[{"date_updated":"2023-01-31T08:06:50Z","doi":"10.1002/anie.202100559","publication":"Angewandte Chemie International Edition","citation":{"mla":"Watt, Fabian A., et al. “η 3 ‐Coordination and Functionalization of the 2‐Phosphaethynthiolate Anion at Lanthanum(III)**.” Angewandte Chemie International Edition, vol. 60, no. 17, Wiley, 2021, pp. 9534–39, doi:10.1002/anie.202100559.","ama":"Watt FA, Burkhardt L, Schoch R, et al. η 3 ‐Coordination and Functionalization of the 2‐Phosphaethynthiolate Anion at Lanthanum(III)**. Angewandte Chemie International Edition. 2021;60(17):9534-9539. doi:10.1002/anie.202100559","ieee":"F. A. Watt et al., “η 3 ‐Coordination and Functionalization of the 2‐Phosphaethynthiolate Anion at Lanthanum(III)**,” Angewandte Chemie International Edition, vol. 60, no. 17, pp. 9534–9539, 2021, doi: 10.1002/anie.202100559.","chicago":"Watt, Fabian A., Lukas Burkhardt, Roland Schoch, Stefan Mitzinger, Matthias Bauer, Florian Weigend, Jose M. Goicoechea, Frank Tambornino, and Stephan Hohloch. “η 3 ‐Coordination and Functionalization of the 2‐Phosphaethynthiolate Anion at Lanthanum(III)**.” Angewandte Chemie International Edition 60, no. 17 (2021): 9534–39. https://doi.org/10.1002/anie.202100559.","short":"F.A. Watt, L. Burkhardt, R. Schoch, S. Mitzinger, M. Bauer, F. Weigend, J.M. Goicoechea, F. Tambornino, S. Hohloch, Angewandte Chemie International Edition 60 (2021) 9534–9539.","bibtex":"@article{Watt_Burkhardt_Schoch_Mitzinger_Bauer_Weigend_Goicoechea_Tambornino_Hohloch_2021, title={η 3 ‐Coordination and Functionalization of the 2‐Phosphaethynthiolate Anion at Lanthanum(III)**}, volume={60}, DOI={10.1002/anie.202100559}, number={17}, journal={Angewandte Chemie International Edition}, publisher={Wiley}, author={Watt, Fabian A. and Burkhardt, Lukas and Schoch, Roland and Mitzinger, Stefan and Bauer, Matthias and Weigend, Florian and Goicoechea, Jose M. and Tambornino, Frank and Hohloch, Stephan}, year={2021}, pages={9534–9539} }","apa":"Watt, F. A., Burkhardt, L., Schoch, R., Mitzinger, S., Bauer, M., Weigend, F., Goicoechea, J. M., Tambornino, F., & Hohloch, S. (2021). η 3 ‐Coordination and Functionalization of the 2‐Phosphaethynthiolate Anion at Lanthanum(III)**. Angewandte Chemie International Edition, 60(17), 9534–9539. https://doi.org/10.1002/anie.202100559"},"user_id":"48467","department":[{"_id":"35"},{"_id":"306"}],"abstract":[{"text":"We present the η3-coordination of the 2-phosphaethynthiolate anion in the complex (PN)2La(SCP) (2) [PN=N-(2-(diisopropylphosphanyl)-4-methylphenyl)-2,4,6-trimethylanilide)]. Structural comparison with dinuclear thiocyanate-bridged (PN)2La(μ-1,3-SCN)2La(PN)2 (3) and azide-bridged (PN)2La(μ-1,3-N3)2La(PN)2 (4) complexes indicates that the [SCP]− coordination mode is mainly governed by electronic, rather than steric factors. Quantum mechanical investigations reveal large contributions of the antibonding π*-orbital of the [SCP]− ligand to the LUMO of complex 2, rendering it the ideal precursor for the first functionalization of the [SCP]− anion. Complex 2 was therefore reacted with CAACs which induced a selective rearrangement of the [SCP]− ligand to form the first CAAC stabilized group 15–group 16 fulminate-type complexes (PN)2La{SPC(RCAAC)} (5 a,b, R=Ad, Me). A detailed reaction mechanism for the SCP-to-SPC isomerization is proposed based on DFT calculations.","lang":"eng"}],"language":[{"iso":"eng"}],"publication_identifier":{"issn":["1433-7851","1521-3773"]},"title":"η 3 ‐Coordination and Functionalization of the 2‐Phosphaethynthiolate Anion at Lanthanum(III)**","volume":60,"_id":"41010","article_type":"original","author":[{"full_name":"Watt, Fabian A.","last_name":"Watt","first_name":"Fabian A."},{"full_name":"Burkhardt, Lukas","first_name":"Lukas","last_name":"Burkhardt"},{"id":"48467","full_name":"Schoch, Roland","orcid":"0000-0003-2061-7289","first_name":"Roland","last_name":"Schoch"},{"full_name":"Mitzinger, Stefan","last_name":"Mitzinger","first_name":"Stefan"},{"last_name":"Bauer","first_name":"Matthias","orcid":"0000-0002-9294-6076","full_name":"Bauer, Matthias","id":"47241"},{"last_name":"Weigend","first_name":"Florian","full_name":"Weigend, Florian"},{"full_name":"Goicoechea, Jose M.","first_name":"Jose M.","last_name":"Goicoechea"},{"last_name":"Tambornino","first_name":"Frank","full_name":"Tambornino, Frank"},{"last_name":"Hohloch","first_name":"Stephan","full_name":"Hohloch, Stephan"}],"publisher":"Wiley","page":"9534-9539","intvolume":" 60","year":"2021","type":"journal_article","publication_status":"published","date_created":"2023-01-30T17:00:21Z","status":"public","issue":"17","keyword":["General Chemistry","Catalysis"]},{"type":"journal_article","publication_status":"published","date_created":"2023-01-30T17:00:49Z","publisher":"American Chemical Society (ACS)","page":"2856-2865","intvolume":" 60","year":"2021","issue":"5","keyword":["Inorganic Chemistry","Physical and Theoretical Chemistry"],"status":"public","publication":"Inorganic Chemistry","citation":{"bibtex":"@article{Winkler_Schnierle_Ehrlich_Mehnert_Hunger_Sheveleva_Burkhardt_Bauer_Tuna_Ringenberg_et al._2021, title={Electronic Structure of a Diiron Complex: A Multitechnique Experimental Study of [(dppf)Fe(CO) 3]+/0}, volume={60}, DOI={10.1021/acs.inorgchem.0c03259}, number={5}, journal={Inorganic Chemistry}, publisher={American Chemical Society (ACS)}, author={Winkler, Mario and Schnierle, Marc and Ehrlich, Felix and Mehnert, Kim-Isabelle and Hunger, David and Sheveleva, Alena M. and Burkhardt, Lukas and Bauer, Matthias and Tuna, Floriana and Ringenberg, Mark R. and et al.}, year={2021}, pages={2856–2865} }","short":"M. Winkler, M. Schnierle, F. Ehrlich, K.-I. Mehnert, D. Hunger, A.M. Sheveleva, L. Burkhardt, M. Bauer, F. Tuna, M.R. Ringenberg, J. van Slageren, Inorganic Chemistry 60 (2021) 2856–2865.","mla":"Winkler, Mario, et al. “Electronic Structure of a Diiron Complex: A Multitechnique Experimental Study of [(Dppf)Fe(CO) 3]+/0.” Inorganic Chemistry, vol. 60, no. 5, American Chemical Society (ACS), 2021, pp. 2856–65, doi:10.1021/acs.inorgchem.0c03259.","ama":"Winkler M, Schnierle M, Ehrlich F, et al. Electronic Structure of a Diiron Complex: A Multitechnique Experimental Study of [(dppf)Fe(CO) 3]+/0. Inorganic Chemistry. 2021;60(5):2856-2865. doi:10.1021/acs.inorgchem.0c03259","ieee":"M. Winkler et al., “Electronic Structure of a Diiron Complex: A Multitechnique Experimental Study of [(dppf)Fe(CO) 3]+/0,” Inorganic Chemistry, vol. 60, no. 5, pp. 2856–2865, 2021, doi: 10.1021/acs.inorgchem.0c03259.","chicago":"Winkler, Mario, Marc Schnierle, Felix Ehrlich, Kim-Isabelle Mehnert, David Hunger, Alena M. Sheveleva, Lukas Burkhardt, et al. “Electronic Structure of a Diiron Complex: A Multitechnique Experimental Study of [(Dppf)Fe(CO) 3]+/0.” Inorganic Chemistry 60, no. 5 (2021): 2856–65. https://doi.org/10.1021/acs.inorgchem.0c03259.","apa":"Winkler, M., Schnierle, M., Ehrlich, F., Mehnert, K.-I., Hunger, D., Sheveleva, A. M., Burkhardt, L., Bauer, M., Tuna, F., Ringenberg, M. R., & van Slageren, J. (2021). Electronic Structure of a Diiron Complex: A Multitechnique Experimental Study of [(dppf)Fe(CO) 3]+/0. Inorganic Chemistry, 60(5), 2856–2865. https://doi.org/10.1021/acs.inorgchem.0c03259"},"user_id":"48467","department":[{"_id":"35"},{"_id":"306"}],"abstract":[{"lang":"eng","text":"Here we explore the electronic structure of the diiron complex [(dppf)Fe(CO)3]0/+ [10/+; dppf = 1,1′-bis(diphenylphosphino)ferrocene] in two oxidation states by an advanced multitechnique experimental approach. A combination of magnetic circular dichroism, X-ray absorption and emission, high-frequency electron paramagnetic resonance (EPR), and Mössbauer spectroscopies is used to establish that oxidation of 10 occurs on the carbonyl iron ion, resulting in a low-spin iron(I) ion. It is shown that an unequivocal result is obtained by combining several methods. Compound 1+ displays slow spin dynamics, which is used here to study its geometric structure by means of pulsed EPR methods. Surprisingly, these data show an association of the tetrakis[3,5-bis(trifluoromethylphenyl)]borate counterion with 1+."}],"language":[{"iso":"eng"}],"date_updated":"2023-01-31T08:07:16Z","doi":"10.1021/acs.inorgchem.0c03259","_id":"41012","author":[{"last_name":"Winkler","first_name":"Mario","full_name":"Winkler, Mario"},{"first_name":"Marc","last_name":"Schnierle","full_name":"Schnierle, Marc"},{"full_name":"Ehrlich, Felix","last_name":"Ehrlich","first_name":"Felix"},{"full_name":"Mehnert, Kim-Isabelle","last_name":"Mehnert","first_name":"Kim-Isabelle"},{"first_name":"David","last_name":"Hunger","full_name":"Hunger, David"},{"first_name":"Alena M.","last_name":"Sheveleva","full_name":"Sheveleva, Alena M."},{"full_name":"Burkhardt, Lukas","first_name":"Lukas","last_name":"Burkhardt"},{"orcid":"0000-0002-9294-6076","first_name":"Matthias","last_name":"Bauer","id":"47241","full_name":"Bauer, Matthias"},{"last_name":"Tuna","first_name":"Floriana","full_name":"Tuna, Floriana"},{"full_name":"Ringenberg, Mark R.","first_name":"Mark R.","last_name":"Ringenberg"},{"first_name":"Joris","last_name":"van Slageren","full_name":"van Slageren, Joris"}],"article_type":"original","publication_identifier":{"issn":["0020-1669","1520-510X"]},"title":"Electronic Structure of a Diiron Complex: A Multitechnique Experimental Study of [(dppf)Fe(CO) 3]+/0","volume":60},{"publication_status":"published","type":"journal_article","date_created":"2023-01-30T17:00:10Z","intvolume":" 40","page":"1751-1757","publisher":"American Chemical Society (ACS)","year":"2021","issue":"11","keyword":["Inorganic Chemistry","Organic Chemistry","Physical and Theoretical Chemistry"],"status":"public","publication":"Organometallics","language":[{"iso":"eng"}],"department":[{"_id":"35"},{"_id":"306"}],"abstract":[{"text":"Platinum hydride species catalyze a number of interesting organic reactions. However, their reactions typically involve the use of high loadings of noble metal and are difficult to recycle, making them somewhat unsustainable. We have synthesized surface-immobilized Pt–H species via oxidative addition of surface OH groups to Pt(PtBu3)2 (1), a rarely used immobilization technique in surface organometallic chemistry. The hydride species thus made were characterized by infrared, magic-angle spinning nuclear magnetic resonance, and X-ray absorption spectroscopies and catalyzed both olefin isomerization and cycloisomerization of a 1,6 enyne (5) with a high selectivity and low Pt loading.","lang":"eng"}],"citation":{"apa":"Maier, S., Cronin, S. P., Vu Dinh, M.-A., Li, Z., Dyballa, M., Nowakowski, M., Bauer, M., & Estes, D. P. (2021). Immobilized Platinum Hydride Species as Catalysts for Olefin Isomerizations and Enyne Cycloisomerizations. Organometallics, 40(11), 1751–1757. https://doi.org/10.1021/acs.organomet.1c00216","ama":"Maier S, Cronin SP, Vu Dinh M-A, et al. Immobilized Platinum Hydride Species as Catalysts for Olefin Isomerizations and Enyne Cycloisomerizations. Organometallics. 2021;40(11):1751-1757. doi:10.1021/acs.organomet.1c00216","ieee":"S. Maier et al., “Immobilized Platinum Hydride Species as Catalysts for Olefin Isomerizations and Enyne Cycloisomerizations,” Organometallics, vol. 40, no. 11, pp. 1751–1757, 2021, doi: 10.1021/acs.organomet.1c00216.","chicago":"Maier, Sarah, Steve P. Cronin, Manh-Anh Vu Dinh, Zheng Li, Michael Dyballa, Michal Nowakowski, Matthias Bauer, and Deven P. Estes. “Immobilized Platinum Hydride Species as Catalysts for Olefin Isomerizations and Enyne Cycloisomerizations.” Organometallics 40, no. 11 (2021): 1751–57. https://doi.org/10.1021/acs.organomet.1c00216.","mla":"Maier, Sarah, et al. “Immobilized Platinum Hydride Species as Catalysts for Olefin Isomerizations and Enyne Cycloisomerizations.” Organometallics, vol. 40, no. 11, American Chemical Society (ACS), 2021, pp. 1751–57, doi:10.1021/acs.organomet.1c00216.","short":"S. Maier, S.P. Cronin, M.-A. Vu Dinh, Z. Li, M. Dyballa, M. Nowakowski, M. Bauer, D.P. Estes, Organometallics 40 (2021) 1751–1757.","bibtex":"@article{Maier_Cronin_Vu Dinh_Li_Dyballa_Nowakowski_Bauer_Estes_2021, title={Immobilized Platinum Hydride Species as Catalysts for Olefin Isomerizations and Enyne Cycloisomerizations}, volume={40}, DOI={10.1021/acs.organomet.1c00216}, number={11}, journal={Organometallics}, publisher={American Chemical Society (ACS)}, author={Maier, Sarah and Cronin, Steve P. and Vu Dinh, Manh-Anh and Li, Zheng and Dyballa, Michael and Nowakowski, Michal and Bauer, Matthias and Estes, Deven P.}, year={2021}, pages={1751–1757} }"},"user_id":"48467","date_updated":"2023-01-31T08:06:40Z","doi":"10.1021/acs.organomet.1c00216","_id":"41009","author":[{"last_name":"Maier","first_name":"Sarah","full_name":"Maier, Sarah"},{"last_name":"Cronin","first_name":"Steve P.","full_name":"Cronin, Steve P."},{"full_name":"Vu Dinh, Manh-Anh","first_name":"Manh-Anh","last_name":"Vu Dinh"},{"full_name":"Li, Zheng","last_name":"Li","first_name":"Zheng"},{"full_name":"Dyballa, Michael","first_name":"Michael","last_name":"Dyballa"},{"last_name":"Nowakowski","first_name":"Michal","full_name":"Nowakowski, Michal"},{"id":"47241","full_name":"Bauer, Matthias","orcid":"0000-0002-9294-6076","last_name":"Bauer","first_name":"Matthias"},{"full_name":"Estes, Deven P.","last_name":"Estes","first_name":"Deven P."}],"article_type":"original","publication_identifier":{"issn":["0276-7333","1520-6041"]},"volume":40,"title":"Immobilized Platinum Hydride Species as Catalysts for Olefin Isomerizations and Enyne Cycloisomerizations"},{"volume":10,"title":"Planar Iron Hydride Nanoclusters: Combined Spectroscopic and Theoretical Insights into Structures and Building Principles","publication_identifier":{"issn":["2191-1363","2191-1363"]},"article_type":"original","author":[{"full_name":"Chakraborty, Uttam","last_name":"Chakraborty","first_name":"Uttam"},{"full_name":"Bügel, Patrick","last_name":"Bügel","first_name":"Patrick"},{"full_name":"Fritsch, Lorena","id":"44418","first_name":"Lorena","last_name":"Fritsch"},{"full_name":"Weigend, Florian","last_name":"Weigend","first_name":"Florian"},{"id":"47241","full_name":"Bauer, Matthias","orcid":"0000-0002-9294-6076","first_name":"Matthias","last_name":"Bauer"},{"full_name":"Jacobi von Wangelin, Axel","last_name":"Jacobi von Wangelin","first_name":"Axel"}],"_id":"41011","doi":"10.1002/open.202000307","date_updated":"2023-01-31T08:07:01Z","language":[{"iso":"eng"}],"abstract":[{"text":"The controlled assembly of well-defined planar nanoclusters from molecular precursors is synthetically challenging and often plagued by the predominant formation of 3D-structures and nanoparticles. Herein, we report planar iron hydride nanoclusters from reactions of main group element hydrides with iron(II) bis(hexamethyldisilazide). The structures and properties of isolated Fe4, Fe6, and Fe7 nanoplatelets and calculated intermediates enable an unprecedented insight into the underlying building principle and growth mechanism of iron clusters, metal monolayers, and nanoparticles.","lang":"eng"}],"department":[{"_id":"35"},{"_id":"306"}],"user_id":"48467","citation":{"short":"U. Chakraborty, P. Bügel, L. Fritsch, F. Weigend, M. Bauer, A. Jacobi von Wangelin, ChemistryOpen 10 (2021) 265–271.","ieee":"U. Chakraborty, P. Bügel, L. Fritsch, F. Weigend, M. Bauer, and A. Jacobi von Wangelin, “Planar Iron Hydride Nanoclusters: Combined Spectroscopic and Theoretical Insights into Structures and Building Principles,” ChemistryOpen, vol. 10, no. 2, pp. 265–271, 2021, doi: 10.1002/open.202000307.","ama":"Chakraborty U, Bügel P, Fritsch L, Weigend F, Bauer M, Jacobi von Wangelin A. Planar Iron Hydride Nanoclusters: Combined Spectroscopic and Theoretical Insights into Structures and Building Principles. ChemistryOpen. 2021;10(2):265-271. doi:10.1002/open.202000307","chicago":"Chakraborty, Uttam, Patrick Bügel, Lorena Fritsch, Florian Weigend, Matthias Bauer, and Axel Jacobi von Wangelin. “Planar Iron Hydride Nanoclusters: Combined Spectroscopic and Theoretical Insights into Structures and Building Principles.” ChemistryOpen 10, no. 2 (2021): 265–71. https://doi.org/10.1002/open.202000307.","mla":"Chakraborty, Uttam, et al. “Planar Iron Hydride Nanoclusters: Combined Spectroscopic and Theoretical Insights into Structures and Building Principles.” ChemistryOpen, vol. 10, no. 2, Wiley, 2021, pp. 265–71, doi:10.1002/open.202000307.","bibtex":"@article{Chakraborty_Bügel_Fritsch_Weigend_Bauer_Jacobi von Wangelin_2021, title={Planar Iron Hydride Nanoclusters: Combined Spectroscopic and Theoretical Insights into Structures and Building Principles}, volume={10}, DOI={10.1002/open.202000307}, number={2}, journal={ChemistryOpen}, publisher={Wiley}, author={Chakraborty, Uttam and Bügel, Patrick and Fritsch, Lorena and Weigend, Florian and Bauer, Matthias and Jacobi von Wangelin, Axel}, year={2021}, pages={265–271} }","apa":"Chakraborty, U., Bügel, P., Fritsch, L., Weigend, F., Bauer, M., & Jacobi von Wangelin, A. (2021). Planar Iron Hydride Nanoclusters: Combined Spectroscopic and Theoretical Insights into Structures and Building Principles. ChemistryOpen, 10(2), 265–271. https://doi.org/10.1002/open.202000307"},"publication":"ChemistryOpen","status":"public","keyword":["General Chemistry"],"issue":"2","year":"2021","page":"265-271","intvolume":" 10","publisher":"Wiley","date_created":"2023-01-30T17:00:36Z","publication_status":"published","type":"journal_article"},{"editor":[{"last_name":"Standke","first_name":"Jan","full_name":"Standke, Jan"},{"id":"23088","full_name":"Topalovic, Elvira","first_name":"Elvira","last_name":"Topalovic"}],"_id":"40920","keyword":["General Earth and Planetary Sciences","General Environmental Science"],"publication_identifier":{"issn":["0418-9426","2196-8756"]},"status":"public","title":"In Krisen erzählen – von Krisen erzählen. Sprachliche, literarische und mediale Dimensionen.","volume":68,"type":"book_editor","publication_status":"published","user_id":"23088","date_created":"2023-01-30T12:19:40Z","citation":{"ama":"Standke J, Topalovic E, eds. In Krisen erzählen – von Krisen erzählen. Sprachliche, literarische und mediale Dimensionen. Vol 68. Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen; 2021. doi:10.14220/mdge.2021.68.2.0","chicago":"Standke, Jan, and Elvira Topalovic, eds. In Krisen erzählen – von Krisen erzählen. Sprachliche, literarische und mediale Dimensionen. Vol. 68. Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen, 2021. https://doi.org/10.14220/mdge.2021.68.2.0.","ieee":"J. Standke and E. Topalovic, Eds., In Krisen erzählen – von Krisen erzählen. Sprachliche, literarische und mediale Dimensionen., vol. 68. Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen, 2021.","mla":"Standke, Jan, and Elvira Topalovic, editors. In Krisen erzählen – von Krisen erzählen. Sprachliche, literarische und mediale Dimensionen. Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen, 2021, doi:10.14220/mdge.2021.68.2.0.","apa":"Standke, J., & Topalovic, E. (Eds.). (2021). In Krisen erzählen – von Krisen erzählen. Sprachliche, literarische und mediale Dimensionen. (Vol. 68). Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen. https://doi.org/10.14220/mdge.2021.68.2.0","short":"J. Standke, E. Topalovic, eds., In Krisen erzählen – von Krisen erzählen. Sprachliche, literarische und mediale Dimensionen., Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen, 2021.","bibtex":"@book{Standke_Topalovic_2021, title={In Krisen erzählen – von Krisen erzählen. Sprachliche, literarische und mediale Dimensionen.}, volume={68}, DOI={10.14220/mdge.2021.68.2.0}, publisher={Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen}, year={2021} }"},"department":[{"_id":"36"},{"_id":"115"},{"_id":"463"}],"language":[{"iso":"ger"}],"publisher":"Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen","date_updated":"2023-01-31T12:56:15Z","doi":"10.14220/mdge.2021.68.2.0","intvolume":" 68","year":"2021"},{"_id":"40494","editor":[{"full_name":"Torma, Franziska","first_name":"Franziska","last_name":"Torma"}],"series_title":"A Cultural History of the Sea ","author":[{"first_name":"Johanna","last_name":"Sackel","full_name":"Sackel, Johanna","id":"8029"},{"full_name":"Wöbse, Anna-Katharina","last_name":"Wöbse","first_name":"Anna-Katharina"}],"status":"public","publication_identifier":{"isbn":["9781474299107"]},"volume":6,"title":"Networks","type":"book_chapter","publication":"A Cultural History of the Sea in the Global Age","language":[{"iso":"eng"}],"department":[{"_id":"6"},{"_id":"514"}],"citation":{"mla":"Sackel, Johanna, and Anna-Katharina Wöbse. “Networks.” A Cultural History of the Sea in the Global Age, edited by Franziska Torma, vol. 6, Bloomsbury Academic, 2021.","chicago":"Sackel, Johanna, and Anna-Katharina Wöbse. “Networks.” In A Cultural History of the Sea in the Global Age, edited by Franziska Torma, Vol. 6. A Cultural History of the Sea . London/New York: Bloomsbury Academic, 2021.","ama":"Sackel J, Wöbse A-K. Networks. In: Torma F, ed. A Cultural History of the Sea in the Global Age. Vol 6. A Cultural History of the Sea . Bloomsbury Academic; 2021.","ieee":"J. Sackel and A.-K. Wöbse, “Networks,” in A Cultural History of the Sea in the Global Age, vol. 6, F. Torma, Ed. London/New York: Bloomsbury Academic, 2021.","short":"J. Sackel, A.-K. Wöbse, in: F. Torma (Ed.), A Cultural History of the Sea in the Global Age, Bloomsbury Academic, London/New York, 2021.","apa":"Sackel, J., & Wöbse, A.-K. (2021). Networks. In F. Torma (Ed.), A Cultural History of the Sea in the Global Age (Vol. 6). Bloomsbury Academic.","bibtex":"@inbook{Sackel_Wöbse_2021, place={London/New York}, series={A Cultural History of the Sea }, title={Networks}, volume={6}, booktitle={A Cultural History of the Sea in the Global Age}, publisher={Bloomsbury Academic}, author={Sackel, Johanna and Wöbse, Anna-Katharina}, editor={Torma, Franziska}, year={2021}, collection={A Cultural History of the Sea } }"},"date_created":"2023-01-27T10:59:35Z","user_id":"14931","intvolume":" 6","date_updated":"2023-01-31T12:56:06Z","publisher":"Bloomsbury Academic","year":"2021","place":"London/New York"},{"publication_identifier":{"issn":["0418-9426","2196-8756"]},"status":"public","volume":68,"title":"Mehrdeutigkeiten","editor":[{"full_name":"Plien, Christian","first_name":"Christian","last_name":"Plien"},{"id":"23088","full_name":"Topalovic, Elvira","first_name":"Elvira","last_name":"Topalovic"}],"_id":"37092","keyword":["General Earth and Planetary Sciences","General Environmental Science"],"intvolume":" 68","date_updated":"2023-01-31T12:55:33Z","doi":"10.14220/mdge.2021.68.4.0","publisher":"Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen","year":"2021","publication_status":"published","type":"book_editor","language":[{"iso":"ger"}],"department":[{"_id":"43"},{"_id":"36"},{"_id":"463"}],"citation":{"bibtex":"@book{Plien_Topalovic_2021, title={Mehrdeutigkeiten}, volume={68}, DOI={10.14220/mdge.2021.68.4.0}, publisher={Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen}, year={2021} }","chicago":"Plien, Christian, and Elvira Topalovic, eds. Mehrdeutigkeiten. Vol. 68. Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen, 2021. https://doi.org/10.14220/mdge.2021.68.4.0.","ama":"Plien C, Topalovic E, eds. Mehrdeutigkeiten. Vol 68. Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen; 2021. doi:10.14220/mdge.2021.68.4.0","ieee":"C. Plien and E. Topalovic, Eds., Mehrdeutigkeiten, vol. 68. Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen, 2021.","mla":"Plien, Christian, and Elvira Topalovic, editors. Mehrdeutigkeiten. Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen, 2021, doi:10.14220/mdge.2021.68.4.0.","short":"C. Plien, E. Topalovic, eds., Mehrdeutigkeiten, Vandenhoeck & Ruprecht GmbH & Co, KG, Göttingen, 2021.","apa":"Plien, C., & Topalovic, E. (Eds.). (2021). Mehrdeutigkeiten (Vol. 68). 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