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We learned from the Beijing High Pressure Research Center that Li Kuo's team, along with research teams from many universities such as Nankai University and Peking University, innovated and proposed a new strategy for high-pressure solid-phase topological polymerization to successfully synthesize carbon-coated single-metal atomic chains at the micron scale, with orderly arrangement of atoms, and a highly stable structure to achieve milligram batch preparation, breaking through long-standing technical bottlenecks in the field of preparation of low-dimensional metal materials. The relevant results were published in the international academic journal “Science”. In response to industry pain points, the research team selected beta-phthalocyanine copper as a reaction precursor to accurately control molecular spacing through high-pressure means. According to our understanding, this synthesis strategy has good versatility, can be extended to various metal systems such as cobalt, nickel, zinc, etc., and provides a new technical path for the development of novel low-dimensional functional materials.

Zhitongcaijing·08/24/2026 03:25:03
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We learned from the Beijing High Pressure Research Center that Li Kuo's team, along with research teams from many universities such as Nankai University and Peking University, innovated and proposed a new strategy for high-pressure solid-phase topological polymerization to successfully synthesize carbon-coated single-metal atomic chains at the micron scale, with orderly arrangement of atoms, and a highly stable structure to achieve milligram batch preparation, breaking through long-standing technical bottlenecks in the field of preparation of low-dimensional metal materials. The relevant results were published in the international academic journal “Science”. In response to industry pain points, the research team selected beta-phthalocyanine copper as a reaction precursor to accurately control molecular spacing through high-pressure means. According to our understanding, this synthesis strategy has good versatility, can be extended to various metal systems such as cobalt, nickel, zinc, etc., and provides a new technical path for the development of novel low-dimensional functional materials.