相关文献:
[1] Huang X, Zhang S, Liu L, et al., Superconductivity in a Copper(II)-Based Coordination Polymer with Perfect Kagome Structure, Angewandte Chemie-International Edition, 2018, 57, 146-150.
[2] Huang X, Li H, Tu Z, et al., Highly Conducting Neutral Coordination Polymer with Infinite Two-Dimensional Silver-Sulfur Networks, Journal of the American Chemical Society, 2018, 140, 15153-15156.
[3] Jin W, Liu L, Yang T, et al., Exploring Peltier effect in organic thermoelectric films, Nature Communications, 2018, 9, 3586.
[4] Huang D, Yao H, Cui Y, et al., Conjugated-Backbone Effect of Organic Small Molecules for n-Type Thermoelectric Materials with ZT over 0.2, Journal of the American Chemical Society, 2017, 139, 13013-13023.
[5] Sun Y, Qiu L, Tang L, et al., Flexible n-Type High-Performance Thermoelectric Thin Films of Poly(nickel-ethylenetetrathiolate) Prepared by an Electrochemical Method, Advanced Materials, 2016, 28, 3351-3358.
[6] Huang X, Sheng P, Tu Z, et al., A two-dimensional pi-d conjugated coordination polymer with extremely high electrical conductivity and ambipolar transport behaviour, Nat Commun, 2015, 6, 7408.
[7] Zang Y, Zhang F, Huang D, et al., Sensitive Flexible Magnetic Sensors using Organic Transistors with Magnetic-Functionalized Suspended Gate Electrodes, Advanced Materials, 2015, 27, 7979-7985.
[8] Zhang Q, Sun Y, Xu W, et al., Organic thermoelectric materials: emerging green energy materials converting heat to electricity directly and efficiently, Advanced Materials, 2014, 26, 6829-6851.
[9] Qin Y, Zhang J, Zheng X, et al., Charge-transfer complex crystal based on extended-pi-conjugated acceptor and sulfur-bridged annulene: charge-transfer interaction and remarkable high ambipolar transport characteristics, Advanced Materials, 2014, 26, 4093-4099.
[10] Zhu Daoben, Strategies towards High Performance Organic Thermoelectric Materials and Functional Devices, 2016, International Conference on Organic and Hybrid thermoelectrics, Japan.