An ab initio study on boundaries for characterizing cooperative effect of hydrogen bonds by intermolecular compression
-
* Corresponding authors.
E-mail address: wangzg@jlu.edu.cn (Z. Wang).
Citation:
Rui Liu, Rui Wang, Danhui Li, Yu Zhu, Xinrui Yang, Zhigang Wang. An ab initio study on boundaries for characterizing cooperative effect of hydrogen bonds by intermolecular compression[J]. Chinese Chemical Letters,
;2023, 34(7): 107857.
doi:
10.1016/j.cclet.2022.107857
J. Cruzan, L. Braly, K. Liu, et al., Science 271 (1996) 59–62.
doi: 10.1126/science.271.5245.59
P. Barnes, J. Finney, J. Nicholas, J. Quinn, Nature 282 (1979) 459–464.
doi: 10.1038/282459a0
J.G. Davis, B.M. Rankin, K.P. Gierszal, D. Ben-Amotz, Nat. Chem. 5 (2013) 796–802.
doi: 10.1038/nchem.1716
H.S. Frank, W.Y. Wen, Discuss. Faraday Soc. 24 (1957) 133–140.
doi: 10.1039/df9572400133
H. Frank, P. Roy. Soc. Lond. A. Mat. 247 (1958) 481–492.
doi: 10.1098/rspa.1958.0206
B.F. King, F. Weinhold, J. Chem. Phys. 103 (1995) 333–347.
doi: 10.1063/1.469645
L. Curtiss, M. Blander, Chem. Rev. 88 (1988) 827–841.
doi: 10.1021/cr00088a002
J.M. Stubbs, J.I. Siepmann, J. Am. Chem. Soc. 127 (2005) 4722–4729.
doi: 10.1021/ja044380q
J. Oktawiec, H.Z. Jiang, J.G. Vitillo, et al., Nat. Commun. 11 (2020) 1–11.
doi: 10.1038/s41467-019-13993-7
M. Huš, T. Urbic, J. Chem. Phys. 136 (2012) 271–286.
S.S. Xantheas, T.H. Dunning Jr, J. Chem. Phys. 99 (1993) 8774–8792.
doi: 10.1063/1.465599
M. Benoit, D. Marx, M. Parrinello, Nature 392 (1998) 258–261.
doi: 10.1038/32609
J.L. Kuo, M.L. Klein, J. Chem. Phys. 120 (2004) 4690–4695.
doi: 10.1063/1.1644793
B. Auer, R. Kumar, J. Schmidt, J. Skinner, Proc. Nat. Acad. Sci. U. S. A. 104 (2007) 14215–14220.
doi: 10.1073/pnas.0701482104
Y. Huang, X. Zhang, Z. Ma, et al., Coord. Chem. Rev. 285 (2015) 109–165.
doi: 10.1016/j.ccr.2014.10.003
F. Li, Y. Liu, L. Wang, J. Zhao, Z. Chen, Theor. Chem. Acc. 131 (2012) 1–7.
doi: 10.1007/s00214-012-1163-5
C.Q. Sun, Y. Sun, Springer Series Chem. Phys. 13 (2016) 365–368.
doi: 10.5954/icarob.2016.os5-3
G. Johari, O. Kalinovskaya, J. Vij, J. Chem. Phys. 114 (2001) 4634–4642.
doi: 10.1063/1.1346635
J. Peng, D. Cao, Z. He, et al., Nature 557 (2018) 701–705.
doi: 10.1038/s41586-018-0122-2
B.D. Liang, T. Jin, L.P. Miao, et al., Chin. Chem. Lett. 33 (2022) 1422–1424.
doi: 10.1016/j.cclet.2021.08.032
S. Liu, T. Yan, Q. Wu, Z. Xu, J. Han, Chin. Chem. Lett. 33 (2022) 239–242.
doi: 10.3390/land11020239
X.W. Liu, X.Y. Cui, X.M. Yu, et al., Chin. Chem. Lett. 28 (2017) 1447–1452.
doi: 10.1016/j.cclet.2017.03.021
B. Dereka, Q. Yu, N.H. Lewis, et al., Science 371 (2021) 160–164.
doi: 10.1126/science.abe1951
Z. Zhang, D. Li, W. Jiang, Z. Wang, Adv. Phys. X 3 (2018) 1428915.
doi: 10.1080/23746149.2018.1428915
S. Grimme, Org. Lett. 12 (2010) 4670–4673.
doi: 10.1021/ol1016417
D. Li, Z. Zhang, W. Jiang, et al., Chin. Phys. Lett. 38 (2021) 013101.
doi: 10.1088/0256-307x/38/1/013101
J. Harries, W. Burroughs, H. Gebbie, J. Quan. Spectrosc. Ra. 9 (1969) 799–807.
doi: 10.1016/0022-4073(69)90076-4
A. Luzar, D. Chandler, Nature 379 (1996) 55–57.
doi: 10.1038/379055a0
W. Chao, J.T. Hsieh, C.H. Chang, J.J.M. Lin, Science 347 (2015) 751–754.
doi: 10.1126/science.1261549
S. Emamian, T. Lu, H. Kruse, H. Emamian, J. Comput. Chem. 40 (2019) 2868–2881.
doi: 10.1002/jcc.26068
X.Z. Li, B. Walker, A. Michaelides, Proc. Nat. Acad. Sci. U. S. A. 108 (2011) 6369–6373.
doi: 10.1073/pnas.1016653108
S.J. Grabowski, Chem. Rev. 111 (2011) 2597–2625.
doi: 10.1021/cr800346f
A. Altun, F. Neese, G. Bistoni, J. Chem. Theory Comput. 15 (2018) 215–228.
L. Zhao, M. Hermann, W. Schwarz, G. Frenking, Nat. Rev. Chem. 3 (2019) 48–63.
doi: 10.1038/s41570-018-0060-4
P. Hobza, Z. Havlas, Chem. Rev., 100 (2000) 4253–4264.
doi: 10.1021/cr990050q
Y. Mao, M. Head-Gordon, J. Phys. Chem. Lett. 10 (2019) 3899–3905.
doi: 10.1021/acs.jpclett.9b01203
J.M. Guevara-Vela, R. Chávez-Calvillo, M. García-Revilla, et al., Chem. Eur. J. 19 (2013) 14304–14315.
doi: 10.1002/chem.201300656
M.P. Mitoraj, A. Michalak, T. Ziegler, J. Chem. Theory Comput. 5 (2009) 962–975.
doi: 10.1021/ct800503d
C.A. Morgado, P. Jurecka, D. Svozil, P. Hobza, J. Sponer, J. Chem. Theory Comput. 5 (2009) 1524–1544.
doi: 10.1021/ct9000125
R.L. Zhong, H.L. Xu, Z.R. Li, J. Chem. Phys. 145 (2016) 054304.
doi: 10.1063/1.4960340
S. Pullanchery, S. Kulik, B. Rehl, A. Hassanali, S. Roke, Science 374 (2021) 1366–1370.
doi: 10.1126/science.abj3007
Huiying Xu , Minghui Liang , Zhi Zhou , Hui Gao , Wei Yi . Application of Quantum Chemistry Computation and Visual Analysis in Teaching of Weak Interactions. University Chemistry, 2025, 40(3): 199-205. doi: 10.12461/PKU.DXHX202407011
Bingke Zhang , Dongbo Wang , Jiamu Cao , Wen He , Gang Liu , Donghao Liu , Chenchen Zhao , Jingwen Pan , Sihang Liu , Weifeng Zhang , Xuan Fang , Liancheng Zhao , Jinzhong Wang . Tuning Stark effect by defect engineering on black titanium dioxide mesoporous spheres for enhanced hydrogen evolution. Chinese Chemical Letters, 2024, 35(11): 110254-. doi: 10.1016/j.cclet.2024.110254
Yunkang Tong , Haiqiao Huang , Haolan Li , Mingle Li , Wen Sun , Jianjun Du , Jiangli Fan , Lei Wang , Bin Liu , Xiaoqiang Chen , Xiaojun Peng . Cooperative bond scission by HRP/H2O2 for targeted prodrug activation. Chinese Chemical Letters, 2024, 35(12): 109663-. doi: 10.1016/j.cclet.2024.109663
Songtao Cai , Liuying Wu , Yuan Li , Soham Samanta , Jinying Wang , Bing Liu , Feihu Wu , Kaitao Lai , Yingchao Liu , Junle Qu , Zhigang Yang . Intermolecular hydrogen-bonding as a robust tool toward significantly improving the photothermal conversion efficiency of a NIR-II squaraine dye. Chinese Chemical Letters, 2024, 35(4): 108599-. doi: 10.1016/j.cclet.2023.108599
Fanxin Kong , Hongzhi Wang , Huimei Duan . Inhibition effect of sulfation on Pt/TiO2 catalysts in methane combustion. Chinese Journal of Structural Chemistry, 2024, 43(5): 100287-100287. doi: 10.1016/j.cjsc.2024.100287
Min Fu , Pan He , Sen Zhou , Wenqiang Liu , Bo Ma , Shiying Shang , Yaohao Li , Ruihan Wang , Zhongping Tan . An unexpected stereochemical effect of thio-substituted Asp in native chemical ligation. Chinese Chemical Letters, 2024, 35(8): 109434-. doi: 10.1016/j.cclet.2023.109434
Yixia Zhang , Caili Xue , Yunpeng Zhang , Qi Zhang , Kai Zhang , Yulin Liu , Zhaohui Shan , Wu Qiu , Gang Chen , Na Li , Hulin Zhang , Jiang Zhao , Da-Peng Yang . Cocktail effect of ionic patch driven by triboelectric nanogenerator for diabetic wound healing. Chinese Chemical Letters, 2024, 35(8): 109196-. doi: 10.1016/j.cclet.2023.109196
Yuan Dong , Mutian Ma , Zhenyang Jiao , Sheng Han , Likun Xiong , Zhao Deng , Yang Peng . Effect of electrolyte cation-mediated mechanism on electrocatalytic carbon dioxide reduction. Chinese Chemical Letters, 2024, 35(7): 109049-. doi: 10.1016/j.cclet.2023.109049
Botao Gao , He Qi , Hui Liu , Jun Chen . Role of polarization evolution in the hysteresis effect of Pb-based antiferroelecrtics. Chinese Chemical Letters, 2024, 35(4): 108598-. doi: 10.1016/j.cclet.2023.108598
Xin Huang , Yi Zhao , Wanzhen Liang . Vibronic coupling effect on intersystem crossing rates of TADF emitters. Chinese Journal of Structural Chemistry, 2024, 43(6): 100278-100278. doi: 10.1016/j.cjsc.2024.100278
Cunjun Li , Wencong Liu , Xianlei Chen , Liang Li , Shenyu Lan , Mingshan Zhu . Adsorption and activation of peroxymonosulfate on BiOCl for carbamazepine degradation: The role of piezoelectric effect. Chinese Chemical Letters, 2024, 35(10): 109652-. doi: 10.1016/j.cclet.2024.109652
Ziyou Zhang , Te Ji , Hongliang Dong , Zhiqiang Chen , Zhi Su . Effect of coordination restriction on pressure-induced fluorescence evolution. Chinese Chemical Letters, 2024, 35(12): 109542-. doi: 10.1016/j.cclet.2024.109542
Shaohua Zhang , Xiaojuan Dai , Wei Hao , Liyao Liu , Yingqiao Ma , Ye Zou , Jia Zhu , Chong-an Di . A first-principles study of the Nernst effect in doped polymer. Chinese Chemical Letters, 2024, 35(12): 109837-. doi: 10.1016/j.cclet.2024.109837
Xingxing Jiang , Yuxin Zhao , Yan Kong , Jianju Sun , Shangzhao Feng , Xin Lu , Qi Hu , Hengpan Yang , Chuanxin He . Support effect and confinement effect of porous carbon loaded tin dioxide nanoparticles in high-performance CO2 electroreduction towards formate. Chinese Chemical Letters, 2025, 36(1): 109555-. doi: 10.1016/j.cclet.2024.109555
Mingxin Song , Lijing Xie , Fangyuan Su , Zonglin Yi , Quangui Guo , Cheng-Meng Chen . New insights into the effect of hard carbons microstructure on the diffusion of sodium ions into closed pores. Chinese Chemical Letters, 2024, 35(6): 109266-. doi: 10.1016/j.cclet.2023.109266
Chaochao Wei , Ru Wang , Zhongkai Wu , Qiyue Luo , Ziling Jiang , Liang Ming , Jie Yang , Liping Wang , Chuang Yu . Revealing the size effect of FeS2 on solid-state battery performances at different operating temperatures. Chinese Chemical Letters, 2024, 35(6): 108717-. doi: 10.1016/j.cclet.2023.108717
Chenlu Huang , Xinyu Yang , Qingyu Yu , Linhua Zhang , Dunwan Zhu . Gas-generating polymersomes-based amplified photoimmunotherapy for abscopal effect and tumor metastasis inhibition. Chinese Chemical Letters, 2024, 35(6): 109680-. doi: 10.1016/j.cclet.2024.109680
Junchen Peng , Xue Yin , Dandan Dong , Zhongyuan Guo , Qinqin Wang , Minmin Liu , Fei He , Bin Dai , Chaofeng Huang . Promotion effect of epoxy group neighboring single-atom Cu site on acetylene hydrochlorination. Chinese Chemical Letters, 2024, 35(6): 109508-. doi: 10.1016/j.cclet.2024.109508
Ting-Ting Huang , Jin-Fa Chen , Juan Liu , Tai-Bao Wei , Hong Yao , Bingbing Shi , Qi Lin . A novel fused bi-macrocyclic host for sensitive detection of Cr2O72− based on enrichment effect. Chinese Chemical Letters, 2024, 35(7): 109281-. doi: 10.1016/j.cclet.2023.109281
Min Chen , Boyu Peng , Xuyun Guo , Ye Zhu , Hanying Li . Polyethylene interfacial dielectric layer for organic semiconductor single crystal based field-effect transistors. Chinese Chemical Letters, 2024, 35(4): 109051-. doi: 10.1016/j.cclet.2023.109051