{"id":37,"date":"2020-01-28T16:25:33","date_gmt":"2020-01-28T21:25:33","guid":{"rendered":"http:\/\/sites.williams.edu\/cgoh\/?page_id=37"},"modified":"2024-04-24T09:38:15","modified_gmt":"2024-04-24T13:38:15","slug":"about-prof-goh","status":"publish","type":"page","link":"https:\/\/sites.williams.edu\/cgoh\/about-prof-goh\/","title":{"rendered":"About Prof Goh"},"content":{"rendered":"\n<h3>\n\t\tProfessor Christopher Goh\n\t<\/h3>\n<h3>\n\t\tProfessor of Chemistry\u00a0\n\t<\/h3>\n\t\t\t<a href=\"#\" id=\"fl-accordion--label-0\" tabindex=\"0\">Professional Experience<\/a>\n\t\t\t\t\t\t\t<a href=\"#\" id=\"fl-accordion--icon-0\" tabindex=\"0\"><i>Expand<\/i><\/a>\n\t\t<p>Christopher Goh received a Bachelor of Science (B.Sc.) degree majoring in <a href=\"https:\/\/www.dur.ac.uk\/chemistry\/\">Chemistry<\/a> from the <a href=\"https:\/\/www.dur.ac.uk\/\">University of Durham, U.K.<\/a>, and his Ph.D. from the <a href=\"https:\/\/chemistry.harvard.edu\/\">Department of Chemistry and Chemical Biology<\/a> Harvard University, MA, under the guidance of <a href=\"https:\/\/faculty.chemistry.harvard.edu\/holm\">Prof. Richard Holm.<\/a>\u00a0Following graduate work in bioinorganic chemistry studying the cofactors of the enzyme nitrogenase, Chris spent two years as a post-doctoral researcher at the <a href=\"https:\/\/www.pse.umass.edu\/\">Polymer Science and Engineering Departmen<\/a>t at the University of Massachusetts &#8211; Amherst, before joining the start-up company <a href=\"https:\/\/en.wikipedia.org\/wiki\/Symyx_Technologies\">Symyx Technologies<\/a> in Silicon Valley. After working at Symyx for 6 years applying combinatorial research methods to the discovery of speciality polymers and polyolefin catalysts, Chris moved back to MA and joined the Williams College chemistry department in 2008.<\/p>\n\t\t\t<a href=\"#\" id=\"fl-accordion--label-1\" tabindex=\"0\">Teaching and Research Interests<\/a>\n\t\t\t\t\t\t\t<a href=\"#\" id=\"fl-accordion--icon-1\" tabindex=\"0\"><i>Expand<\/i><\/a>\n\t\t<p>Prof. Goh has taught the first-semester courses <a href=\"https:\/\/sites.williams.edu\/cgoh\/about-prof-goh\/chem-151\/\">CHEM 151<\/a> Introductory Chemistry and <a href=\"http:\/\/sites.williams.edu\/cgoh\/about-prof-goh\/chem-153\/\">CHEM 155<\/a> Principles of Modern Chemistry, and upper-level elective courses in inorganic and organometallic chemistry <a href=\"http:\/\/sites.williams.edu\/cgoh\/about-prof-goh\/chem-335\/\">CHEM 335<\/a>, bio-inorganic chemistry <a href=\"http:\/\/sites.williams.edu\/cgoh\/about-prof-goh\/chem-338\/\">CHEM 338<\/a> and instrumental methods of analysis <a href=\"http:\/\/sites.williams.edu\/cgoh\/about-prof-goh\/chem-364\/\">CHEM 364<\/a> as well as winter study classes introducing students to research and a course on interpersonal communication.<\/p>\nChris&#8217; research interests most broadly center around the role of metals and have included work on mimicking metal-containing active sites of enzymes, on the design of homogeneous metal catalysts and more recently, on polymers for removing heavy metals from the environment. For all projects, our focus is on how we can use our knowledge of coordination chemistry to design and make better catalysts, materials etc. At the heart of each project are the examination of factors that influence the performance and properties of the metal and the iterative process of testing strategies for improving the system. More than 50 Williams undergraduates have participated in research projects to date, and many presented their work at regional and national conferences. Their work led to publications co-authored with students and support from funding agencies such as the ACS-Petroleum Research Fund, the Hellman Foundation and the Research Corporation for Science Advancement.<br \/>\nChris has spent sabbaticals with Prof. <a href=\"https:\/\/coates.chem.cornell.edu\/\">Geoff Coates<\/a> at Cornell University and teaching at <a href=\"https:\/\/www.yale-nus.edu.sg\/\">Yale-NUS College<\/a> in Singapore.\n\t\t\t<a href=\"#\" id=\"fl-accordion--label-2\" tabindex=\"0\">Interests Outside the Classroom and Lab<\/a>\n\t\t\t\t\t\t\t<a href=\"#\" id=\"fl-accordion--icon-2\" tabindex=\"0\"><i>Expand<\/i><\/a>\n\t\t<p>Outside the world of molecules, Chris directs Williams College&#8217;s <a href=\"https:\/\/science.williams.edu\/summer-programs\/summer-science-program\/\">Summer Science Program<\/a>, a pre-first year experience for incoming Williams students from historically underrepresented groups and first-generation college students. He also just completed a 5-year stint as a Faculty Fellow of the Office of Institutional Diversity, Equity and Inclusion and the Davis Center, and has contributed to the efforts of these offices. He advised student groups including BSTEM and OURSTEM+. He grew up in a multicultural household in Europe and South-East Asia, and came to the United States as a graduate student. Formative experiences included high school at the <a href=\"https:\/\/www.uwc.org\/\">United World College<\/a> of South-East Asia, participating in <a href=\"https:\/\/cisv.org\/\">Children&#8217;s International Summer Villages<\/a>, <a href=\"https:\/\/www.outwardbound.org\/\">Outward Bound<\/a>, <a href=\"https:\/\/www.nols.edu\/en\/\">NOLS<\/a>, <a href=\"https:\/\/www.dhara.dhamma.org\/\">Vipassana<\/a> and the <a href=\"https:\/\/coactive.com\/training\/leadership-training\/\">Co-Active Leadership<\/a> programs, as well as the many interactions with our students, and staff and faculty colleagues here at Williams and elsewhere.<\/p>\n<p>Chris loves the outdoors and working in the garden, he is a life-long fan of <a href=\"https:\/\/www.liverpoolfc.com\/\">Liverpool<\/a> FC (and gets emotional when he hears YNWA) and the Mannschaft, and supports the USWNT fight for gender equity in sports (and the many other efforts).<\/p>\n\t\t\t<a href=\"#\" id=\"fl-accordion--label-3\" tabindex=\"0\">Select Publications<\/a>\n\t\t\t\t\t\t\t<a href=\"#\" id=\"fl-accordion--icon-3\" tabindex=\"0\"><i>Expand<\/i><\/a>\n\t\t<ul>\n<li>Epoxidation of alkenes bearing a carboxylic acid group by iron complexes of the tetradentate ligand <em>N,N<\/em>&#8216;-dimethyl-<em>N,N<\/em>&#8216;-bis(2-pyridylmethyl)-1,2-diaminoethane and its derivatives, Morris, L.S;* Girouard, M.P.;* Everhart, M.H.;* McClain, W.E.;* John A. van Paridon, J.A.;* Pike, R.B.; Goh, C., Inorg. Chim. Acta, 2014, 413, 149-159.<\/li>\n<li>(2S,5R)-2,5-Dimethyl-1,4-bis(pyridin-2-ylmethyl)piperazine, Goh, C.; Morris, L.S.;* Girouard, M.P.;* Chidanguro, T.;* Jasinski, J.P. Acta Crystallogr., Sect. E: Struct. Rep. 2013, E69, o1101.<\/li>\n<li>Syntheses and Structures of Closely Related Copper(I) Complexes of Tridentate (2-pyridylmethyl)imine and (2-pyridylmethyl)amine Ligands and Their Use in Mediating Atom Transfer Radical Polymerizations, Turner, S.A;* Remillard, Z.D.;* Gijima, D.T.;* Gao, E.;* Pike, R.B.; Goh, C., Inorg. Chem. 2012, 51, 10762.<\/li>\n<li>Di-\u03bc-bromido-bis{[N,N-dimethyl-N&#8217;-(thiophen-2-ylmethylidene)ethane-1,2-diamine] copper(I)]}, Goh, C.; Remillard, Z.D.;* Martinez, A.P.;* Keeley, A.C.; Jasinski, J.P. Acta Crystallogr., Sect. E: Struct. Rep. 2012, E68, m691-m692.<\/li>\n<li>Bridged bi-aromatic ligands, catalysts, processes for polymerizing and polymers therefrom. Boussie, T.R.; Brummer; O.; Diamond, G.M.; Goh, C.; Lapointe, A.M.; Leclerc, M.K.; Shoemaker, J.A.W., U.S. Patent 7,659,415, February 9, 2010.<\/li>\n<li>Titanium substituted pyridyl amine complexes, catalysts and processes for polymerizing ethylene and styrene, Boussie, T.R.; Diamond, G.M.; Goh, C.; Lapointe, A.M.; Leclerc, M.K.; Lund, C., U.S. Patent 7,482,301, January 27, 2009.<\/li>\n<li>Bridged bi-aromatic ligands, catalysts, processes for polymerizing and polymers therefrom, Boussie, T.R.; Brummer; O.; Diamond, G.M.; Goh, C.; Lapointe, A.M.; Leclerc, M.K.; Shoemaker; J.A.W., U.S. Patent 7,241,715, July 10, 2007.<\/li>\n<li>Batch reactor with injection system, Goh, C.; Hall, K.A.; Boussie, T.R.; Murphy, V.; Frank; T. G.; Chandler, Jr.; W. H.; Erden; L. Van, U.S. Patent 7,160,513, January 9, 2007.<\/li>\n<li>Titanium substituted pyridyl amine complexes, catalysts and processes for polymerizing ethylene and styrene, Boussie, T.R.; Diamond, G.M.; Goh, C.; Lapointe, A.M.; Leclerc, M.K.; Lund, C., U.S. Patent 7,157,400, January 2, 2007.<\/li>\n<li>Nonconventional catalysts for isotactic propene polymerization in solution developed by using high-throughput-screening technologies.\u00a0 Boussie, T. R.; Diamond, G. M.; Goh, C.; Hall, K. A.; La Pointe, A.M.; Leclerc, M. K.; Murphy, V.; Shoemaker, J. A. W.; Turner, H.; Rosen, R. K.; Stevens, J. C.; Alfano, F.; Busico, V.; Cipullo, R.; Talarico, G.,\u00a0 <em>Angew. Chem., Int. Ed., <\/em><strong>2006<\/strong>, <em>45(20)<\/em>, 3278-3283.<\/li>\n<li>Batch reactor with injection system.\u00a0 Goh, C.; Hall, K.A.; Boussie, T.R.; Murphy, V.; Frank, T.G.; Chandler, W.H.; Van Erden, L. (Symyx Technologies). <em>U.S. Pat. Appl.<\/em>, <strong>2004<\/strong>, 28 pp., US\u00a0 2004121448.<\/li>\n<li>A fully integrated high-throughput screening methodology for the discovery of new polyolefin catalysts: discovery of a new class of high temperature single-site group (IV) copolymerization catalysts.\u00a0 Boussie, T.R.; Diamond, G.M.; Goh, C.; Hall, K.A.; LaPointe, A.M.; Leclerc, M.; Lund, C.; Murphy, V.; Shoemaker, J.A.W.; Tracht, U.; Turner, H.; Zhang, J.; Uno, T.; Rosen, R.K.; Stevens, J.C., <em>J. Am. Chem. Soc.<\/em>, <strong>2003<\/strong>, <em>125(14)<\/em>, 4306-4317.<\/li>\n<li>In-situ injection and materials screening device.\u00a0 Frank, T.G.; Hall, K.A.; Chandler, W.H.; Boussie, T.; Crevier, T.J.; Matsiev, L.; Goh, C. (Symyx Technologies), <em>U.S. Pat. Appl. Publ.<\/em>, <strong>2003<\/strong>, 28 pp., Cont.-in-part of U.S. Ser. No. 895,945.<\/li>\n<li>Group 4 metal phenol-triazole complexes as catalysts for ethylene-styrene copolymerization.\u00a0 Brummer, O.; Diamond, G.M.; Goh, C.; Lapointe, A.M.; Leclerc, M.K.; Longmire, J.; Shoemaker, J.A.W. (Symyx Technologies), <em>PCT Int. Appl.<\/em>, <strong>2003<\/strong>, 70 pp., WO 2003087177.<\/li>\n<li>Olefin polymerization catalysts comprising group 4 metal complexes with bridged bi-aromatic ligands.\u00a0 Boussie, T.R.; Bruemmer, O.; Diamond, G.; Goh, C.; Lapointe, A.M.; Leclerc, M.K.; Shoemaker, J.A.W. (Symyx Technologies), <em>PCT Int. Appl<\/em>., <strong>2003<\/strong>, 138 pp., WO 2003091262.<\/li>\n<li>Substituted pyridyl amine-titanium complexes as catalysts for polymerization of ethylene and styrene.\u00a0 Boussie, T.R.; Diamond, G.M.; Goh, C.; Lapointe, A.M.; Leclerc, M.K.; Lund, C. (Symyx Technologies), <em>Eur. Pat. Appl.<\/em>, <strong>2003<\/strong>, 27 pp., EP 1308450.<\/li>\n<li>Catalysts for copolymerizing ethylene and isobutylene and copolymers.\u00a0 Boussie, T.R.; Diamond, G.M.; Goh, C.; Hall, K.A.; La Pointe, A.M.; Leclerc, M.K.; Lund, C.; Murphy, V. (Symyx Technologies), <em>PCT Int. Appl.<\/em>, <strong>2002<\/strong>, 147 pp., WO 0246249.<\/li>\n<li>High-throughput approaches for the discovery and optimization of new olefin polymerization catalysts.\u00a0 Murphy, V.; Bei, X.; Boussie, T.R.; Brummer, O.; Diamond, G.M.; Goh, C.; Hall, K.A.; Lapointe, A.M.; Leclerc, M.; Longmire, J.M.; Shoemaker, J.A.W.; Turner, H.; Weinberg, W.H., <em>Chem. Record<\/em>, <strong>2002<\/strong>, <em>2(4)<\/em>, 278-289.<\/li>\n<li>Processes for polymerization catalysts, metal complexes and compositions containing erbium.\u00a0 Diamond, G.M.; Murphy, V.; Leclerc, M.K.; Goh, C.; Hall, K.A.; Lapointe, A.M.; Boussie, T.; Lund, C. (Symyx Technologies), <em>U.S. Pat. Appl. Publ<\/em>., <strong>2002<\/strong>, 13 pp., US 20020002257.<\/li>\n<li>Substituted pyridyl amine ligands, complexes, catalysts and processes for polymerizing olefins.\u00a0 Boussie, T.R.; Diamond, G.M.; Goh, C.; Hall, K.A.; Lapointe, A.M.; Leclerc, M.K.; Lund, C.; Murphy, V. (Symyx Technologies). <em>PCT Int. Appl.<\/em>, <strong>2002<\/strong>, 195 pp., WO 0238628.<\/li>\n<li>Ether-amine ligand\/metal complex polymerization catalysts, compositions, and use for olefin polymerization.\u00a0 Goh, C.; Diamond, G.M.; Murphy, V.; Leclerc, M.K.; Hall, K.; Lapointe, A.M.; Boussie, T.R.; Lund, C.; Uno, T. (Symyx Technologies).\u00a0 <em>PCT Int. Appl<\/em>., <strong>2001<\/strong>, 72 pp., WO 174910.<\/li>\n<li>High throughput screen for identifying polymerization catalysts from potential catalysts.\u00a0 Diamond, G.M.; Goh, C.; Leclerc, M.K.; Murphy, V.; Turner, H.W.\u00a0 (Symyx Technologies), <em>PCT Int. Appl.<\/em>, <strong>2001<\/strong>, 66 pp., WO 0198371.<\/li>\n<li>Synthesis and structures of the cuboidal iron-sulfur-nitrosyl-phosphine clusters [Fe<sub>4<\/sub>S<sub>3<\/sub>(NO)<sub>4<\/sub>(PR<sub>3<\/sub>)<sub>3<\/sub>]<sup>0,1+<\/sup> (R = Et, <sup>i<\/sup>Pr, C<sub>6<\/sub>H<sub>11<\/sub>).\u00a0 Goh, C.; Holm, R.H., <em>Inorg. Chim. Acta<\/em>, <strong>1998<\/strong>, <em>270(1,2),<\/em> 46-54.<\/li>\n<li>The mixed-valence double-cubanoid cluster [Fe<sub>8<\/sub>S<sub>12<\/sub>(<sup>t<\/sup>BuNC)<sub>12<\/sub>]: synthesis, structure, and exchange coupling of a new structural array of four Fe(III) sites.\u00a0 Goh, C.; Nivorozhkin, A.; Yoo, S.J.; Bominaar, E.L.; Muenck, E.; Holm, R.H., <em>Inorg. Chem.<\/em>, <strong>1998<\/strong>, <em>37(12)<\/em>, 2926-2932.<\/li>\n<li>Determination of the exchange-coupling constant of an Fe<sup>3+<\/sup>-Fe<sup>3+<\/sup> pair in a cubane-type Fe-S cluster.\u00a0 Yoo, S. J.; Hu, Z.; Goh, C.; Bominaar, E. L.; Holm, R.H.; Muenck, E., <em>J. Am. Chem. Soc.<\/em>, <strong>1997<\/strong>, <em>119(37)<\/em>, 8732-8733.<\/li>\n<li>On the existence in solution of doubly thiolate-bridged double cubanes containing the heterometal [MFe<sub>3<\/sub>S<sub>4<\/sub>] core (M = Mo, W).\u00a0 Huang, J.; Goh, C.; Holm, R.H., <em>Inorg. Chem.<\/em>, <strong>1997<\/strong>, <em>36(3)<\/em>, 356-361.<\/li>\n<li>Polycubane clusters: synthesis of [Fe<sub>4<\/sub>S<sub>4<\/sub>(PR<sub>3<\/sub>)<sub>4<\/sub>]<sup>1+,0<\/sup> (R = <sup>t<\/sup>Bu, Cy, <sup>i<\/sup>Pr) and [Fe<sub>4<\/sub>S<sub>4<\/sub>]<sup>0<\/sup> core aggregation upon loss of phosphine.\u00a0 Goh, C.; Segal, B.M.; Huang, J.; Long, J.R.; Holm, R.H., <em>J. Am. Chem. Soc.<\/em>, <strong>1996<\/strong>, <em>118(47)<\/em>, 11844-11853.<\/li>\n<li>The [2:2] site-differentiated clusters [Fe<sub>4<\/sub>S<sub>4<\/sub>L<sub>2<\/sub>(RNC)<sub>6<\/sub>] containing two low-spin iron(II) sites.\u00a0 Goh, C.; Weigel, J. A.; Holm, R. H., <em>Inorg. Chem.<\/em>, <strong>1994<\/strong>, <em>33(22)<\/em>, 4861-4868.<\/li>\n<\/ul>\n\t\t<h3>Questions? Drop us a line to find out more!<\/h3>\n\t\t\t<a href=\"mailto:cgoh@williams.edu\" target=\"_self\" role=\"button\" rel=\"nofollow noopener\">\n\t\t\t\t\t\t\tGet In Touch\n\t\t\t\t\t<\/a>\n\n","protected":false},"excerpt":{"rendered":"<p>Professor Christopher Goh Professor of Chemistry\u00a0 Professional Experience Expand Christopher Goh received a Bachelor of Science (B.Sc.) degree majoring in Chemistry from the University of Durham, U.K., and his Ph.D. from the Department of Chemistry and Chemical Biology Harvard University, MA, under the guidance of Prof. Richard Holm.\u00a0Following graduate work in bioinorganic chemistry studying the&hellip;<\/p>\n","protected":false},"author":2278,"featured_media":0,"parent":0,"menu_order":3,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"footnotes":""},"class_list":["post-37","page","type-page","status-publish","hentry"],"acf":[],"_links":{"self":[{"href":"https:\/\/sites.williams.edu\/cgoh\/wp-json\/wp\/v2\/pages\/37","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/sites.williams.edu\/cgoh\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/sites.williams.edu\/cgoh\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/sites.williams.edu\/cgoh\/wp-json\/wp\/v2\/users\/2278"}],"replies":[{"embeddable":true,"href":"https:\/\/sites.williams.edu\/cgoh\/wp-json\/wp\/v2\/comments?post=37"}],"version-history":[{"count":23,"href":"https:\/\/sites.williams.edu\/cgoh\/wp-json\/wp\/v2\/pages\/37\/revisions"}],"predecessor-version":[{"id":300,"href":"https:\/\/sites.williams.edu\/cgoh\/wp-json\/wp\/v2\/pages\/37\/revisions\/300"}],"wp:attachment":[{"href":"https:\/\/sites.williams.edu\/cgoh\/wp-json\/wp\/v2\/media?parent=37"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}