Chem-Station<\/em><\/strong> \u673a\u7406<\/strong>(\u4e5d<\/strong>)<\/strong><\/h4>\n\u4e3a\u4e0b\u9762\u7684\u53cd\u5e94\u63d0\u51fa\u4e00\u79cd\u5408\u7406\u7684\u53cd\u5e94\u673a\u7406\u3002
<\/p>\n
\u8bf7\u6ce8\u610f\u6bcf\u6b65\u4e2d\u4ea7\u7269\u7684\u7acb\u4f53\u6784\u578b\uff0c\u540c\u65f6\u6ce8\u610f\u63d0\u51fa\u7684\u53cd\u5e94\u673a\u7406\u5fc5\u987b\u80fd\u591f\u89e3\u91ca\u6bcf\u6b65\u4e2d\u4ea7\u7269\u7684\u7acb\u4f53\u9009\u62e9\u6027\u3002<\/p>\n
Chem-Station<\/em><\/strong> \u673a\u7406<\/strong>(\u4e5d<\/strong>)<\/strong>\u7684\u53c2\u8003\u7b54\u6848<\/strong><\/h4>\n<\/div>\n
<\/p>\n
\n\u8bc4\u5206\u6807\u51c6\uff1a<\/strong><\/h4>\n(1) \u53cd\u5e94\u673a\u7406\u5408\u7406\uff0c\u5173\u952e\u4e2d\u95f4\u4f53\u6b63\u786e\uff0c\u7b26\u5408\u6709\u673a\u5316\u5b66\u7684\u76f8\u5173\u673a\u7406\u53ca\u7ed3\u6784\u7406\u8bba\uff0c\u65e0\u660e\u663e\u7684\u7406\u8bba\u77e5\u8bc6\u9519\u8bef\u4ee5\u53ca\u65e0\u4ea7\u7269\u6784\u578b\u6807\u6ce8\u9519\u8bef (75-80\u5206)\u3002<\/p>\n
(2) \u53cd\u5e94\u673a\u7406\u7bad\u5934\u6807\u6ce8\u89c4\u8303\u5168\u9762\uff0c\u7535\u5b50\u8f6c\u79fb\u4f4d\u7f6e\u6e05\u6670\u660e\u786e\uff0c\u7535\u5b50\u8f6c\u79fb\u65b9\u5411\u51c6\u786e\u65e0\u8bef (10-15\u5206)\u3002<\/p>\n
(3) \u5728\u7b26\u5408\u4e0a\u8ff0\u4e24\u70b9\u7684\u57fa\u7840\u4e0a\uff0c\u56fe\u7247\u7f8e\u89c2\uff0c\u80fd\u591f\u660e\u663e\u5438\u5f15\u8bfb\u8005\u9605\u8bfb (5-10\u5206)\u3002<\/p>\n<\/div>\n
\u53c2\u8003\u6587\u732e\uff1a<\/strong><\/h4>\n\nE. N. Hancock, E. L. Kuker, D. J. Tantillo, M. K. Brown, Angew. Chem. Int. Ed<\/em>. 2020<\/strong>, 59<\/em>, 436. doi: 10.1002\/anie.201910901<\/a>.<\/p>\ncrossed [2 + 2] cycloaddition:<\/p>\n
(1) M. A. Ischay, M. S. Amenta, T. P. Yoon, Chem. Sci.<\/em><\/strong> 2012<\/strong>, 3<\/em><\/strong>, 2807. doi: 10.1039\/C2SC20658G<\/a>.<\/p>\n(2) M. Reinhold, J. Steinebach, C. Golza, J. C. L. Walker, Chem. Sci.<\/em><\/strong> 2023<\/strong>, 14<\/em><\/strong>, 9885. doi: 10.1039\/D3SC03083K<\/a>.<\/p>\n(3) J. Guo, Q. Xia, W. Tang, Z. Li, X. Wu, L. Liu, W. To, H. Shu, K. Low, P. C. Y. Chow, T. W. B. Lo, J. He, Nature Catal.<\/em> 2024<\/strong>, 7<\/em>, 307. doi: 10.1038\/s41929-024-01112-9.<\/a><\/p>\n(4) J. Zhao, J. L. Brosmer, Q. Tang, Z. Yang, K. N. Houk, P. L. Diaconescu, O. Kwon, J. Am. Chem. Soc.<\/em>\u00a02017<\/strong>, 139<\/em>, 9807. doi: 10.1021\/jacs.7b05277<\/a>.<\/p>\n

<\/p>\n
\u8bc4\u5206\u6807\u51c6\uff1a<\/strong><\/h4>\n(1) \u53cd\u5e94\u673a\u7406\u5408\u7406\uff0c\u5173\u952e\u4e2d\u95f4\u4f53\u6b63\u786e\uff0c\u7b26\u5408\u6709\u673a\u5316\u5b66\u7684\u76f8\u5173\u673a\u7406\u53ca\u7ed3\u6784\u7406\u8bba\uff0c\u65e0\u660e\u663e\u7684\u7406\u8bba\u77e5\u8bc6\u9519\u8bef\u4ee5\u53ca\u65e0\u4ea7\u7269\u6784\u578b\u6807\u6ce8\u9519\u8bef (75-80\u5206)\u3002<\/p>\n
(2) \u53cd\u5e94\u673a\u7406\u7bad\u5934\u6807\u6ce8\u89c4\u8303\u5168\u9762\uff0c\u7535\u5b50\u8f6c\u79fb\u4f4d\u7f6e\u6e05\u6670\u660e\u786e\uff0c\u7535\u5b50\u8f6c\u79fb\u65b9\u5411\u51c6\u786e\u65e0\u8bef (10-15\u5206)\u3002<\/p>\n
(3) \u5728\u7b26\u5408\u4e0a\u8ff0\u4e24\u70b9\u7684\u57fa\u7840\u4e0a\uff0c\u56fe\u7247\u7f8e\u89c2\uff0c\u80fd\u591f\u660e\u663e\u5438\u5f15\u8bfb\u8005\u9605\u8bfb (5-10\u5206)\u3002<\/p>\n<\/div>\n
\u53c2\u8003\u6587\u732e\uff1a<\/strong><\/h4>\n\nE. N. Hancock, E. L. Kuker, D. J. Tantillo, M. K. Brown, Angew. Chem. Int. Ed<\/em>. 2020<\/strong>, 59<\/em>, 436. doi: 10.1002\/anie.201910901<\/a>.<\/p>\ncrossed [2 + 2] cycloaddition:<\/p>\n
(1) M. A. Ischay, M. S. Amenta, T. P. Yoon, Chem. Sci.<\/em><\/strong> 2012<\/strong>, 3<\/em><\/strong>, 2807. doi: 10.1039\/C2SC20658G<\/a>.<\/p>\n(2) M. Reinhold, J. Steinebach, C. Golza, J. C. L. Walker, Chem. Sci.<\/em><\/strong> 2023<\/strong>, 14<\/em><\/strong>, 9885. doi: 10.1039\/D3SC03083K<\/a>.<\/p>\n(3) J. Guo, Q. Xia, W. Tang, Z. Li, X. Wu, L. Liu, W. To, H. Shu, K. Low, P. C. Y. Chow, T. W. B. Lo, J. He, Nature Catal.<\/em> 2024<\/strong>, 7<\/em>, 307. doi: 10.1038\/s41929-024-01112-9.<\/a><\/p>\n(4) J. Zhao, J. L. Brosmer, Q. Tang, Z. Yang, K. N. Houk, P. L. Diaconescu, O. Kwon, J. Am. Chem. Soc.<\/em>\u00a02017<\/strong>, 139<\/em>, 9807. doi: 10.1021\/jacs.7b05277<\/a>.<\/p>\n
E. N. Hancock, E. L. Kuker, D. J. Tantillo, M. K. Brown, Angew. Chem. Int. Ed<\/em>. 2020<\/strong>, 59<\/em>, 436. doi: 10.1002\/anie.201910901<\/a>.<\/p>\n crossed [2 + 2] cycloaddition:<\/p>\n (1) M. A. Ischay, M. S. Amenta, T. P. Yoon, Chem. Sci.<\/em><\/strong> 2012<\/strong>, 3<\/em><\/strong>, 2807. doi: 10.1039\/C2SC20658G<\/a>.<\/p>\n (2) M. Reinhold, J. Steinebach, C. Golza, J. C. L. Walker, Chem. Sci.<\/em><\/strong> 2023<\/strong>, 14<\/em><\/strong>, 9885. doi: 10.1039\/D3SC03083K<\/a>.<\/p>\n (3) J. Guo, Q. Xia, W. Tang, Z. Li, X. Wu, L. Liu, W. To, H. Shu, K. Low, P. C. Y. Chow, T. W. B. Lo, J. He, Nature Catal.<\/em> 2024<\/strong>, 7<\/em>, 307. doi: 10.1038\/s41929-024-01112-9.<\/a><\/p>\n (4) J. Zhao, J. L. Brosmer, Q. Tang, Z. Yang, K. N. Houk, P. L. Diaconescu, O. Kwon, J. Am. Chem. Soc.<\/em>\u00a02017<\/strong>, 139<\/em>, 9807. doi: 10.1021\/jacs.7b05277<\/a>.<\/p>\n