
1063:
Dalal, N. S.; Millar, J. M.; Jagadeesh, M. S.; Seehra, M. S. (1981).
338:
504:"Bulk to nanoscale magnetism and exchange bias in CuO nanoparticles"
344:
with increase in temperature were compared with those in Si and Ge.
825:
660:"Magnetic properties of nearly defect-free maghemite nanocrystals"
478:"From Partition of the Indian Subcontinent, a hard-won wholeness"
502:
Punnoose, A.; Magnone, H.; Seehra, M. S.; Bonevich, J. (2001).
380:
2015 - Mary Catherine Buswell Award, West Virginia University
377:
2010 - Outstanding Referee, American Physical Society (APS)
987:"Electron Paramagnetic Resonance in Anisotropic Magnets"
611:
Dutta, P.; Seehra, M. S.; Thota, S.; Kumar, J. (2008).
1155:
Seehra, M. S.; Helmick, R. E.; Srinivasan, G. (1986).
159:
Seehra was born in 1940 in a village near the town of
362:
1973-76 - Research Fellow, Alfred P. Sloan Foundation
807:
Pisane, K. L.; Singh, Sobhit; Seehra, M. S. (2017).
1194:Thota, Subhash; Shim, J. H.; Seehra, M. S. (2013).
109:
104:
86:
74:
69:
52:
44:
36:
28:
21:
253:Electron paramagnetic resonance (EPR) spectroscopy
56:Order of Vandalia Award, West Virginia University
756:"Size-dependent properties of CdSe quantum dots"
1233:Kou, William W.; Seehra, Mohindar S. (1978).
8:
905:Castner, T. G.; Seehra, Mohindar S. (1971).
1401:"Past Mary Catherine Buswell Award Winners"
1235:"Optical absorption in iron pyrite (FeS2)"
48:Physicist, academic, author and researcher
18:
1328:
1161:Journal of Physics C: Solid State Physics
969:
889:
824:
436:"Professor Mohindar Singh Seehra Retires"
1480:Fellows of the American Physical Society
1358:International Journal of Hydrogen Energy
365:1984 - Fellow, American Physical Society
310:Magnetic-Optical-Dielectric Correlations
175:, earning his Ph.D. in Physics from the
420:
374:2001 - Fellow, Institute of Physics(UK)
225:thin films above room temperature. For
1381:
1379:
78:B.Sc Physics, Chemistry, Mathematics
1445:Indian emigrants to the United States
1272:Babu, V.Suresh; Seehra, M.S. (1996).
430:
428:
426:
424:
7:
1352:Seehra, M.S.; Bollineni, S. (2009).
1030:Journal of Physics: Condensed Matter
985:Hùber, D. L.; Seehra, M. S. (1976).
617:Journal of Physics: Condensed Matter
1455:American people of Punjabi descent
464:"Mohinder Seehra - Google Scholar"
14:
1450:American people of Indian descent
1470:Aligarh Muslim University alumni
1465:West Virginia University faculty
870:Review of Scientific Instruments
1415:"Roll of the Order of Vandalia"
1069:The Journal of Chemical Physics
205:Seehra’s work includes that on
82:Ph.D., Condensed Matter Physics
1475:University of Rochester alumni
1370:10.1016/j.ijhydene.2009.06.023
637:10.1088/0953-8984/20/01/015218
1:
1321:10.1016/j.carbon.2016.10.010
1290:10.1016/0008-6223(96)00085-1
944:Seehra, Mohindar S. (1971).
864:Seehra, Mohindar S. (1968).
1181:10.1088/0022-3719/19/10/016
1496:
1200:Journal of Applied Physics
1122:Journal of Applied Physics
1042:10.1088/0953-8984/8/50/048
950:Journal of Applied Physics
780:10.1103/PhysRevB.71.201307
733:10.1103/PHYSREVB.69.054425
684:10.1103/PhysRevB.70.174428
578:Journal of Applied Physics
528:10.1103/PhysRevB.64.174420
138:Alfred P. Sloan Foundation
142:American Physical Society
119:
65:
60:American Physical Society
16:Indian-American Physicist
1259:10.1103/PhysRevB.18.7062
155:Early life and education
130:West Virginia University
114:West Virginia University
1206:(21): 214307–214307–4.
1011:10.1002/pssb.2220740114
991:Physica Status Solidi B
813:Applied Physics Letters
177:University of Rochester
99:University of Rochester
1128:(3): 034104–034104–7.
547:Chemistry of Materials
201:Magnetic nanoparticles
931:10.1103/PhysRevB.4.38
163:which is now part of
126:Mohindar Singh Seehra
23:Mohindar Singh Seehra
450:"APS Fellow Archive"
146:Institute of Physics
1460:American physicists
1251:1978PhRvB..18.7062K
1212:2013JAP...114u4307T
1173:1986JPhC...19.1627S
1134:2007JAP...101c4104D
1081:1981JChPh..74.1916D
1036:(50): 11283–11289.
1003:1976PSSBR..74..145H
962:1971JAP....42.1290S
923:1971PhRvB...4...38C
882:1968RScI...39.1044S
835:2017ApPhL.110v2409P
772:2005PhRvB..71t1307N
725:2004PhRvB..69e4425P
676:2004PhRvB..70q4428D
629:2008JPCM...20a5218D
590:2002JAP....91.8093P
520:2001PhRvB..64q4420P
265:, and ferromagnets
70:Academic background
169:Aligarh University
95:Aligarh University
92:R. K. Arya College
1364:(15): 6078–6084.
1284:(10): 1259–1265.
1245:(12): 7062–7068.
1239:Physical Review B
1220:10.1063/1.4838915
1167:(10): 1627–1635.
1142:10.1063/1.2432869
971:10.1063/1.1660219
911:Physical Review B
891:10.1063/1.1683559
843:10.1063/1.4984903
760:Physical Review B
713:Physical Review B
664:Physical Review B
598:10.1063/1.1452650
559:10.1021/cm061580n
553:(21): 5144–5146.
508:Physical Review B
357:Awards and honors
123:
122:
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1411:
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1089:10.1063/1.441284
1075:(3): 1916–1923.
1060:
1054:
1053:
1021:
1015:
1014:
982:
976:
975:
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956:(4): 1290–1292.
941:
935:
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876:(7): 1044–1047.
861:
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608:
602:
601:
569:
563:
562:
538:
532:
531:
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493:
492:
490:
489:
480:. Archived from
474:
468:
467:
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454:
453:
446:
440:
439:
432:
258:antiferromagnet
19:
1495:
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858:
806:
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792:
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652:
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185:
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97:
93:
81:
79:
57:
24:
17:
12:
11:
5:
1493:
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1375:
1344:
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1186:
1147:
1108:
1094:
1055:
1016:
997:(1): 145–149.
977:
936:
897:
856:
819:(22): 222409.
799:
785:
766:(20): 201307.
746:
703:
689:
670:(17): 174428.
650:
603:
564:
533:
514:(17): 174420.
494:
469:
455:
441:
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397:
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90:
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80:M.Sc., Physics
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1435:Living people
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773:
769:
765:
761:
757:
750:
747:
742:
738:
734:
730:
726:
722:
719:(5): 054425.
718:
714:
707:
704:
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693:
690:
685:
681:
677:
673:
669:
665:
661:
654:
651:
646:
642:
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634:
630:
626:
623:(1): 015218.
622:
618:
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607:
604:
599:
595:
591:
587:
583:
579:
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568:
565:
560:
556:
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517:
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484:on 2020-11-09
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