张 群


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name:

qun zhang

address:

department of chemical physics,

university of science and technology of china (ustc)

96 jin-zhai road, hefei, anhui 230026, china

tel:

86-551-63607736

e-mail:

url:




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 education and research experience

2014 - present

professor, ustc

2007 - 2014

associate professor, ustc

2003 - 2007

postdoc & research associate, university of british columbia, canada

2000 - 2003

postdoc, weizmann institute of science, israel

1999

ph.d. in chemical physics, ustc


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 research interests

1.

ultrafast spectroscopy & dynamics in the condensed phases

2.

energy-related chemical physics

3.

photophysics & photochemistry

4.

quantum coherent control


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 current research projects

1.

most–national key r&d program on nano sci. & tech. (2016yfa0200602) (2016.07–2021.06), principal investigator.

2.

nsfc–general program (21573211) (2016.01–2019.12), principal investigator.

3.

most–national key r&d program on nano sci. &tech. (2018yfa0208702) (2018.05–2023.04), key participant.

4.

anhui initiative in quantum information technologies (ahy090200) (2018.01–2022.12), key participant.

5.

nsfc–key program (21633007) (2017.01–2021.12), key participant.


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 representative publications

1.

j.-s. yao (eq), j. ge (eq), k.-h. wang, g.-z. zhang*, b.-s. zhu, c. chen, q. zhang*, y. luo, s.-h. yu, and h.-b. yao*, few-nanometer-sized α-cspbi3 quantum dots enabled by strontium substitution and iodide passivation for efficient red-light emitting diodes, journal of the american chemical society 2019, 141(5), 2069–2079.

2.

z.-w. chen, q. zhang*, and y. luo*, experimental identification of ultrafast reverse hole transfer at the interface of the photoexcited methanol/graphitic carbon nitride system, angewandte chemie international edition 2018, 57(19), 5320–5324.

3.

j.-s. yao (eq), j. ge (eq), b.-n. han (eq), k.-h. wang, h.-b. yao*, h.-l. yu, j.-h. li, b.-s. zhu, j.-z. song, c. chen, q. zhang*, h.-b. zeng*, y. luo, and s.-h. yu, ce3 -doping to modulate photoluminescence kinetics for efficient cspbbr3 nanocrystals based light-emitting diodes, journal of the american chemical society 2018, 140(10), 3626–3634.

4.

h. wang (eq), s.-l. jiang (eq), w. shao, x.-d. zhang*, s.-c. chen, x.-s. sun, q. zhang*, y. luo, and y. xie*, optically switchable photocatalysis in ultrathin black phosphorus nanosheets, journal of the american chemical society 2018, 140(9), 3474–3480.

5.

h. wang (eq), d.-y. yong (eq), s.-c. chen, s.-l. jiang, x.-d. zhang*, w. shao, q. zhang*, w.-s. yan, b.-c. pan, and y. xie*, oxygen-vacancy-mediated exciton dissociation in biobr for boosting charge-carrier-involved molecular oxygen activation, journal of the american chemical society 2018, 140(5), 1760–1766.

6.

l. zhang, q. zhang*, and y. luo*, impact of element doping on photoexcited electron dynamics in cds nanocrystals, journal of physical chemistry letters 2017, 8(22), 5680–5686.

7.

x.-c. jiao (eq), z.-w. chen (eq), x.-d. li (eq), y.-f. sun*, s. gao, w.-s. yan, c.-m. wang, q. zhang*, y. lin, y. luo, and y. xie*, defect-mediated electron–hole separation in one-unit-cell znin2s4 layers for boosted solar-driven co2 reduction, journal of the american chemical society 2017, 139(22), 7586–7594.

8.

h. wang (eq), s.-l. jiang (eq), s.-c. chen, x.-d. zhang*, w. shao, x.-s. sun, z. zhao, q. zhang*, y. luo, and y. xie*, insights into the excitonic processes in polymeric photocatalysts, chemical science 2017, 8(5), 4087–4092.

9.

j.-h. hu, q. zhang*, and y. luo*, retrieving the rate of reverse intersystem crossing from ultrafast spectroscopy, journal of physical chemistry letters 2016, 7(19), 3908–3912.

10.

h. wang (eq), s.-l. jiang (eq), s.-c. chen, d.-d. li, x.-d. zhang*, w. shao, x.-s. sun, j.-f. xie, z. zhao, q. zhang*, y.-p. tian, and y. xie*, enhanced singlet oxygen generation in oxidized graphitic carbon nitride for organic synthesis, advanced materials 2016, 28(32), 6940–6945.

11.

j.-d. xiao (eq), q.-c. shang (eq), y.-j. xiong, q. zhang*, y. luo, s.-h. yu, and h.-l. jiang*, boosting photocatalytic hydrogen production of a metal–organic framework decorated with platinum nanoparticles: the platinum location matters, angewandte chemie international edition 2016, 55(32), 9389–9393. [vip paper] [highly cited paper]

12.

q. zhang* and y. luo*, probing the ultrafast dynamics in nanomaterial complex systems by femtosecond transient absorption spectroscopy, high power laser science & engineering 2016, 4, e22.

13.

h. huang (eq), l. zhang (eq), z.-h. lv, r. long, c. zhang, y. lin, k.-c. wei, c.-m. wang, l. chen, z.-y. li, q. zhang*, y. luo, and y.-j. xiong*, unraveling surface plasmon decay in core–shell nanostructures toward broadband light-driven catalytic organic synthesis, journal of the american chemical society 2016, 138(21), 6822–6828.

14.

x.-g. li (eq), w.-t. bi (eq), l. zhang (eq), s. tao, w.-s. chu*, q. zhang*, y. luo, c.-z. wu*, and y. xie, single-atom pt as co-catalyst for enhanced photocatalytic h2 evolution, advanced materials 2016, 28(12), 2427–2431. [highly cited paper]

15.

h.-q. xu (eq), j.-h. hu (eq), d.-k. wang, z.-h. li, q. zhang*, y. luo, s.-h. yu, and h.-l. jiang*, visible-light photoreduction of co2 in a metal–organic framework: boosting electron–hole separation via electron trap states, journal of the american chemical society 2015, 137(42), 13440–13443. [highly cited paper]

16.

w.-t. bi (eq), x.-g. li (eq), l. zhang (eq), t. jin, l.-d. zhang, q. zhang*, y. luo, c.-z. wu*, and y. xie, molecular co-catalyst accelerating hole transfer for enhanced photocatalytic h2 evolution, nature communications 2015, 6, 8647.

17.

f.-c. lei (eq), l. zhang (eq), y.-f. sun*, l. liang, k.-t. liu, j.-q. xu, q. zhang*, b.-c. pan, y. luo, and y. xie*, atomic-layer-confined doping for atomic-level insights into visible-light water splitting, angewandte chemie international edition 2015, 54(32), 9266–9270.

18.

b. wu (eq), j.-h. hu (eq), p. cui (eq), l. jiang, z.-w. chen, q. zhang*, c.-r. wang*, and y. luo*, visible-light photoexcited electron dynamics of scandium endohedral metallofullerenes: the cage symmetry and substituent effects, journal of the american chemical society 2015, 137(27), 8769–8774.

19.

s. bai, j. jiang, q. zhang, and y.-j. xiong*, steering charge kinetics in photocatalysis: intersection of materials syntheses, characterization techniques and theoretical simulations, chemical society reviews 2015, 44(10), 2893–2939. [back cover] [highly cited paper]

20.

s. bai (eq), j. ge (eq), l.-l. wang, m. gong, m.-s. deng, q. kong, l. song, j. jiang*, q. zhang*, y. luo, y. xie, and y.-j. xiong*, a unique semiconductor–metal–graphene stack design to harness charge flow for photocatalysis, advanced materials 2014, 26(32), 5689–5695. [inside front cover]

21.

r. li (eq), j.-h. hu (eq), m.-s. deng, h.-l. wang, x.-j. wang, y.-l. hu, h.-l. jiang, j. jiang*, q. zhang*, y. xie, and y.-j. xiong*, integration of an inorganic semiconductor with a metal–organic framework: a platform for enhanced gaseous photocatalytic reactions, advanced materials 2014, 26(28), 4783–4788. [inside back cover] [highly cited paper]

22.

l.-l. wang (eq), j. ge (eq), a.-l. wang, m.-s. deng, x.-j. wang, s. bai, r. li, j. jiang*, q. zhang*, y. luo, and y.-j. xiong*, designing p-type semiconductor–metal hybrid structures for improved photocatalysis, angewandte chemie international edition 2014, 53(20), 5107–5111.

23.

r. long (eq), k.-k. mao (eq), m. gong, s. zhou, j.-h. hu, m. zhi, y. you, s. bai, j. jiang*, q. zhang*, x.-j. wu, and y.-j. xiong*, tunable oxygen activation for catalytic organic oxidation: schottky junction versus plasmonic effects, angewandte chemie international edition 2014, 53(12), 3205–3209.

24.

q. zhang*, h.-j. zheng, z.-g. geng, s.-l. jiang, j. ge, k.-l. fan, s. duan, y. chen, x.-p. wang, and y. luo*, the realistic domain structure of as-synthesized graphene oxide from ultrafast spectroscopy, journal of the american chemical society 2013, 135(33), 12468–12474.

25.

z.-j. hu, q. zhang*, b. miao, q. fu, g. zou, y. chen, y. luo, d.-g. zhang, p. wang, h. ming, and q.-j. zhang*, coherent random fiber laser based on nanoparticles scattering in the extremely weakly scattering regime, physical review letters 2012, 109(25), 253901.


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