retrieve:
Return the details about the given Memento id.

list:
List all Memento objects.

GET /api/v1/mementos/314/events/?format=api&ordering=-en_name
HTTP 200 OK
Allow: GET, HEAD, OPTIONS
Content-Type: application/json
Vary: Accept

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        {
            "id": 71215,
            "title": "IMX Colloquium - Surface engineering for phase change heat and mass transfer: controlling nucleation and bubble dynamics",
            "slug": "imx-colloquium-surface-engineering-for-phase-chang",
            "event_url": "https://memento.epfl.ch/event/imx-colloquium-surface-engineering-for-phase-chang",
            "visual_url": "https://memento.epfl.ch/image/32580/200x112.jpg",
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            "lang": "en",
            "start_date": "2026-04-13",
            "end_date": "2026-04-13",
            "start_time": "13:15:00",
            "end_time": "14:15:00",
            "description": "<p>Boiling is one of the most efficient modes of heat transfer, underlying many energy-intensive processes. Advancements in surface engineering have enabled significant enhancement of boiling heat transfer. However, performance gains rarely transfer across conditions or geometries. Two challenges illustrate why: bubble nucleation behavior is poorly reproducible; and increasing nucleating density to raise the heat transfer coefficient typically lowers the system’s maximum achievable heat flux. This talk presents our efforts in addressing each challenge by identifying the governing mechanism and designing for it.<br>\r\nIn the first part, micro-engineered silicon surfaces isolate two governing length scales: the hydrodynamic boundary layer thickness, which controls nucleation stability through inter-site shielding, and the bubble departure diameter, which governs vapor removal after full activation. We experimentally show that nucleation stability responds to the former length scale (~0.24 mm); heat transfer in the activated regime responds to the latter length scale (~2.5 mm).<br>\r\nThe second study addresses the high-heat-flux limit, where large vapor structures block liquid return. Capillary wicking through copper inverse opals (~10 μm pores) supplies liquid beneath the vapor. Crucially, the pore cavities are themselves the nucleation sites, so wicking capacity and nucleation density derive from the same structure. Further, CuO nanograss on the pore walls suppresses vapor penetration into the porous layer, enabling thicker structures and greater capillary head. The result is simultaneous enhancement of heat transfer coefficients and maximum heat fluxes.<br>\r\nTogether, the two works show that mechanism-targeted surface design yields gains that empirical topography optimization does not. They point toward a broader design principle: that nucleation and interfacial transport, treated as controllable rather than given, offer a promising path to engineering phase change processes across applications.<br>\r\n<br>\r\n<a href=\"https://dx.doi.org/10.1021/acsami.9b20520?ref=pdf\">https://dx.doi.org/10.1021/acsami.9b20520?ref=pdf</a><br>\r\n<a href=\"https://doi.org/10.1038/s41467-019-10209-w\">https://doi.org/10.1038/s41467-019-10209-w </a><br>\r\n<br>\r\nBio: Zhengmao Lu is a Tenure Track Assistant Professor of Mechanical Engineering at EPFL. Prior to joining EPFL, Zhengmao was a postdoctoral scholar in the Department of Materials Science and Engineering at MIT with Prof. Jeffrey Grossman. He received his Ph.D. and M.S. in Mechanical Engineering from MIT, both advised by Prof. Evelyn Wang. At EPFL, Zhengmao leads the Energy Transport Advances Laboratory (<em>η</em>-Lab), aiming to deepen our understanding of phase change phenomena and develop more sustainable energy and water technologies by optimizing interfacial transport. Zhengmao is a recipient of the ERC Starting Grant, MicroFIPS Outstanding Early Career Award,  Keck Travel Award in Thermal Sciences, and the Outstanding Graduate Research Award from MIT Mechanical Engineering.</p>",
            "image_description": "",
            "creation_date": "2026-02-24T10:37:19",
            "last_modification_date": "2026-03-30T08:42:06",
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            "link_url": "https://www.epfl.ch/labs/eta-lab/",
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            "speaker": "Prof. Zhengmao Lu, EPFL",
            "organizer": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
            "contact": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
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        {
            "id": 71499,
            "title": "IMX Talks - Value-added utilization of biomass and CO2 for sustainable aviation fuels and biomaterials",
            "slug": "imx-talks-value-added-utilization-of-biomass-and-2",
            "event_url": "https://memento.epfl.ch/event/imx-talks-value-added-utilization-of-biomass-and-2",
            "visual_url": "https://memento.epfl.ch/image/32841/200x112.jpg",
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            "lang": "en",
            "start_date": "2026-04-16",
            "end_date": "2026-04-16",
            "start_time": "15:30:00",
            "end_time": "16:15:00",
            "description": "<p>The conversion of low-carbon resources such as biomass and CO<sub>2</sub> into synthetic liquid fuels, value-added chemicals, and biomaterials is a crucial approach for global carbon emission reduction. In this context, this talk will focus on recent research advances on biomass and CO<sub>2</sub> conversion to sustainable aviation fuels (SAF), chemicals and bio-based materials. Considering the challenges associated with low-carbon resources, including dispersed distribution, significant fluctuations in raw material composition, and high conversion costs, a distributed-centralized system utilizing alcohols as key platform molecules has been proposed. Alcohol synthesis from biomass and CO<sub>2</sub> will be presented with the focus on catalysis for methanol (thermocatalysis) and ethanol synthesis (electrocatalysis) from CO<sub>2</sub>. Conversion of alcohol to SAF will be introduced with discussions on the design of multifunctional catalysts for alcohol conversion, the dynamic evolution of catalytic sites, and the strategies for tuning product distributions. Additionally, a few examples of biobased materials, such as cellulose nanofiber-based biomaterials and bio-based nylon precursor and polyester precursor, will be presented.<br>\r\n<br>\r\nBio: Dr. Zhenglong Li is the “Qiushi” Chair Professor of Zhejiang University. He is the lead of the sustainable aviation fuels research of the State Key Laboratory of Bio-based Transportation Fuel Technology, director of the Biomass Value-Added Utilization Research Center, and the director of the Bio-based Chemicals Division in the Institute of Zhejiang University-Quzhou. His research is dedicated to the high-value utilization of biomass and carbon dioxide to synthesize sustainable aviation fuel, chemicals, and bio-based materials. He was the team lead in the biomass conversion area at the Oak Ridge National Laboratory (United States) prior to joining Zhejiang University. He was the committee member for the Chemical Catalysis for Bioenergy Consortium under the United States Department of Energy (DOE). His group focus on in-depth understanding of the catalytic processes of biomass and carbon dioxide at the molecular level to guide catalyst design, process development, and industrial application, especially R&amp;D of SAF, bio-based chemicals, key bio-based polymer building blocks. His research group has published many high-impact scientific papers in top journals such as <em>J. Am. Chem. Soc., Nat. Commun., Proc. Natl. Acad. Sci. U.S.A., ACS Catal., Appl. Catal. B.,</em> and others. In terms of technology commercialization, he has developed new core technologies such as bio-based alcohols conversion for sustainable aviation fuel and bio-based biodegradable materials.<br>\r\n </p>",
            "image_description": "",
            "creation_date": "2026-03-31T08:53:46",
            "last_modification_date": "2026-03-31T08:53:57",
            "link_label": "Website",
            "link_url": "https://person.zju.edu.cn/en/0021139",
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            "speaker": "Prof. Zhenglong Li, Zhejiang University, China",
            "organizer": "Prof. Tiffany Abitbol",
            "contact": "Prof. Tiffany Abitbol",
            "is_internal": "False",
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        },
        {
            "id": 71500,
            "title": "IMX Talks - Sustainable green bio-polycarbonates from bio-based feedstocks and CO2 toward carbon-neutral goals",
            "slug": "imx-talks-sustainable-green-bio-polycarbonates-f-2",
            "event_url": "https://memento.epfl.ch/event/imx-talks-sustainable-green-bio-polycarbonates-f-2",
            "visual_url": "https://memento.epfl.ch/image/32842/200x112.jpg",
            "visual_large_url": "https://memento.epfl.ch/image/32842/720x405.jpg",
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            "lang": "en",
            "start_date": "2026-04-16",
            "end_date": "2026-04-16",
            "start_time": "16:15:00",
            "end_time": "17:00:00",
            "description": "<p>The growing challenges of plastic pollution, fossil resource depletion, and carbon emissions have accelerated the search for sustainable alternatives to polymers. This presentation will focus on the development of fully bio-based polycarbonates, synthesized through the polymerization of carbon dioxide with renewable epoxides. We will first detail our laboratory’s work in generating a diverse portfolio monomer from a wide range of bio-feedstocks including plant oils, terpenes, lignocellulosic biomass, and industrial byproducts. Another focus is the effect of monomer structure on resulting polymer properties and performance, and how post-polymerization modification strategies can be employed to tailor materials for specific applications. (2) Applications of bio-based polycarbonates will be then discussed in fields such as coatings, biomedical materials, adhesives, and their recycling pathways. (3) An outline of future directions will be explored, emphasizing the roles of advanced catalyst design, AI-driven manufacturing, and supportive policy frameworks to enable scalable and sustainable production. The integration of CO<sub>2</sub> utilization with renewable feedstocks presents a compelling route toward circular and carbon–neutral materials.<br>\r\n<br>\r\nBio: Shaoqing Cui, Ph.D., is a Principal Investigator under the Zhejiang University’s \"Hundred Talents Program\" and a recipient of China’s National High-level Talent Program - (Overseas Young Talent Project). She used to be an Assistant Professor at the University of Tennessee-Knoxville (United States) before joining Zhejiang University. Her research focuses on the valorization of agricultural waste and carbon dioxide conversion and utilization, including high-value utilization of agricultural straw, waste oils as well as  microalgae biomass. She has led and participated in multiple research projects, including a U.S. Department of Energy project on the efficient catalytic conversion of waste-treatment microalgae and CO<sub>2</sub> into high-value plastic products, also two U.S. Department of Agriculture projects. Since joining the Zhejiang University in 2023, she has also been leading several major research initiatives, including projects funded by the National Natural Science Foundation of China and Zhejiang Provincial Key R&amp;D Programs.</p>",
            "image_description": "",
            "creation_date": "2026-03-31T08:57:25",
            "last_modification_date": "2026-03-31T08:57:39",
            "link_label": "Website",
            "link_url": "https://person.zju.edu.cn/en/0022234",
            "canceled": "False",
            "cancel_reason": "",
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            "speaker": "Dr. Shaoqing Cui, Zhejiang University, China",
            "organizer": "Prof. Tiffany Abitbol",
            "contact": "Prof. Tiffany Abitbol",
            "is_internal": "False",
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        {
            "id": 71120,
            "title": "IMX Colloquium - Domain walls in multiferroics and multiferroic domain walls",
            "slug": "imx-colloquium-domain-walls-in-multiferroics-and-2",
            "event_url": "https://memento.epfl.ch/event/imx-colloquium-domain-walls-in-multiferroics-and-2",
            "visual_url": "https://memento.epfl.ch/image/32492/200x112.jpg",
            "visual_large_url": "https://memento.epfl.ch/image/32492/720x405.jpg",
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            "lang": "en",
            "start_date": "2026-04-20",
            "end_date": "2026-04-20",
            "start_time": "13:15:00",
            "end_time": "14:15:00",
            "description": "<p>A reason for the interest in multiferroics is that magnetic and electric orders do not simply exist side by side, but exhibit \"added value\" in the form of magnetoelectric interactions and functionalities between the ordered states. Likewise, in a ferroic material, regions with different orientation of the order parameter, the domains, do not simply exist side by side, but they exhibit new phases and properties in the domain walls. Because of their discontinuous, confined, and topological nature, domain walls exhibit functional states that are not possible in the bulk. Continuing this line of thought, one should expect domain walls in multiferroics to be a particularly rich source of novel phenomena. Here one must distinguish between (i) \"domain walls in multiferroics\", where only the ferroelectric (or magnetic) order is considered so that little is learned about the multiferroic state, and (ii) \"multiferroic domain walls\" where the ferroic phase coexistence of the wall itself is of interest. The latter are rarely studied, and I will discuss some of their intriguing features in my talk.<br>\r\n<br>\r\nBio: Professor Manfred Fiebig is known for his work in light-matter interaction in systems with strong electronic correlations. (Multi-) ferroics are of particular interest to him. After obtaining his doctoral degree in physics at the University of Dortmund, he worked at the University of Tokyo, the Max Born Institut Berlin, and the University of Bonn before he was appointed as Professor of Multifunctional Ferroic Materials in the Department of Materials at ETH Zurich in 2011. In 2021 he also became a member of the National Research Council of the Swiss National Science Foundation (SNSF), and he was elected as Corresponding Member of the Academy of Sciences and Literature | Mainz. Most recent distinctions include the 2022 APS Frank Isakson Prize for Optical Effects in Solids as well as the of the Stern Gerlach Medal in 2023, the highest distinction in Experimental Physics of the German Physical Society. He is one of the founders of the ETH Spinoff Company “3Wave Instruments”.</p>",
            "image_description": "",
            "creation_date": "2026-02-12T08:41:37",
            "last_modification_date": "2026-03-09T10:58:25",
            "link_label": "Website",
            "link_url": "https://mat.ethz.ch/department/people/person-detail.fiebig.html",
            "canceled": "False",
            "cancel_reason": "",
            "place_and_room": "MXF 1",
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            "speaker": "Prof. Manfred Fiebig, ETHZ",
            "organizer": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
            "contact": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
            "is_internal": "False",
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        {
            "id": 71121,
            "title": "IMX Colloquium - Polymers for people and planet - from solving problems in the lab to solving problems in the world",
            "slug": "imx-colloquium-polymers-for-people-and-planet-fr-2",
            "event_url": "https://memento.epfl.ch/event/imx-colloquium-polymers-for-people-and-planet-fr-2",
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            "lang": "en",
            "start_date": "2026-04-27",
            "end_date": "2026-04-27",
            "start_time": "13:15:00",
            "end_time": "14:15:00",
            "description": "<p>Polymers for people and planet - from solving problems in the lab to solving problems in the world</p>",
            "image_description": "",
            "creation_date": "2026-02-12T08:50:34",
            "last_modification_date": "2026-02-16T08:45:19",
            "link_label": "Website",
            "link_url": "https://www.macrocycle.tech/",
            "canceled": "False",
            "cancel_reason": "",
            "place_and_room": "MXF 1",
            "url_place_and_room": "https://plan.epfl.ch/?room==MXF%201",
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            "spoken_languages": [
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            ],
            "speaker": "Dr. Jan-Georg Rosenboom, MIT / MacroCycle, USA  ",
            "organizer": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
            "contact": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
            "is_internal": "False",
            "theme": "",
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        {
            "id": 71122,
            "title": "IMX Colloquium - Instructive soft biomaterials for tissue response by design: steering events at the biointerface",
            "slug": "imx-colloquium-instructive-soft-biomaterials-for-t",
            "event_url": "https://memento.epfl.ch/event/imx-colloquium-instructive-soft-biomaterials-for-t",
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            "lang": "en",
            "start_date": "2026-05-04",
            "end_date": "2026-05-04",
            "start_time": "13:15:00",
            "end_time": "14:15:00",
            "description": "",
            "image_description": "",
            "creation_date": "2026-02-12T08:53:46",
            "last_modification_date": "2026-02-24T08:31:46",
            "link_label": "Website",
            "link_url": "https://www.empa.ch/web/s404/dr.-katharina-maniura",
            "canceled": "False",
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            "speaker": "Prof. Katharina Maniura, EMPA",
            "organizer": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
            "contact": "Prof. Gregor Jotzu, Prof. Fabien Sorin &amp; Prof. Esther Amstad",
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        {
            "id": 71123,
            "title": "IMX Colloquium - Ultrafast Electron Microscopy",
            "slug": "imx-colloquium-ultrafast-electron-microscopy",
            "event_url": "https://memento.epfl.ch/event/imx-colloquium-ultrafast-electron-microscopy",
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            "lang": "en",
            "start_date": "2026-05-11",
            "end_date": "2026-05-11",
            "start_time": "13:15:00",
            "end_time": "14:15:00",
            "description": "",
            "image_description": "",
            "creation_date": "2026-02-12T08:57:58",
            "last_modification_date": "2026-02-24T08:37:44",
            "link_label": "Website",
            "link_url": "https://www.mpinat.mpg.de/ropers",
            "canceled": "False",
            "cancel_reason": "",
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