
Liang Yi
Articles
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Oct 11, 2024 |
frontiersin.org | Liang Yi
State Key Laboratory of Lithospheric and Environmental Coevolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China Zhejiang Academy of Marine Sciences, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou, China Laboratory of Regional Geology and Tectonic, Far East Geological Institute, Far East Branch of Russian Academy of Sciences, Vladivostok, Russia State Key Laboratory of Marine Geology, Tongji University, Shanghai, China Key...
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Nov 30, 2023 |
pubs.rsc.org | Liang Yi |RWTH Aachen |Chen Zhu
O–H bond activation of β,γ-unsaturated oximes via hydrogen atom transfer (HAT) and photoredox dual catalysis† Hydrogen atom transfer (HAT) and photoredox dual catalysis provides a unique opportunity in organic synthesis, enabling the direct activation of C/Si/S–H bonds.
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Jun 12, 2023 |
frontiersin.org | Hema Achyuthan |Liang Yi |Wei Wang
Yiyuan Li1*, Hao Li2*, Alexandra Sumner3 and Jiafu Zhang4 1Hunan Provincial Institute of Cultural Relics and Archaeology, Changsha, China 2State Key Laboratory of Tibetan Plateau Earth System, Resources and Environment (TPESER), Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing, China 3Department of Anthropology, DePaul University, Chicago, IL, United States 4Colleage of Urban and Environmental Science, Peking University, Beijing, China The Late Pleistocene is a...
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Feb 24, 2023 |
science.org | Nisarga Paul |Lauren F. Sestito |Liang Yi
LATEST NEWS AbstractOogenesis is influenced by multiple environmental factors. In the fruit fly, Drosophila melanogaster, nutrition and mating have large impacts on an increase in female germline stem cells (GSCs). However, it is unclear whether these two factors affect this GSC increase interdependently. Here, we report that dietary sugars are crucial for the GSC increase after mating.
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Feb 24, 2023 |
science.org | Nisarga Paul |Lauren F. Sestito |Liang Yi
LATEST NEWS AbstractCells sense a wide variety of signals and respond by adopting complex transcriptional states. Most single-cell profiling is carried out today at cellular baseline, blind to cells’ potential spectrum of functional responses. Exploring the space of cellular responses experimentally requires access to a large combinatorial perturbation space.
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