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Pressure induced polymerization of acetylide anions in CaC2 and 107 fold enhancement of electrical conductivity.
Zheng, Haiyan; Wang, Lijuan; Li, Kuo; Yang, Youyou; Wang, Yajie; Wu, Jiajia; Dong, Xiao; Wang, Chun-Hai; Tulk, Christopher A; Molaison, Jamie J; Ivanov, Ilia N; Feygenson, Mikhail; Yang, Wenge; Guthrie, Malcolm; Zhao, Yusheng; Mao, Ho-Kwang; Jin, Changqing.
  • Zheng H; Center for High Pressure Science and Technology Advanced Research (HPSTAR) , PO Box 8009 , Beijing , 100088 , China . Email: likuo@hpstar.ac.cn.
  • Wang L; Center for High Pressure Science and Technology Advanced Research (HPSTAR) , PO Box 8009 , Beijing , 100088 , China . Email: likuo@hpstar.ac.cn.
  • Li K; Center for High Pressure Science and Technology Advanced Research (HPSTAR) , PO Box 8009 , Beijing , 100088 , China . Email: likuo@hpstar.ac.cn.
  • Yang Y; Geophysical Laboratory , Carnegie Institution of Washington , Washington DC , 20015 , USA.
  • Wang Y; COFCO Nutrition & Health Research Institute , Beijing Key Laboratory of Nutrition Health and Food Safety , Beijing 100209 , China.
  • Wu J; Center for High Pressure Science and Technology Advanced Research (HPSTAR) , PO Box 8009 , Beijing , 100088 , China . Email: likuo@hpstar.ac.cn.
  • Dong X; Agilent Technologies (China) Co., Ltd. , Wangjingbei Road, Chaoyang District , Beijing 100102 , China.
  • Wang CH; Center for High Pressure Science and Technology Advanced Research (HPSTAR) , PO Box 8009 , Beijing , 100088 , China . Email: likuo@hpstar.ac.cn.
  • Tulk CA; Department of Chemistry , Durham University , South Road , Durham , DH1 3 LE , UK.
  • Molaison JJ; Spallation Neutron Source , Oak Ridge National Laboratory , Oak Ridge , TN 37830 , USA.
  • Ivanov IN; Spallation Neutron Source , Oak Ridge National Laboratory , Oak Ridge , TN 37830 , USA.
  • Feygenson M; Centre for Nanophase Materials Sciences , Oak Ridge National Laboratory , Oak Ridge , TN 37831 , USA.
  • Yang W; Spallation Neutron Source , Oak Ridge National Laboratory , Oak Ridge , TN 37830 , USA.
  • Guthrie M; Center for High Pressure Science and Technology Advanced Research (HPSTAR) , PO Box 8009 , Beijing , 100088 , China . Email: likuo@hpstar.ac.cn.
  • Zhao Y; Geophysical Laboratory , Carnegie Institution of Washington , Washington DC , 20015 , USA.
  • Mao HK; HPSynC , Geophysical Laboratory , Carnegie Institution of Washington , Argonne , IL 60439 , USA.
  • Jin C; Geophysical Laboratory , Carnegie Institution of Washington , Washington DC , 20015 , USA.
Chem Sci ; 8(1): 298-304, 2017 Jan 01.
Article en En | MEDLINE | ID: mdl-28616132
ABSTRACT
Transformation between different types of carbon-carbon bonding in carbides often results in a dramatic change of physical and chemical properties. Under external pressure, unsaturated carbon atoms form new covalent bonds regardless of the electrostatic repulsion. It was predicted that calcium acetylide (also known as calcium carbide, CaC2) polymerizes to form calcium polyacetylide, calcium polyacenide and calcium graphenide under high pressure. In this work, the phase transitions of CaC2 under external pressure were systematically investigated, and the amorphous phase was studied in detail for the first time. Polycarbide anions like C66- are identified with gas chromatography-mass spectrometry and several other techniques, which evidences the pressure induced polymerization of the acetylide anions and suggests the existence of the polyacenide fragment. Additionally, the process of polymerization is accompanied with a 107 fold enhancement of the electrical conductivity. The polymerization of acetylide anions demonstrates that high pressure compression is a viable route to synthesize novel metal polycarbides and materials with extended carbon networks, while shedding light on the synthesis of more complicated metal organics.