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A Plantar Pressure Detection and Gait Analysis System Based on Flexible Triboelectric Pressure Sensor Array and Deep Learning
Conflict of Interest The authors declare no conflict of interest. Supporting Information Filename Description smll202405064-sup-0001-SuppMat.doc1.3 MB Supporting Information References 1, , , , , , Ageing Res. Rev. 2024, 93, 102147. 2, , , , , Gait Posture 2020, 80, 274. 3, , , , , , Gait Posture 2019, 72, 123. 4, , , , , , J. Diabetes Complicat. 2013, 27, 621. 5, , , , Q. J. Med. 2007, 100, 65. 6, , W. K. Wochenschr 2017, 129, 81. 7, , , , , , , , , , Lancet Neurol. 2019, 18, 697. 8, , , , , , , , IEEE T.
Me3Si−SiMe2[oCON(iPr)2−C6H4]: An Unsymmetrical Disilane Reagent for Regio- and Stereoselective Bis-Silylation of Alkynes
AbstractCarried on butterfly wings. The unsymmetrical air-stable disilane, Me3Si−SiMe2[oCON(iPr)2C6H4], bis-silylates terminal alkynes to yield Z-vinyl disilanes with high regioselectivity and good functional group tolerance. In their Communication (DOI: 10.1002/anie.201800513), Z. L. Song et al. describe a transformation that is difficult to achieve using traditional halide or methoxy-substituted unsymmetrical disilanes; a metamorphosis of cocoon-like alkynes into butterfly-like Z-vinyl silanes.
Me3Si−SiMe2[oCON(iPr)2−C6H4]: An Unsymmetrical Disilane Reagent for Regio‐ and Stereoselective Bis‐Silylation of Alkynes
Carried on butterfly wings. The unsymmetrical air‐stable disilane, Me Si−SiMe [oCON(iPr) C H ], bis‐silylates terminal alkynes to yield Z‐vinyl disilanes with high regioselectivity and good functional group tolerance. In their Communication (DOI: 10.1002/anie.201800513), Z. L. Song et al. describe a transformation that is difficult to achieve using traditional halide or methoxy‐substituted unsymmetrical disilanes; a metamorphosis of cocoon‐like alkynes into butterfly‐like Z‐vinyl silanes.
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