(1)Liu, B.B., Peng, T.P.*, Fan, W.M., Zhao, G.C., Gao, J.F., Dong, X.H., Peng, B.X., 2020. Tectonic evolution and paleoposition of the Baoshan and Lincang Blocks of West Yunnan during the Paleozoic. Tectonics, 39, e2019TC006028. https://doi.org/10.1029/2019TC006028.
(2)Dong, X.H., Peng, T.P.*, Fan, W.M., Zhao, G.C., Zhang, J.Y., Liu, B.B., Gao, J.F., Peng, B.X., Liang, X.R., Zeng, W., Chen, L.L., 2019. Origin and tectonic implications of Early Cretaceous high- and low-Mg series rocks and mafic enclaves in the Bomi–Chayu Fold Belt, SE Tibet. Lithos, 334-335, 102-116.
(3)Zhang, J.Y., Peng, T.P.*, Fan, W.M., Zhao, G.C., Dong, X.H., Gao, J.F., Peng, B.X., Wei, C., Xia, X.P., Chen, L.L., and Liang, X.R., 2018. Petrogenesis of the Early Cretaceous granitoids and its mafic enclaves in the Northern Tengchong Terrane, southern margin of the Tibetan Plateau and its tectonic implications. Lithos, 318-319, 283-298.
(4)Deng, X.Q., Peng, T.P.*, Zhao, T.P., 2016. Geochronology and geochemistry of the late Paleoproterozoic aluminous A-type granite in the Xiaoqinling area along the southern margin of the North China Craton: Petrogenesis and tectonic implications. Precambrian Research, 285, 127-146.
(5)Peng, T.P.*, Fan, W.M., Zhao, G.C., Peng, B.X., Xia, X.P., Mao, Y.S., 2015. Petrogenesis of the early Paleozoic strongly peraluminous granites in the Western South China Block and its tectonic implications. Journal of Asian Earth Sciences, 98, 399-420.
(6)Peng, T.P.*, Zhao, G.C., Fan, W.M., Peng, B.X., Mao, Y.S., 2015. Late Triassic granitic magmatism in the Eastern Qiangtang, Eastern Tibetan Plateau: geochronology, petrogenesis and implications for the tectonic evolution of the Paleo-Tethys. Gondwana Research, 27, 1494-1508.
(7)Peng, T.P.*, Wilde, S.A., Fan, W.M., Peng, B.X., Mao, Y.S., 2013. Mesoproterozoic high Fe-Ti mafic magmatism in western Shandong, North China Craton: petrogenesis and implications for the final breakup of Columbia supercontinent. Precambrian Research, 235, 190-207.
(8)Peng, T.P.*, Zhao, G.C., Fan, W.M., Peng, B.X., Mao, Y.S., 2014. Zircon geochronology and Hf isotopic composition of Mesozoic intrusive rocks from Yidun Terrane, Eastern Tibetan Plateau: petrogenesis and their bearings with Cu mineralization. Journal of Asian Earth Sciences, 80, 18-33.
(9)Peng, T.P.*, Wilde, S.A., Fan, W.M., Peng, B.X., 2013. Neoarchean siliceous high-Mg basalts (SHMB) from the Taishan granite–greenstone terrane, Eastern North China Craton: Petrogenesis and tectonic implications. Precambrian Research, 228, 233-249.
(10)Peng, T.P.*, Wilde, S.A., Wang, Y.J., Fan, W.M., Peng, B.X., 2013. Mid-Triassic felsic igneous rocks from the southern Lancangjiang Zone, SW China: petrogenesis and implications for the evolution of Paleo-Tethys. Lithos, 168-169, 15-32.
(11)Peng, T.P.*, Wilde, S.A., Fan, W.M., Peng, B.X., 2013. Late Neoarchean potassic high Ba-Sr granites in the Taishan granite-greenstone terrane: Petrogenesis and implications for continental crustal evolution. Chemical Geology, 344, 23-41.
(12)Peng, T.P.*, Fan, W.M., Peng, B.X., 2012. Geochronology and geochemistry of late Archean adakitic plutons from the Taishan granite-greenstone Terrain: Implications for tectonic evolution of the eastern North China Craton. Precambrian Research, 208-211, 53-71.
(13)Peng, T.P.*, Wang, Y.J., Zhao, G.C., Fan, W.M., Peng, B.X., 2008. Arc-like volcanic rocks from the southern Lancangjiang zone, SW China: Geochronological and geochemical constraints on their petrogenesis and tectonic implications. Lithos, 102, 358-373.
(14)Peng, T.P., Zhao, G.C., Sun, M., Yin, C.Q., Leung, A., 2007. Petrology and P-T path of the Guyang mafic granulites: implications for tectonic evolution of the Western Block of the North China Craton. Geochimica et Cosmochimica Acta, A774.
(15)Peng, T.P., Wang, Y.J., Fan, W.M., Miao, L.C., Shi, Y.R., 2006. The SHRIMP zircon U-Pb dating of the felsic igneous rocks from Southern Lancangjiang and its tectonic implications. Science in China (series D), 10, 1032-1042.
(16)Peng, T.P., Xi, X.W., Wang, Y.J., Peng, B.X., 2005. Geochemical characteristics of the early Mesozoic granodiorites and their tectonic implications. Geotectonica et Metallogania, 29(1), 58-70.