E. G. B. Eden-Rump
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1
Total Citations
215
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About
E. G. B. Eden-Rump is a pioneering figure at the intersection of supramolecular chemistry and automated discovery, whose work has redefined how complex molecular architectures are designed and synthesized. Their primary research areas include organic cage compounds, catenanes, and high-throughput methodologies for materials discovery. Eden-Rump’s landmark contribution, the 2018 paper “High-throughput discovery of organic cages and catenanes using computational screening fused with robotic synthesis,” has garnered over 215 citations, reflecting its transformative impact. This work introduced an integrated platform that combines computational prediction with robotic automation, enabling the rapid exploration of vast synthetic spaces that would be impractical via traditional targeted design. By demonstrating that multicomponent assembly reactions can be systematically screened to yield diverse products—from porous organic cages to mechanically interlocked molecules—Eden-Rump has provided a powerful blueprint for accelerating supramolecular synthesis. Their achievements not only advance fundamental understanding of self-assembly but also open new avenues for functional materials in gas storage, catalysis, and molecular machinery. For students and researchers, Eden-Rump exemplifies how merging computation with automation can unlock creativity in chemical space, making complex synthesis accessible and scalable.
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Top Papers
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