Advances in green colloidal synthesis of metal selenide and telluride quantum dots
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* Corresponding author.
E-mail addresses: lijing1029@jlu.edu.cn (J. Li), hao_zhang@jlu.edu.cn (H. Zhang)
Citation:
Yao Dong, Liu Yi, Li Jing, Zhang Hao. Advances in green colloidal synthesis of metal selenide and telluride quantum dots[J]. Chinese Chemical Letters,
;2019, 30(2): 277-284.
doi:
10.1016/j.cclet.2018.07.012
A.P. Alivisatos, Science 271(1996) 933-937.
doi: 10.1126/science.271.5251.933
D. Yu, F. Cao, Y. Gao, Y. Xiong, H. Zeng, Adv. Funct. Mater. 28(2018)1800248.
doi: 10.1002/adfm.v28.19
J. Song, J. Li, X. Li, et al., Adv. Mater. 27(2015) 7162-7167.
doi: 10.1002/adma.201502567
H. Ding, S. Yu, H. Xiong, ACS Nano 10(2016) 481-494.
F. Qu, Y. Yuan, M. Yang, Chem. Mater. 29(2017) 969-974.
doi: 10.1021/acs.chemmater.6b03435
Z. He, Z. Jin, M. Zhan, et al., Chin. Chem. Lett. 28(2017) 1851-1856.
doi: 10.1016/j.cclet.2017.07.012
Y. Li, C. Xu, C. Shu, X. Hou, P. Wu, Chin. Chem. Lett. 28(2017) 1961-1964.
doi: 10.1016/j.cclet.2017.04.027
L. Sorensen, G.F. Strouse, A.E. Stiegman, Adv. Mater. 18(2006) 1965-1967.
Z. Li, W. Yao, L. Kong, Y. Zhao, L. Li, J. Am. Chem. Soc.138(2015) 12430-12433.
S. Huang, Z. Li, L. Kong, et al., J. Am. Chem. Soc. 137(2016) 5749-5752.
B. Chen, N. Pradhan, H. Zhong, J. Phys. Chem. Lett. 9(2018) 435-445.
doi: 10.1021/acs.jpclett.7b03037
W. Li, R. Zamani, P. Rivera Gil, et al., J. Am. Chem. Soc. 135(2013) 7098-7101.
doi: 10.1021/ja401428e
V.B. Llorente, V.M. Dzhagan, N. Gaponik, et al., J. Phys. Chem. C 121(2017) 18244-18253.
doi: 10.1021/acs.jpcc.7b05334
C. Coughlan, M. Iba'ñez, O. Dobrozhan, et al., Chem. Rev. 117(2017) 5865-6109.
doi: 10.1021/acs.chemrev.6b00376
J. Zheng, B. Dai, J. Liu, et al., ACS Appl. Mater. Interfaces 8(2016) 35426-35434.
doi: 10.1021/acsami.6b11058
A. Agrawal, S.H. Cho, O. Zandi, et al., Chem. Rev. 118(2018) 3121-3207.
doi: 10.1021/acs.chemrev.7b00613
T.C. Harman, P.J. Taylor, M.P. Walsh, B.E. LaForge, Science 297(2002) 2229-2232.
doi: 10.1126/science.1072886
M. Iba'ñez, R. Zamani, S. Gorsse, et al., ACS Nano 7(2013) 2573-2586.
doi: 10.1021/nn305971v
J. Zhou, R. Yang, J. Appl. Phys. 110(2011) 084317.
doi: 10.1063/1.3653263
T.C. Harman, P.J. Taylor, D.L. Spears, M.P. Walsh, J. Electron. Mater. 29(2000) L1-L2.
doi: 10.1007/s11664-000-0117-1
M.C. Kovalenko, W. Heiss, E.V. Shevchenko, et al., J. Am. Chem. Soc.129(2007) 11354-11355.
doi: 10.1021/ja074481z
A. Aboulaich, L. Balan, J. Ghanbaja, et al., Chem. Mater. 23(2011) 3706-3713.
doi: 10.1021/cm2012928
C. Wang, S. Xu, Y. Wang, Z. Wang, Y. Cui, J. Mater. Chem. C 2(2014) 660-666.
doi: 10.1039/C3TC31602E
C. Wang, J. Xu, Y. Wang, et al., Adv. Funct. Mater. 26(2016) 4274-4282.
doi: 10.1002/adfm.v26.24
P. Wu, X. Yan, Chem. Soc. Rev. 42(2013) 5489-5521.
doi: 10.1039/c3cs60017c
B. Zhao, Y. Yao, K. Yang, et al., Nanoscale 6(2014) 12345-12349.
doi: 10.1039/C4NR03490B
C. Wang, X. Gao, Q. Ma, X. Su, J. Mater. Chem. 19(2009) 7016-7022.
doi: 10.1039/b909546b
X. Gao, G. Tang, X. Su, Biosens. Bioelectron. 36(2012) 75-80.
doi: 10.1016/j.bios.2012.03.042
Q. Peng, Y. Dong, Z. Deng, Y. Li, Inorg. Chem. 41(2002) 5249-5254.
doi: 10.1021/ic0257266
X. Ren, L. Pang, Y. Zhang, et al., J. Mater. Chem. A 3(2015) 10693-10697.
doi: 10.1039/C5TA02198G
C. Wadia, Y. Wu, S. Gul, et al., Chem. Mater. 21(2009) 2568-2570.
doi: 10.1021/cm901273v
J. Wang, H. Han, J. Colloid Interface Sci. 351(2010) 83-87.
doi: 10.1016/j.jcis.2010.07.025
M. Li, Y. Ge, Q. Chen, et al., Talanta 72(2007) 89-94.
doi: 10.1016/j.talanta.2006.09.028
H. Li, C. Han, Chem. Mater. 20(2008) 6053-6059.
doi: 10.1021/cm8009176
H. Xiong, D.G. Shchukin, H. Möhwald, Y. Xu, Y. Xia, Angew. Chem. Int. Ed. 48(2009) 2727-2731.
doi: 10.1002/anie.200805590
J. Zhu, Y. Koltypin, A. Gedanken, Chem. Mater. 12(2000) 73-78.
doi: 10.1021/cm990380r
M.J. Murcia, D.L. Shaw, H. Woodruff, et al., Chem. Mater.18(2006) 2219-2225.
doi: 10.1021/cm0505547
Q. Shen, L. Jiang, J. Miao, W. Hou, J.J. Zhu, Chem. Commun. 14(2008) 1683-1685.
S. Gorer, J.A. Ganske, J.C. Hemminger, R.M. Penner, J. Am. Chem. Soc. 120(1998) 9584-9593.
doi: 10.1021/ja981676l
S. Li, H. Zhao, D. Tian, Mat. Sci. Semicon. Proc. 16(2013) 149-153.
doi: 10.1016/j.mssp.2012.05.013
D. Gopalakrishnan, D. Damien, B. Li, et al., Chem. Commun. 51(2015) 6293-6296.
doi: 10.1039/C4CC09826A
D.V. Freitas, J.M.M. Dias, S.G.B. Passos, et al., Green Chem. 16(2014) 3247-3254.
doi: 10.1039/c4gc00300d
S.R. Sturzenbaum, M. Hockner, A. Panneerselvam, et al., Nat. Nanotech. 8(2013) 57-60.
doi: 10.1038/nnano.2012.232
H. Bao, N. Hao, Y. Yang, D. Zhao, Nano Res. 3(2010) 481-489.
doi: 10.1007/s12274-010-0008-6
H. Bao, Z. Lu, X. Cui, et al., Acta Biomater. 6(2010) 3534-3541.
doi: 10.1016/j.actbio.2010.03.030
Q.Y. Luo, Y. Lin, Y. Li, et al., Small 10(2014) 699-704.
doi: 10.1002/smll.201301940
V. Kloper, R. Osovsky, J. Kolny-olesiak, A. Sashchiuk, E. Lifshiitz, J. Phys. Chem. C 111(2007) 10336-11034.
doi: 10.1021/jp0708906
S. Kim, B. Fisher, H. Eisler, M. Bawendi, J. Am. Chem. Soc. 125(2003) 11466-11467.
doi: 10.1021/ja0361749
J. Zhang, J. Wang, T. Yan, et al., J. Mater. Chem. B 5(2017) 8152-8160.
doi: 10.1039/C7TB02324C
S. Marre, J. Park, J. Rempel, et al., Adv. Mater. 20(2008) 4830-4834.
doi: 10.1002/adma.v20:24
J. van Embden, A.S.R. Chesman, J.J. Jasieniak, Chem. Mater. 27(2015) 2246-2285.
doi: 10.1021/cm5028964
V. Lesnyak, N. Gaponik, A. Eychmüller, Chem. Soc. Rev. 42(2013) 2905-2929.
doi: 10.1039/C2CS35285K
M.L. Steigerwald, E. Brus, Acc. Chem. Res. 23(1990) 183-188.
doi: 10.1021/ar00174a003
C.N.R. Rao, S.R.C. Vivekchand, K. Biswasa, A. Govindaraj, Dalton Trans. 34(2007) 3728-3749.
O. Masala, R. Seshadri, Annu. Rev. Mater. Res. 34(2004) 41-81.
doi: 10.1146/annurev.matsci.34.052803.090949
T. Trindade, Chem. Mater. 13(2001) 3843-3858.
doi: 10.1021/cm000843p
D. Fan, M. Afzaal, M.A. Mallik, et al., Coordin. Chem. Rev. 251(2007) 1878-1888.
doi: 10.1016/j.ccr.2007.03.021
F. Wang, A. Dong, W.E. Buhro, Chem. Rev. 116(2016) 10888-10933.
doi: 10.1021/acs.chemrev.5b00701
X. Michalet, F.F. Pinaud, L.A. Bentolila, et al., Science 307(2005) 538-544.
doi: 10.1126/science.1104274
M.L. Steigerwald, A.P. Alivisatos, J.M. Gibson, et al., J. Am. Chem. Soc. 110(1988) 3046-3050.
doi: 10.1021/ja00218a008
C.B. Murray, D.J. Noms, M.G. Bawendi, J. Am. Chem. Soc. 115(1993) 8706-8715.
doi: 10.1021/ja00072a025
Z. Peng, X. Peng, J. Am. Chem. Soc. 123(2001) 183-184.
doi: 10.1021/ja003633m
L.S. Li, H. Wang, Y. Liu, et al., J. Colloid Interface Sci. 308(2007) 254-257.
doi: 10.1016/j.jcis.2006.12.035
Y. Liu, Y. Tang, Y. Ning, et al., J. Mater. Chem. 20(2010) 4451-4458.
doi: 10.1039/c0jm00115e
L. Qu, Z. Peng, X. Peng, Nano Lett. 1(2001) 333-337.
doi: 10.1021/nl0155532
Z. Pan, H. Zhang, K. Chen, et al., ACS Nano 6(2012) 3982-3991.
doi: 10.1021/nn300278z
S. Keuleyan, E. Lhuillier, P. Guyot-Sionnest, J. Am. Chem. Soc. 133(2011) 16422-164244.
doi: 10.1021/ja2079509
Y. Pan, H. Bai, L. Pan, et al., J. Mater. Chem. 22(2012) 23593-23601.
J. Du, Z. Du, J. Hu, L. Wan, et al., J. Am. Chem. Soc. 138(2016) 4201-4209.
doi: 10.1021/jacs.6b00615
R. Gomes, A. Hassinen, A. Szczygiel, et al., J. Phys. Chem. Lett. 2(2011) 145-152.
doi: 10.1021/jz1016729
D. Deng, C. Hao, S. Sen, et al., J. Am. Chem. Soc. 139(2017) 16630-16639.
doi: 10.1021/jacs.7b07838
S. Deka, A. Genovese, Y. Zhang, et al., J. Am. Chem. Soc.132(2010) 8912-8914.
doi: 10.1021/ja103223x
M. Sun, X. Yang, J. Phys. Chem. C 113(2009) 8701-8709.
doi: 10.1021/jp811308h
J. Li, H. Wang, L. Lin, Q. Fang, X. Peng, J. Am. Chem. Soc.140(2018) 5474-5484.
doi: 10.1021/jacs.8b01296
K. Yu, X. Liu, T. Qi, et al., Nat. Commun. 7(2016) 12223.
doi: 10.1038/ncomms12223
M. Liu, K. Wang, L. Wang, et al., Nat. Commun. 8(2017) 15467.
doi: 10.1038/ncomms15467
T. Trindade, P. O'Brien, Adv. Mater. 8(1996) 161-163.
T. Trindade, P. O'Brien, Chem. Mater. 9(1997) 523-530.
doi: 10.1021/cm960363r
M. Chunggaze, J. McAleese, P. O'Brien, D.J. Otway, Chem. Commun. 7(1998) 833-834.
B. Ludolph, M.A. Malik, P. O'Brien, N. Revaprasadu, Chem. Commun.17(1998) 1849-1850.
W.S. Chang, Y.F. Lin, B. Sarkar, et al., Dalton Trans. 39(2010) 2821-2830.
doi: 10.1039/b921503d
M.A. Malik, N. Revaprasadu, P. O'Brien, Chem. Mater. 13(2001) 913-920.
doi: 10.1021/cm0011662
J. Jasieniak, C. Bullen, J. van Embden, P. Mulvaney, J. Phys. Chem. B 109(2005) 20665-20668.
doi: 10.1021/jp054289o
Z. Deng, L. Cao, F. Tang, B. Zou, J. Phys. Chem. B 109(2005) 16671-16675.
doi: 10.1021/jp052484x
S. Sapra, A.L. Rogach, J. Feldmann, J. Mater. Chem. 16(2006) 3391-3395.
doi: 10.1039/b607022a
C. Wang, Y. Jiang, G. Li, et al., J. Cryst. Growth 310(2008) 2890-2894.
doi: 10.1016/j.jcrysgro.2008.01.059
X. Liu, Y. Jiang, C. Wang, et al., J. Cryst. Growth 312(2010) 2656-2660.
doi: 10.1016/j.jcrysgro.2010.06.009
B. Wang, Y. Jiang, C. Liu, et al., Phys. Status Solidi A 209(2012) 306-312.
doi: 10.1002/pssa.201127552
S. Flamee, M. Cirillo, S. Abe, et al., Chem. Mater. 25(2013) 2476-2483.
doi: 10.1021/cm400799e
C. Pu, J. Zhou, R. Lai, et al., Nano Res. 6(2013) 652-670.
doi: 10.1007/s12274-013-0341-7
Y.A. Yang, H. Wu, K.R. Williams, Y.C. Cao, Angew. Chem. Int. Ed. 44(2005) 6712-6715.
O. Chen, X. Chen, Y. Yang, et al., Angew. Chem. Int. Ed. 47(2008) 8638-8641.
doi: 10.1002/anie.v47:45
K. Yu, J. Ouyang, Md.B. Zaman, et al., J. Phys. Chem. C 113(2009) 3390-3401.
doi: 10.1021/jp809990a
J. Ouyang, M. Vincent, D. Kingston, et al., J. Phys. Chem. C 113(2009) 5193-5200.
doi: 10.1021/jp8110138
R. Wang, O. Calvignanello, C.I. Ratcliffe, et al., J. Phys. Chem. C 113(2009) 3402-3408.
doi: 10.1021/jp810325z
J. Ouyang, Md.B. Zaman, F.J. Yan, et al., J. Phys. Chem. C 112(2008) 13805-13811.
doi: 10.1021/jp803845n
Y. Wei, J. Yang, A.W.H. Lin, J.Y. Ying, Chem. Mater. 22(2010) 5672-5677.
doi: 10.1021/cm101308f
Y. Liu, D. Yao, L. Shen, et al., J. Am. Chem. Soc. 134(2012) 7207-7210.
doi: 10.1021/ja300064t
D. Yao, H. Liu, Y. Liu, et al., Nanoscale 7(2015) 18570-18578.
doi: 10.1039/C5NR04856G
J. Zhang, K. Sun, A. Kumbhar, J. Fang, J. Phys. Chem. C 112(2008) 5454-5458.
doi: 10.1021/jp711778u
J. Zhang, S. Jin, H.C. Fry, et al., J. Am. Chem. Soc. 133(2011) 15324-15327.
doi: 10.1021/ja206309h
H. Shen, H. Wang, X. Chen, et al., Chem. Mater. 22(2010) 4756-4761.
doi: 10.1021/cm1013009
K. Ramasamy, D. Mazumdar, R.D. Bennett, A. Gupta, Chem. Commun. 48(2012) 5656-5658.
doi: 10.1039/c2cc32021e
D. Yao, Y. Liu, W. Zhao, et al., Nanoscale 5(2013) 9593-9597.
doi: 10.1039/c3nr03553k
D. Yao, W. Xin, Z. Liu, et al., ACS Appl. Mater. Interfaces 9(2017) 9840-9848.
doi: 10.1021/acsami.6b16407
J.A. Dahl, B.L.S. Maddux, J.E. Hutchison, Chem. Rev. 107(2007) 2228-2269.
doi: 10.1021/cr050943k
U. Resch, H. Weller, A. Henglein, Langmuir 5(1989) 1015-1020.
doi: 10.1021/la00088a023
T. Rajh, O.I. Mi ci c, A.J. Nozik, J. Phys. Chem. 97(1993) 11999-12003.
doi: 10.1021/j100148a026
A.L. Rogach, A. Kornowski, M. Gao, A. Eychmüller, H. Weller, J. Phys. Chem. B 103(1999) 3065-3069.
doi: 10.1021/jp984833b
A. Shavel, N. Gaponik, A. Eychmüller, J. Phys. Chem. B 108(2004) 5905-5908.
doi: 10.1021/jp037941t
N. Gaponik, D.V. Talapin, A.L. Rogach, K. Hoppe, et al., J. Phys. Chem. B 106(2002) 7177-7185.
A. Rogach, S. Kershaw, M. Burt, et al., Adv. Mater. 11(1999) 552-555.
Y. Tian, T. Newton, N.A. Kotov, D.M. Guldi, J.H. Fendler, J. Phys. Chem. 100(1996) 8927-8939.
doi: 10.1021/jp951965l
J.M. Lalancette, M. Arnac, Can. J. Chem. 47(1969) 3695-3697.
doi: 10.1139/v69-611
E. Hao, H. Zhang, B. Yang, H. Ren, J. Shen, J. Colloid Interface Sci. 238(2001) 285-290.
doi: 10.1006/jcis.2001.7472
H. Zhang, Z. Zhou, B. Yang, M. Gao, J. Phys. Chem. B 107(2003) 8-13.
doi: 10.1021/jp025910c
D. Zhou, J. Han, Y. Liu, et al., J. Phys. Chem. C 114(2010) 22487-22492.
doi: 10.1021/jp108708n
H. Zhang, Z. Cui, Y. Wang, et al., Adv. Mater. 15(2003) 777-780.
doi: 10.1002/adma.200304521
H. Zhang, C. Wang, M. Li, et al., Adv. Mater. 17(2005) 853-857.
H. Zhang, D. Wang, B. Yang, H. Möhwald, J. Am. Chem. Soc.128(2006) 10171-10180.
doi: 10.1021/ja061787h
H. Zhang, D. Wang, H. Möhwald, Angew. Chem. Int. Ed. 45(2006) 748-751.
H. Zhang, Y. Liu, J. Zhang, et al., J. Phys. Chem. C 112(2008) 1885-1889.
H. Zhang, Y. Liu, C. Wang, et al., Chemphyschem 9(2008) 1309-1316.
J. Han, H. Zhang, H. Sun, D. Zhou, B. Yang, Phys. Chem. Chem. Phys. 12(2010) 332-336.
doi: 10.1039/B919655B
X. Luo, J. Han, Y. Ning, et al., J. Mater. Chem. 21(2011) 6569-6575.
doi: 10.1039/c0jm04425c
A.L. Rogach, D. Nagesha, J.W. Ostrander, M. Giersig, N.A. Kotov, Chem. Mater. 12(2000) 2676-2685.
doi: 10.1021/cm000244i
Y. Lin, M. Hsieh, C. Liu, H. Chang, Langmuir 21(2005) 728-734.
doi: 10.1021/la049489q
X. Ma, X. Qian, J. Yin, Z. Zhu, J. Mater. Chem. 12(2002) 663-666.
doi: 10.1039/b107173b
M.N. Kalasad, M.K. Rabinal, B.G. Mulimani, Langmuir 25(2009) 12729-12735.
doi: 10.1021/la901798y
Q. Yang, K. Tang, F. Wang, C. Wang, Y. Qian, Mater. Lett. 57(2003) 3508-3512.
doi: 10.1016/S0167-577X(03)00117-4
H. Bao, E. Wang, S. Dong, Small 2(2006) 476-480.
R. Zeng, T. Zhang, J. Liu, et al., Nanotechnology 20(2009) 095102.
doi: 10.1088/0957-4484/20/9/095102
J. Ge, S. Xu, J. Zhuang, et al., Inorg. Chem. 45(2006) 4922-4927.
doi: 10.1021/ic051598k
D. Zhou, M. Lin, Z. Chen, et al., Chem. Mater. 23(2011) 4857-4862.
doi: 10.1021/cm202368w
D. Zhou, M. Liu, M. Lin, et al., ACS Nano 8(2014) 10569-10581.
doi: 10.1021/nn5040444
Shu-Ran Xu , Fang-Xing Xiao . Metal halide perovskites quantum dots: Synthesis, and modification strategies for solar CO2 conversion. Chinese Journal of Structural Chemistry, 2023, 42(12): 100173-100173. doi: 10.1016/j.cjsc.2023.100173
Benjian Xin , Rui Wang , Lili Liu , Zhiqiang Niu . Metal-organic framework derived MnO@C/CNTs composite for high-rate lithium-based semi-solid flow batteries. Chinese Journal of Structural Chemistry, 2023, 42(11): 100116-100116. doi: 10.1016/j.cjsc.2023.100116
Hao Deng , Yuxin Hui , Chao Zhang , Qi Zhou , Qiang Li , Hao Du , Derek Hao , Guoxiang Yang , Qi Wang . MXene−derived quantum dots based photocatalysts: Synthesis, application, prospects, and challenges. Chinese Chemical Letters, 2024, 35(6): 109078-. doi: 10.1016/j.cclet.2023.109078
Zhanheng Yan , Weiqing Su , Weiwei Xu , Qianhui Mao , Lisha Xue , Huanxin Li , Wuhua Liu , Xiu Li , Qiuhui Zhang . Carbon-based quantum dots/nanodots materials for potassium ion storage. Chinese Chemical Letters, 2025, 36(4): 110217-. doi: 10.1016/j.cclet.2024.110217
Biao Huang , Tao Tang , Fushou Liu , Shi-Hui Chen , Zhi-Ling Zhang , Mingxi Zhang , Ran Cui . Quantum dots boost large-view NIR-Ⅱ imaging with high fidelity for fluorescence-guided tumor surgery. Chinese Chemical Letters, 2024, 35(12): 109694-. doi: 10.1016/j.cclet.2024.109694
Husitu Lin , Shuangkun Zhang , Dianfa Zhao , Yongkang Wang , Wei Liu , Fan Yang , Jianjun Liu , Dongpeng Yan , Zhanpeng Wu . Flexible polyphosphazene nanocomposite films: Enhancing stability and luminescence of CsPbBr3 perovskite nanocrystals. Chinese Chemical Letters, 2025, 36(4): 109795-. doi: 10.1016/j.cclet.2024.109795
Rui Cheng , Tingting Zhang , Xin Huang , Jian Yu . Facile synthesis of high-brightness green-emitting carbon dots with narrow bandwidth towards backlight display. Chinese Chemical Letters, 2024, 35(5): 108763-. doi: 10.1016/j.cclet.2023.108763
Meijuan Chen , Liyun Zhao , Xianjin Shi , Wei Wang , Yu Huang , Lijuan Fu , Lijun Ma . Synthesis of carbon quantum dots decorating Bi2MoO6 microspherical heterostructure and its efficient photocatalytic degradation of antibiotic norfloxacin. Chinese Chemical Letters, 2024, 35(8): 109336-. doi: 10.1016/j.cclet.2023.109336
Huizhong Wu , Ruiheng Liang , Ge Song , Zhongzheng Hu , Xuyang Zhang , Minghua Zhou . Enhanced interfacial charge transfer on Bi metal@defective Bi2Sn2O7 quantum dots towards improved full-spectrum photocatalysis: A combined experimental and theoretical investigation. Chinese Chemical Letters, 2024, 35(6): 109131-. doi: 10.1016/j.cclet.2023.109131
Feng Sha , Xinyan Wu , Ping Hu , Wenqing Zhang , Xiaoyang Luan , Yunfei Ma . Design of Course Ideology and Politics for the Comprehensive Organic Synthesis Experiment of Benzocaine. University Chemistry, 2024, 39(2): 110-115. doi: 10.3866/PKU.DXHX202307082
Tao Cao , Fang Fang , Nianguang Li , Yinan Zhang , Qichen Zhan . Green Synthesis of p-Hydroxybenzonitrile Catalyzed by Spinach Extracts under Red-Light Irradiation: Research and Exploration of Innovative Experiments for Pharmacy Undergraduates. University Chemistry, 2024, 39(5): 63-69. doi: 10.3866/PKU.DXHX202309098
Yurong Tang , Yunren Shi , Yi Xu , Bo Qin , Yanqin Xu , Yunfei Cai . Innovative Experiment and Course Transformation Practice of Visible-Light-Mediated Photocatalytic Synthesis of Isoquinolinone. University Chemistry, 2024, 39(5): 296-306. doi: 10.3866/PKU.DXHX202311087
Chi Li , Jichao Wan , Qiyu Long , Hui Lv , Ying Xiong . N-Heterocyclic Carbene (NHC)-Catalyzed Amidation of Aldehydes with Nitroso Compounds. University Chemistry, 2024, 39(5): 388-395. doi: 10.3866/PKU.DXHX202312016
Jinyao Du , Xingchao Zang , Ningning Xu , Yongjun Liu , Weisi Guo . Electrochemical Thiocyanation of 4-Bromoethylbenzene. University Chemistry, 2024, 39(6): 312-317. doi: 10.3866/PKU.DXHX202310039
Renxiu Zhang , Xin Zhao , Yunfei Zhang . Application of Electrochemical Synthesis in the Teaching of Organic Chemistry. University Chemistry, 2025, 40(4): 174-180. doi: 10.12461/PKU.DXHX202406116
Miaomiao He , Zhiqing Ge , Qiang Zhou , Jiaqing He , Hong Gong , Lingling Li , Pingping Zhu , Wei Shao . Exploring the Fascinating Realm of Quantum Dots. University Chemistry, 2024, 39(6): 231-237. doi: 10.3866/PKU.DXHX202310040
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