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    31. Guo, J.; Xu, L.; Cai, M.; Dong, Z.; Mu, Q.; Wang, X.; Fan, H.; Teng, F.; He, X.; Jiang, H.; Hu, P.*,Crystal Growth, Intermolecular Noncovalent Interactions, and Photoluminescence Properties of Halogenated Phthalic Anhydride-Based Organic Charge Transfer Cocrystals. Crystal Growth & Design 2024, 24 (3), 1293-1301

    30. Cai, M.; Xu, L.; Guo, J.; Yang, X.; He, X.; Hu, P.*,Recent advances in metal-free electrocatalysts for the hydrogen evolution reaction. Journal of Materials Chemistry A 2024, 12 (2), 592-612.

    29. Xu, L.; Yang, M.; Lu, Q.; Ren, Y.; Chen, Y.; Guo, J.; Cai, M.; Miao, X.; Teng, F.; Fan, H.; Zhang, C.; He, X.; Hu, P.*,2D BiSeI Nanosheets for Broadband Self-Powered Photoelectrochemical Photodetector. Physical Status Solidi RRL 2023, 2300183

    28. Li, K.; Xu, L.; Lu, Q.; Hu, P.*,Fast Response Self-Powered UV-Vis-NIR Broadband Photodetector Based on AgIn5Se8/t-Se Heterojunction. Chinese Physical B 2023, 32 (11), 118503

    27. Hu, P.*, Hu, P., Vu, T., Li, M., Wang, S., Ke, Y., Zeng, X., Mai, L.*, Long, Y.*, Vanadium Oxide: Phase Diagrams, Structures, Synthesis, and Applications. Chemical Reviews 2023, 123(8), 4353-4415 

    26. Ren, Y., Miao, X., Zhang, J., Lu, Q., Chen, Y., Fan, H., Teng, F., Zhai, H., He, X., Long, Y.,* Zhang, C.,* Hu, P.*, Post cobalt doping and defect engineering of ficient hydrogen evolution reaction. Journal of Materials Chemistry A 2023, 11(6), 2690-2697 

    25. Lu, Q.; Xu, L.; Ren, Y.; Gao, J.; Chen, Y.; Song, J.; Fan, H.; Teng, F.*; He, X.*; Hu, P.*, Fast Response Self-Powered UV–Vis–NIR Broadband Photodetector Based on a Type II Heterojunction of AgIn5Se8/FePSe3. ACS Applied Electronic Materials 2022, 4(11), 5284-5291

    24. Chen, Y.; Qi, H.; Sun, J.; Lei, Z.; Liu, Z.-H.; Hu, P.*; He, X.*, Synergy Effect of High-Stability of VS4 Nanorods for Sodium Ion Battery. Molecules 2022, 27 (19), 6303

    23. Gao, J.; Guo, J.; Chen, Y.; Deng, S.; Lu, Q.; Ren, Y.; Wang, X.; Fan, H.; Teng, F.; He, X.*; Jiang, H.*; Hu, P.*, The competitive role of C–H⋯X (X = F, O) and π–π interactions in contributing to the degree of charge transfer in organic cocrystals: a case study of heteroatom-free donors with p-fluoranil (FA). CrystEngComm 2022, 24 (36), 6429-6438

    22Hu, P.; He, X.; Jiang, H. Greater than 10 cm 2  V 1  s 1 : A breakthrough of organic semiconductors for field‐effect transistors. InfoMat 2021. 3, 613-630.

    21.  Qi, H.M.; Wang, L.N.; Zuo, T.T.; Deng, S.L.; Li, Q.; Liu, Z.H.; Hu, P.*; He, X.X.* Hollow Structure VS2@Reduced Graphene Oxide (RGO) Architecture for Enhanced Sodium-Ion Battery Performance. ChemElectroChem 2020. 7, 78-85.

    20.  Huang, Y.-E.+; Wang, X.-Z.+; Hu, P.+; Qi, X.-H.; Huang, X.-Y.; Kloc, C.; Wu, X.; Du, K.-Z. Single-photon upconversion in 6-pentaceneone crystal from bulk to ultrathin flakes. Nanoscale 2020. 12, 6227-6232.

    19.  Gao, J.; Zhai, H.; Hu, P.*; Jiang, H*. The Stoichiometry of TCNQ-Based Organic Charge-Transfer Cocrystals. Crystals 2020. 10, 933.

    18.  Zuo, T.; He, X.*; Hu, P.*; Jiang, H*. Organic‐Inorganic Hybrid Perovskite Single Crystals: Crystallization, Molecular Structures, and Bandgap Engineering. ChemNanoMat 2019. 5, 278-289.

    17.  Wang, L.; Li, Q.; Wang, Z.; Qi, H.; Zuo, T.; He, X.*; Hu, P*. SnS2 Hollow Spheres: Template‐Free Synthesis and Growth Mechanism. Phys. Status Solidi RRL 2019. 0, 1900185.

    16Hu, P.; Ye, J.; Jiang, H. Which Isomer is Better for Charge Transport: Anti- or Syn-? J. Mater. Chem. C 2019. 7, 5858-5873.

    15 Hu, P.; Long, G.; Chaturvedi, A.; Wang, S.; Tan, K.; He, Y.; Zheng, L.; Liu, G.; Ke, Y.; Zhou, Y.; Jiang, H.; Liu, Z.; Zhang, M.; Long, Y. Agent-assisted VSSe ternary alloy single crystals as an efficient stable electrocatalyst for the hydrogen evolution reaction. J. Mater. Chem. A 2019. 7, 15714-15721.

    14Hu, P.; He, X.; Ng, M.F.; Ye, J.; Zhao, C.; Wang, S.; Tan, K.; Chaturvedi, A.; Jiang, H.; Kloc, C.; Hu, W.; Long, Y. Trisulfide-Bond Acenes for Organic Batteries. Angew. Chem. Int. Ed. 2019. 58, 13513-13521.

    13.  Fu, Q.; Wang, X.; Liu, F.*; Dong, Y.; Liu, Z.; Zheng, S.; Chaturvedi, A.; Zhou, J.; Hu, P.*; Zhu, Z.; Bo, F.; Long, Y.; Liu, Z*. Ultrathin Ruddlesden-Popper Perovskite Heterojunction for Sensitive Photodetection. Small 2019. 15, e1902890.

    12.  Qi, H.; Wang, L.; Sun, J.; Long, Y.; Hu, P.*; Liu, F.*; He, X.* Production Methods of Van der Waals Heterostructures Based on Transition Metal Dichalcogenides. Crystals 2018. 8, 35.

    11.  Jiang, H.+; Hu, P.+; Ye, J.; Zhang, K.K.; Long, Y.; Hu, W.; Kloc, C. Tuning of the Degree of Charge Transfer and the Electronic Properties in Organic Binary Compounds by Crystal Engineering: a Perspective. J. Mater. Chem. C 2018. 6, 1884-1902.

    10.  Jiang, H.+; Hu, P.+; Ye, J.; Ganguly, R.; Li, Y.; Long, Y.; Fichou, D.; Hu, W.; Kloc, C. Hole Mobility Modulation in Single-Crystal Metal Phthalocyanines by Changing the Metal–π/π–π Interactions. Angew. Chem. Int. Ed. 2018. 57, 10112-10117.

    9.  Jiang, H.+; Hu, P.+; Ye, J.; Chaturvedi, A.; Zhang, K.K.; Li, Y.; Long, Y.; Fichou, D.; Kloc, C.; Hu, W. From Linear to Angular Isomers: Achieving Tunable Charge Transport in Single-Crystal Indolocarbazoles Through Delicate Synergetic CH/NHpi Interactions. Angew. Chem. Int. Ed. 2018. 57, 8875-8880.

    8Hu, P.; Wang, S.; Chaturvedi, A.; Wei, F.; Zhu, X.; Zhang, X.; Li, R.; Li, Y.; Jiang, H.; Long, Y.; Kloc, C. Impact of C–H···X (X = F, N) and π–π Interactions on Tuning the Degree of Charge Transfer in F6TNAP-Based Organic Binary Compound Single Crystals. Cryst. Growth Des. 2018. 18, 1776-1785.

    7.  Wang, L.; Hu, P.*; Long, Y.; Liu, Z.*; He, X.* Recent advances in ternary two-dimensional materials: synthesis, properties and applications. J. Mater. Chem. A 2017. 5, 22855-22876.

    6.  Jiang, H.+; Hu, P.+; Ye, J.; Li, Y.; Li, H.; Zhang, X.; Li, R.; Dong, H.; Hu, W.; Kloc, C. Molecular Crystal Engineering: Tuning Organic Semiconductor from p-type to n-type by Adjusting Their Substitutional Symmetry. Adv. Mater. 2017. 29, 1605053.

    5Hu, P.; Li, H.; Li, Y.; Jiang, H.; Kloc, C. Single-crystal growth, structures, charge transfer and transport properties of anthracene-F4TCNQ and tetracene-F4TCNQ charge-transfer compounds. CrystEngComm 2017. 19, 618-624.

    4Hu, P.; Ye, J.; He, X.; Du, K.; Zhang, K.K.; Wang, X.; Xiong, Q.; Liu, Z.; Jiang, H.; Kloc, C. Control of Radiative Exciton Recombination by Charge Transfer Induced Surface Dipoles in MoS2 and WS2 Monolayers. Sci. Rep. 2016. 6, 24105.

    3Hu, P.; Du, K.; Wei, F.; Jiang, H.; Kloc, C. Crystal Growth, HOMO–LUMO Engineering, and Charge Transfer Degree in Perylene-FxTCNQ (x= 1, 2, 4) Organic Charge Transfer Binary Compounds. Cryst. Growth Des. 2016. 16, 3019-3027.

    2.  Hu, P.; Ma, L.; Tan, K.J.; Jiang, H.; Wei, F.; Yu, C.; Goetz, K.P.; Jurchescu, O.D.; McNeil, L.E.; Gurzadyan, G.G.; Kloc, C. Solvent-Dependent Stoichiometry in Perylene–7,7,8,8-Tetracyanoquinodimethane Charge Transfer Compound Single Crystals. Cryst. Growth Des. 2014. 14, 6376-6382.

    1Hu, P.; Jiao, H.; Wang, C.H.; Wang, X.M.; Ye, S.; Jing, X.P.; Zhao, F.; Yue, Z.X. Influence of thermal treatments on the low frequency conductivity and microwave dielectric loss of CaTiO3 ceramics. Mater. Sci. Eng. B-Adv. Funct. Solid-State Mater. 2011. 176, 401-405.