Browse by UCL people
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Number of items: 78.
Article
Aitchison, CM;
Kane, C;
McMahon, DP;
Spackman, PR;
Pulido, A;
Wang, X;
Wilbraham, L;
... Cooper, A; + view all
(2020)
Photocatalytic proton reduction by a computationally identified, molecular hydrogen-bonded framework.
Journal of Materials Chemistry A
, 8
(15)
pp. 7158-7170.
10.1039/d0ta00219d.
|
Aitchison, CM;
Sachs, M;
Little, M;
Wilbraham, L;
Brownbill, NJ;
Kane, C;
Blanc, F;
... Cooper, A; + view all
(2020)
Structure-activity relationships in well-defined conjugated oligomer photocatalysts for hydrogen production from water.
Chemical Science
10.1039/d0sc02675a.
(In press).
|
Bai, Yang;
Li, Chao;
Liu, Lunjie;
Yamaguchi, Yuichi;
Bahri, Mounib;
Yang, Haofan;
Gardner, Adrian;
... Sprick, Reiner Sebastian; + view all
(2022)
Photocatalytic overall water splitting under visible light enabled by a particulate conjugated polymer loaded with iridium.
Angewandte Chemie International Edition
, 61
(26)
, Article e202201299. 10.1002/anie.202201299.
|
Bai, Y;
Nakagawa, K;
Cowan, A;
Aitchison, CM;
Yamaguchi, Y;
Zwijnenburg, M;
Kudo, A;
... Cooper, A; + view all
(2020)
Photocatalyst Z-scheme system composed of a linear conjugated polymer and BiVO4 for overall water splitting under visible light.
Journal of Materials Chemistry A
10.1039/d0ta04754f.
(In press).
|
Bai, Y;
Wilbraham, L;
Gao, H;
Clowes, R;
Yang, H;
Zwijnenburg, MA;
Cooper, AI;
(2021)
Photocatalytic polymers of intrinsic microporosity for hydrogen production from water.
Journal of Materials Chemistry A
10.1039/D1TA03098A.
(In press).
|
Bai, Y;
Wilbraham, L;
Slater, B;
Zwijnenburg, MA;
Sprick, RS;
Cooper, A;
(2019)
Accelerated Discovery of Organic Polymer Photocatalysts for Hydrogen Evolution from Water through the Integration of Experiment and Theory.
Journal of the American Chemical Society
, 141
(22)
pp. 9063-9071.
10.1021/jacs.9b03591.
|
Bai, Y;
Woods, DJ;
Wilbraham, L;
Aitchison, CM;
Zwijnenburg, M;
Sprick, RS;
Cooper, A;
(2020)
Hydrogen evolution from water using heteroatom substituted fluorene conjugated co-polymers.
Journal of Materials Chemistry A
10.1039/d0ta02599b.
(In press).
|
Berardo, Enrico;
Hu, Han-Shi;
Kowalski, Karol;
Zwijnenburg, Martijn A;
(2013)
Coupled cluster calculations on TiO2 nanoclusters.
Journal of Chemical Physics
, 139
(6)
, Article 064313. 10.1063/1.4817536.
|
Berardo, E;
Hu, H-S;
van Dam, HJJ;
Shevlin, SA;
Woodley, SM;
Kowalski, K;
Zwijnenburg, MA;
(2014)
Describing Excited State Relaxation and Localization in TiO2 Nanoparticles Using TD-DFT.
JOURNAL OF CHEMICAL THEORY AND COMPUTATION
, 10
(12)
5538 - 5548.
10.1021/ct500787x.
|
Berardo, E;
Hu, HS;
Shevlin, SA;
Woodley, SM;
Kowalski, K;
Zwijnenburg, MA;
(2014)
Modeling Excited States in TiO2 Nanoparticles: On the Accuracy of a TD-DFT Based Description.
J Chem Theory Comput
, 10
(3)
1189 - 1199.
10.1021/ct4010273.
|
Berardo, E;
Kaplan, F;
Bhaskaran-Nair, K;
Shelton, WA;
van Setten, MJ;
Kowalski, K;
Zwijnenburg, MA;
(2017)
Benchmarking the Fundamental Electronic Properties of small TiO 2 Nanoclusters by GW and Coupled Cluster Theory Calculations.
Journal of Chemical Theory and Computation
, 13
(8)
pp. 3814-3828.
10.1021/acs.jctc.7b00538.
|
Berardo, E;
Zwijnenburg, MA;
(2015)
Modelling the Water Splitting Activity of a TiO 2 Rutile Nanoparticle.
The Journal of Physical Chemistry C
, 119
(24)
13384- 13393.
10.1021/acs.jpcc.5b01512.
|
Bromley, ST;
Zwijnenburg, MA;
Flikkema, E;
Maschmeyer, T;
(2004)
Comment on "Fully coordinated silica nanoclusters: (SiO2)(N) molecular rings" - Reply.
PHYS REV LETT
, 92
(3)
, Article 039602. 10.1103/PhysRevLett.92.039602.
|
Bromley, ST;
Zwijnenburg, MA;
Maschmeyer, T;
(2003)
Fully coordinated silica nanoclusters: (SiO2)(N) molecular rings.
PHYS REV LETT
, 90
(3)
, Article 035502. 10.1103/PhysRevLett.90.035502.
|
Butchosa, Cristina;
McDonald, Tom O;
Cooper, Andrew I;
Adams, Dave J;
Zwijnenburg, Martijn A;
(2014)
Shining a Light on s-Triazine-Based Polymers.
Journal of Physical Chemistry C
, 118
(8)
pp. 4314-4324.
10.1021/jp411854f.
|
Butchosa, C;
Guiglion, P;
Zwijnenburg, MA;
(2014)
Carbon Nitride Photocatalysts for Water Splitting: A Computational Perspective.
JOURNAL OF PHYSICAL CHEMISTRY C
, 118
(43)
24833 - 24842.
10.1021/jp507372n.
|
Draper, ER;
Greeves, BJ;
Barrow, M;
Schweins, R;
Zwijnenburg, MA;
Adams, DJ;
(2017)
pH-Directed Aggregation to Control Photoconductivity in Self-Assembled Perylene Bisimides.
Chem
, 2
(5)
pp. 716-731.
10.1016/j.chempr.2017.03.022.
|
Draper, ER;
Schweins, R;
Akhtar, R;
Groves, P;
Chechik, V;
Zwijnenburg, MA;
Adams, DJ;
(2016)
Reversible Photoreduction as a Trigger for Photoresponsive Gels.
Chemistry of Materials
, 28
(17)
pp. 6336-6341.
10.1021/acs.chemmater.6b02677.
|
Draper, ER;
Wilbraham, L;
Adams, D;
Wallace, M;
Schweins, R;
Zwijnenburg, M;
(2019)
Insight into the self-assembly of water-soluble perylene bisimide derivatives through a combined computational and experimental approach.
Nanoscale
, 11
pp. 15917-15928.
10.1039/c9nr03898a.
|
Escher, SGET;
Lazauskas, T;
Zwijnenburg, MA;
Woodley, SM;
(2018)
Synthesis target structures for alkaline earth oxide clusters.
Inorganics
, 6
(1)
, Article 29. 10.3390/inorganics6010029.
|
Escher, SGET;
Lazauskas, T;
Zwijnenburg, MA;
Woodley, SM;
(2017)
Structure prediction of (BaO)n nanoclusters for n⩽24 using an evolutionary algorithm.
Computational and Theoretical Chemistry
, 1107
pp. 74-81.
10.1016/j.comptc.2017.01.010.
|
Fu, Z;
Vogel, A;
Zwijnenburg, MA;
Cooper, AI;
Sprick, RS;
(2021)
Photocatalytic syngas production using conjugated organic polymers.
Journal of Materials Chemistry A
10.1039/d0ta09613j.
(In press).
|
Godin, R;
Wang, Y;
Zwijnenburg, MA;
Tang, J;
Durrant, JR;
(2017)
Time-Resolved Spectroscopic Investigation of Charge Trapping in Carbon Nitrides Photocatalysts for Hydrogen Generation.
Journal of The American Chemical Society
, 139
(14)
pp. 5216-5224.
10.1021/jacs.7b01547.
|
Guiglion, P;
Berardo, E;
Butchosa, C;
Wobbe, MC;
Zwijnenburg, MA;
(2016)
Modelling materials for solar fuel synthesis by artificial photosynthesis; predicting the optical, electronic and redox properties of photocatalysts.
Journal of Physics: Condensed Matter
, 28
(7)
, Article 074001. 10.1088/0953-8984/28/7/074001.
|
Guiglion, P;
Butchosa, C;
Zwijnenburg, MA;
(2016)
Polymer photocatalysts for water splitting: insights from computational modeling.
Macromolecular Chemistry and Physics
, 213
(3)
pp. 344-353.
10.1002/macp.201500432.
|
Guiglion, P;
Butchosa, C;
Zwijnenburg, MA;
(2014)
Polymeric watersplitting photocatalysts; a computational perspective on the water oxidation conundrum.
Journal of Materials Chemistry A
, 2
(30)
pp. 11996-12004.
10.1039/c4ta02044h.
|
Guiglion, P;
Monti, A;
Zwijnenburg, MA;
(2017)
Validating a Density Functional Theory Approach for Predicting the Redox Potentials Associated with Charge Carriers and Excitons in Polymeric Photocatalysts.
Journal of Physical Chemistry C
, 121
(3)
pp. 1498-1506.
10.1021/acs.jpcc.6b11133.
|
Guiglion, P;
Zwijnenburg, MA;
(2015)
Contrasting the optical properties of the different isomers of oligophenylene.
Physical Chemistry Chemical Physics
, 17
(27)
pp. 17854-17863.
10.1039/C5CP01916H.
|
Hall, CL;
Guo, R;
Potticary, J;
Cremeens, ME;
Warren, SD;
Andrusenko, I;
Gemmi, M;
... Hall, SR; + view all
(2020)
Color Differences Highlight Concomitant Polymorphism of Chalcones.
Crystal Growth & Design
, 20
(10)
pp. 6346-6355.
10.1021/acs.cgd.0c00285.
|
Heath-Apostolopoulos, I;
Vargas-Ortiz, D;
Wilbraham, L;
Jelfs, KE;
Zwijnenburg, MA;
(2021)
Using high-throughput virtual screening to explore the optoelectronic property space of organic dyes; finding diketopyrrolopyrrole dyes for dye-sensitized water splitting and solar cells.
Sustainable Energy & Fuels
, 5
(3)
pp. 704-719.
10.1039/d0se00985g.
|
Heath-Apostolopoulos, I;
Wilbraham, L;
Zwijnenburg, MA;
(2019)
Computational high-throughput screening of polymeric photocatalysts: exploring the effect of composition, sequence isomerism and conformational degrees of freedom.
Faraday Discussions
, 215
pp. 98-110.
10.1039/C8FD00171E.
|
Liu, Lunjie;
Kochman, Michał Andrzej;
Zhao, Wei;
Zwijnenburg, Martijn;
Sprick, Reiner Sebastian;
(2022)
Linear conjugated polymer photocatalysts with varied linker units for photocatalytic hydrogen evolution from water.
Chemical Communications
10.1039/d2cc03810b.
(In press).
|
Liu, Zilu;
Haque, Md Azimul;
Savory, Chris N;
Liu, Tianjun;
Matsuishi, Satoru;
Fenwick, Oliver;
Scanlon, David O;
... Schroeder, Bob C; + view all
(2023)
Controlling the thermoelectric properties of organo-metallic coordination polymers through backbone geometry.
Faraday Discussions
10.1039/d3fd00139c.
(In press).
|
Liu, L;
Kochman, MA;
Xu, Y;
Zwijnenburg, MA;
Cooper, AI;
Sprick, RS;
(2021)
Acetylene-linked conjugated polymers for sacrificial photocatalytic hydrogen evolution from water.
Journal of Materials Chemistry A
10.1039/d1ta04288b.
(In press).
|
Liu, Z;
Liu, T;
Savory, CN;
Jurado, JP;
Reparaz, JS;
Li, J;
Pan, L;
... Schroeder, BC; + view all
(2020)
Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design.
Advanced Functional Materials
, Article 2003106. 10.1002/adfm.202003106.
|
Lyons, Richard J;
Yang, Ying;
Mcqueen, Ewan;
Luo, Liang;
Cooper, Andrew I;
Zwijnenburg, Martijn A;
Sprick, Reiner Sebastian;
(2024)
Polymer Photocatalysts with Side Chain Induced Planarity for Increased Activity for Sacrificial Hydrogen Production from Water.
Advanced Energy Materials
, 14
(12)
, Article 2303680. 10.1002/aenm.202303680.
|
Madden, Eimear;
Zwijnenburg, Martijn A;
(2024)
The effect of particle size on the optical and electronic properties of hydrogenated silicon nanoparticles.
Physical Chemistry Chemical Physics
10.1039/D4CP00119B.
(In press).
|
McQueen, Ewan;
Sakakibara, Noritaka;
Kamogawa, Kei;
Zwijnenburg, Martijn A;
Tamaki, Yusuke;
Ishitani, Osamu;
Sprick, Reiner Sebastian;
(2024)
Visible-light-responsive hybrid photocatalysts for quantitative conversion of CO2 to highly concentrated formate solutions.
Chemical Science
, 15
(43)
pp. 18146-18160.
10.1039/d4sc05289g.
|
Meier, CB;
Clowes, R;
Berardo, E;
Jelfs, KE;
Zwijnenburg, MA;
Sprick, RS;
Cooper, AI;
(2019)
Structurally Diverse Covalent Triazine-based Framework Materials for Photocatalytic Hydrogen Evolution from Water.
Chemistry of Materials
, 31
(21)
pp. 8830-8838.
10.1021/acs.chemmater.9b02825.
|
Meier, CB;
Sprick, RS;
Monti, A;
Guiglion, P;
Lee, J-SM;
Zwijnenburg, MA;
Cooper, AI;
(2017)
Structure-property relationships for covalent triazine-based frameworks: The effect of spacer length on photocatalytic hydrogen evolution from water.
Polymer
, 126
pp. 283-290.
10.1016/j.polymer.2017.04.017.
|
Muuronen, M;
Parker, SM;
Berardo, E;
Le, A;
Zwijnenburg, MA;
Furche, F;
(2017)
Mechanism of photocatalytic water oxidation on small TiO2 nanoparticles.
Chemical Science
, 8
(3)
pp. 2179-2183.
10.1039/c6sc04378j.
|
Penty, Samuel E;
Orton, Georgia RF;
Black, Dominic J;
Pal, Robert;
Zwijnenburg, Martijn A;
Barendt, Timothy A;
(2024)
A Chirally Locked Bis-perylene Diimide Macrocycle: Consequences for Chiral Self-Assembly and Circularly Polarized Luminescence.
Journal of the American Chemical Society
10.1021/jacs.3c13191.
(In press).
|
Penty, Samuel E;
Zwijnenburg, Martijn A;
Orton, Georgia RF;
Stachelek, Patrycja;
Pal, Robert;
Xie, Yujie;
Griffin, Sarah L;
(2022)
The Pink Box: Exclusive Homochiral Aromatic Stacking in a Bis-perylene Diimide Macrocycle.
Journal of the American Chemical Society
10.1021/jacs.2c03531.
|
Piercy, VL;
Saeed, KH;
Prentice, AW;
Neri, G;
Li, C;
Gardner, AM;
Bai, Y;
... Cowan, AJ; + view all
(2021)
Time-Resolved Raman Spectroscopy of Polaron Formation in a Polymer Photocatalyst.
Journal of Physical Chemistry Letters
, 12
(44)
pp. 10899-10905.
10.1021/acs.jpclett.1c03073.
|
Prentice, Andrew;
Zwijnenburg, Martijn;
(2022)
Exploration of the Photocatalytic Cycle for Sacrificial Hydrogen Evolution by Conjugated Polymers Containing Heteroatoms.
Sustainable Energy & Fuels
10.1039/d1se02032c.
(In press).
|
Prentice, A;
Zwijnenburg, M;
(2021)
Hydrogen Evolution by Polymer Photocatalysts; a Possible Photocatalytic Cycle.
Sustainable Energy & Fuels
10.1039/d1se00059d.
(In press).
|
Prentice, AW;
Zwijnenburg, MA;
(2012)
The Role of Computational Chemistry in Discovering and Understanding Organic Photocatalysts for Renewable Fuel Synthesis.
Advanced Energy Materials
p. 2100709.
10.1002/aenm.202100709.
(In press).
|
Sachs, M;
Sprick, RS;
Pearce, D;
Hillman, S;
Monti, A;
Guilbert, A;
Nick, B;
... Cooper, A; + view all
(2018)
Understanding structure-activity relationships in linear polymer photocatalysts for hydrogen evolution.
Nature Communications
, 9
, Article 4968. 10.1038/s41467-018-07420-6.
|
Saunders, Ben;
Wilbraham, Liam;
Prentice, Andrew;
Sprick, Reiner Sebastian;
Zwijnenburg, Martijn;
(2022)
The potential scarcity, or not, of polymeric overall water splitting photocatalysts.
Sustainable Energy & Fuels
10.1039/d2se00027j.
(In press).
|
Sprick, RS;
Bai, Y;
Gulbert, A;
Zbiri, M;
Aitchison, C;
Wilbraham, L;
Dan, Y;
... Cooper, A; + view all
(2019)
Photocatalytic Hydrogen Evolution from Water Using Fluorene and Dibenzothiophene Sulfone-Conjugated Microporous and Linear Polymers.
Chemistry of Materials
, 31
(2)
pp. 305-313.
10.1021/acs.chemmater.8b02833.
|
Sprick, RS;
Bonillo, B;
Clowes, R;
Guiglion, P;
Brownbill, NJ;
Slater, BJ;
Blanc, F;
... Cooper, AI; + view all
(2016)
Visible-light-driven hydrogen evolution using planarized conjugated polymer photocatalysts.
Angewandte Chemie International Edition
, 55
(5)
pp. 1792-1796.
10.1002/anie.201510542.
|
Sprick, RS;
Catherine M., A;
Berardo, E;
Turcani, L;
Wilbraham, L;
Alston, BM;
Jelfs, KE;
... Cooper, AI; + view all
(2018)
Maximising the Hydrogen Evolution Activity in Organic Photocatalysts by Co-polymerisation.
Journal of Materials Chemistry C
, 6
(25)
pp. 11994-12003.
10.1039/c8ta04186e.
|
Sprick, RS;
Chen, Z;
Cowan, AJ;
Bai, Y;
Aitchison, CM;
Fang, Y;
Zwijnenburg, MA;
... Wang, X; + view all
(2020)
Water Oxidation with Cobalt‐Loaded Linear Conjugated Polymer Photocatalysts.
Angewandte Chemie: International Edition
, 59
(42)
pp. 18695-18700.
10.1002/anie.202008000.
|
Sprick, RS;
Chen, Z;
Cowan, AJ;
Bai, Y;
Aitchison, CM;
Fang, Y;
Zwijnenburg, MA;
... Wang, X; + view all
(2020)
Water Oxidation with Cobalt‐Loaded Linear Conjugated Polymer Photocatalysts.
Angewandte Chemie
, 132
(42)
pp. 18854-18859.
10.1002/ange.202008000.
|
Sprick, RS;
Jiang, JX;
Bonillo, B;
Ren, S;
Ratvijitvech, T;
Guiglion, P;
Zwijnenburg, MA;
... Cooper, AI; + view all
(2015)
Tunable organic photocatalysts for visible-light-driven hydrogen evolution.
J Am Chem Soc
, 137
(9)
3265 - 3270.
10.1021/ja511552k.
|
Sprick, RS;
Wilbraham, L;
Bai, Y;
Guiglion, P;
Monti, A;
Clowes, R;
Cooper, AI;
(2018)
Nitrogen containing linear poly(phenylene) derivatives for photo-catalytic hydrogen evolution from water.
Chemistry of Materials
, 30
(16)
pp. 5733-5742.
10.1021/acs.chemmater.8b02501.
|
Vogel, A;
Forster, M;
Wilbraham, L;
Smith, C;
Cowan, A;
Zwijnenburg, MA;
Sprick, RSS;
(2019)
Photocatalytically Active Ladder Polymers.
Faraday Discussions
10.1039/C8FD00197A.
(In press).
|
Wang, Anqi;
Tan, Rui;
Breakwell, Charlotte;
Wei, Xiaochu;
Fan, Zhiyu;
Ye, Chunchun;
Malpass-Evans, Richard;
... Song, Qilei; + view all
(2022)
Solution-Processable Redox-Active Polymers of Intrinsic Microporosity for Electrochemical Energy Storage.
Journal of the American Chemical Society
10.1021/jacs.2c07575.
(In press).
|
Wang, X;
Chen, L;
Chong, SY;
Little, MA;
Wu, Y;
Zhu, W-H;
Clowes, R;
... Cooper, AI; + view all
(2018)
Sulfone-containing covalent organic frameworks for photocatalytic hydrogen evolution from water.
Nature Chemistry
10.1038/s41557-018-0141-5.
(In press).
|
Wang, Y;
Vogel, A;
Sachs, M;
Sprick, RS;
Wilbraham, L;
Moniz, SJA;
Godin, R;
... Tang, J; + view all
(2019)
Current understanding and challenges of solar-driven hydrogen generation using polymeric photocatalysts.
Nature Energy
, 4
pp. 746-760.
10.1038/s41560-019-0456-5.
|
Wilbraham, L;
Berardo, E;
Turcani, L;
Jelfs, K;
Zwijnenburg, MA;
(2018)
High-Throughput Screening Approach for the Optoelectronic Properties of Conjugated Polymers.
Journal of Chemical Information and Modeling
, 58
(12)
pp. 2450-2459.
10.1021/acs.jcim.8b00256.
|
Wilbraham, L;
Smajli, D;
Heath-Apostolopoulos, I;
Zwijnenburg, MA;
(2020)
Mapping the optoelectronic property space of small aromatic molecules.
Communications Chemistry
, 3
, Article 14. 10.1038/s42004-020-0256-7.
|
Wilbraham, L;
Sprick, RS;
Jelfs, K;
Zwijnenburg, MA;
(2019)
Mapping binary copolymer property space with neural networks.
Chemical Science
, 10
(19)
pp. 4973-4984.
10.1039/C8SC05710A.
|
Wobbe, M;
Zwijnenburg, M;
(2015)
Chemical trends in the optical properties of rocksalt nanoparticles.
Physical Chemistry Chemical Physics
, 2015
(17)
pp. 28892-28900.
10.1039/C5CP04851F.
|
Wobbe, MC;
Kerridge, A;
Zwijnenburg, MA;
(2014)
Optical excitation of MgO nanoparticles; a computational perspective.
Physical Chemistry Chemical Physics
, 16
(40)
pp. 22052-22061.
10.1039/c4cp03442b.
|
Woods, DJ;
Hillman, S;
Pearce, D;
Wilbraham, L;
Flagg, L;
Duffy, W;
Mcculloch, I;
... Cooper, A; + view all
(2020)
Side-chain tuning in conjugated polymer photocatalysts for improved hydrogen production from water.
Energy & Environmental Science
10.1039/d0ee01213k.
|
Yang, Ying;
Zwijnenburg, Martijn A;
Gardner, Adrian M;
Adamczyk, Sylwia;
Yang, Jing;
Sun, Yaqi;
Jiang, Qiuyao;
... Cooper, Andrew I; + view all
(2024)
Conjugated Polymer/Recombinant Escherichia coli Biohybrid Systems for Photobiocatalytic Hydrogen Production.
ACS Nano
10.1021/acsnano.3c10668.
(In press).
|
Yeung, Angus;
Zwijnenburg, Martijn A;
Orton, Georgia RF;
Robertson, Jennifer H;
Barendt, Timothy A;
(2024)
Investigating the diastereoselective synthesis of a macrocycle under Curtin–Hammett control.
Chemical Science
10.1039/d3sc05715a.
(In press).
|
Yuan, Q;
Santana-Bonilla, A;
Zwijnenburg, MA;
Jelfs, KE;
(2020)
Molecular generation targeting desired electronic properties via deep generative models.
Nanoscale
(12)
pp. 6744-6758.
10.1039/c9nr10687a.
|
Zwijnenburg, MA;
(2021)
The effect of particle size on the optical and electronic properties of magnesium oxide nanoparticles.
Physical Chemistry Chemical Physics
, 23
(38)
pp. 21579-21590.
10.1039/d1cp02683f.
|
Zwijnenburg, Martijn A;
(2022)
The Effect of Particle Size and Composition on the Optical and Electronic Properties of CdO and CdS Rocksalt Nanoparticles.
Physical Chemistry Chemical Physics
, 36
(24)
pp. 21954-21965.
10.1039/d2cp01342h.
|
Zwijnenburg, Martijn A;
(2013)
Excited state localisation cascades in inorganic semiconductor nanoparticles.
Physical Chemistry Chemical Physics
, 15
(26)
pp. 11119-11127.
10.1039/c3cp50800e.
|
Zwijnenburg, MA;
Berardo, E;
Peveler, WJ;
Jelfs, KE;
(2016)
Amine molecular cages as supramolecular fluorescent explosive sensors: a computational perspective.
The Journal of Physical Chemistry B
, 120
(22)
pp. 5063-5072.
10.1021/acs.jpcb.6b03059.
|
Zwijnenburg, MA;
Cheng, G;
McDonald, TO;
Jelfs, KE;
Jiang, J-X;
Ren, S;
Hasell, T;
... Adams, DJ; + view all
(2013)
Shedding Light on Structure-Property Relationships for Conjugated Microporous Polymers: The Importance of Rings and Strain.
Macromolecules
, 46
(19)
7696 - 7704.
10.1021/ma401311s.
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Zwijnenburg, MA;
Draper, E;
Archibald, L;
Nolan, M;
Schweins, R;
Sproules, S;
Adams, D;
(2018)
Controlling Photoconductivity in PBI Films by Supramolecular Assembly.
Chemistry - A European Journal
, 24
(16)
pp. 4006-4010.
10.1002/chem.201800201.
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Zwijnenburg, MA;
Illas, F;
Bromley, ST;
(2010)
Apparent Scarcity of Low-Density Polymorphs of Inorganic Solids.
PHYS REV LETT
, 104
(17)
, Article 175503. 10.1103/PhysRevLett.104.175503.
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Zwijnenburg, MA;
Walsh, James, J;
Lee, Jonathan, R;
Draper, Emily, R;
King, Stephen, M;
Jäckel, Frank;
Martijn, A;
... Cowan, Alexander, J; + view all
(2016)
Controlling Visible Light-Driven Photoconductivity in Self-Assembled Perylene Bisimide Structures.
Journal of Physical Chemistry C
, 120
(33)
pp. 18479-18486.
10.1021/acs.jpcc.6b06222.
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Thesis
Zwijnenburg, MA;
(2004)
Understanding ordered silica: linking topology and energetics.
Doctoral thesis , Delft University of Technology, Delft, The Netherlands.
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