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[1](1) Chengfeng Zhu* et al., “Polypeptide-inspired supramolecular assemblies for enantioselective sorption of chiral molecules”. Inorg. Chem. Front., 2024, 11, 1492-1500. (第一作者&通讯作者)
[2](2) Chengfeng Zhu* et al., “Construction of a chiral zinc–camphorate framework for enantioselective separation”. Dalton Trans., 2022, 51(25): 9627-9631. (第一作者&通讯作者)
[3](3) Chengfeng Zhu* et al., “Enantioseparation in Hierarchically Porous Assemblies of Homochiral Cages”, ACS Cent. Sci., 2022, 8 (5), 562-570. (第一作者&通讯作者)
[4](4) Chengfeng Zhu* et al., “A biomimetic metal–organic framework with cuboid inner cavities for enantioselective separation”. Inorg. Chem. Front.,2022, 9(11): 2683-2690. (第一作者&通讯作者)
[5](5) Chengfeng Zhu* et al., “Surface charges of porous coordination cage tune the catalytic reactivity of Knoevenagel condensation.”, Catal. Today, 2022, 400-401, 89-94. (第一通讯作者)
[6](6) Chengfeng Zhu* et al., “Homochiral Dodecanuclear Lanthanide “Cage in Cage” for Enantioselective Separation”, J. Am. Chem. Soc., 2021, 143(32): 12560-12566. (Highlighted by Nature Reviews Chemistry, 2021, 5(10): 669-669.) (第一作者&通讯作者)
[7](7) Chengfeng Zhu* et al., “Synthesis of a novel double-ligand nickel conductive metal–organic framework material and its electrochemical characterization for supercapacitors”, Mater. Sci., 2021, 56(3), 2517–2527. (第一通讯作者)
[8](8) Chengfeng Zhu* et al., “Engineering a homochiral metal–organic framework based on an amino acid for enantioselective separation”, Chem. Commun.,2020, 56(63): 9016-9019. (第一通讯作者)
[9](9) Chengfeng Zhu* et al., “A urea-containing metal-organic framework as a multifunctional heterogeneous hydrogen bond-donating catalyst”, Catal. Commun., 2020,135, 105837. (第一作者&通讯作者)
[10](10) Chengfeng Zhu* et al., “A two-dimensional zinc(II)-based metal-organic framework for fluorometric determination of ascorbic acid, chloramphenicol and ceftriaxone”, Microchimica Acta, 2020, 187 (2), 136. (第一通讯作者)
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