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Showing 50 publications by Jin-Chong Tan

The role of surface deformation on responsivity of the pillared layer metal-organic framework DUT-8(Ni).

Abylgazina L, Senkovska I, Maliuta M, Bachetzky C, Rauche M et al. (2025), Chemical science

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@article{theroleofsurfac-2025/3,
  title={The role of surface deformation on responsivity of the pillared layer metal-organic framework DUT-8(Ni). },
  author={Abylgazina L, Senkovska I, Maliuta M, Bachetzky C, Rauche M et al.},
  journal={Chemical science},
  year = "2025"
}

Organic solid-state photochromism using porous scaffolds

Mollick S & Tan J-C (2025), Nature Reviews Materials, 1-17

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@article{organicsolidsta-2025/2,
  title={Organic solid-state photochromism using porous scaffolds},
  author={Mollick S & Tan J-C},
  journal={Nature Reviews Materials},
  pages={1-17},
  publisher={Springer Science and Business Media LLC},
  year = "2025"
}

Triboelectric Nanogenerators Based on Composites of Zeolitic Imidazolate Frameworks Functionalized with Halogenated Ligands for Contact and Rotational Mechanical Energy Harvesting

Ye J, Xu T & Tan J-C (2025), ACS Applied Nano Materials

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@article{triboelectricna-2025/2,
  title={Triboelectric Nanogenerators Based on Composites of Zeolitic Imidazolate Frameworks Functionalized with Halogenated Ligands for Contact and Rotational Mechanical Energy Harvesting},
  author={Ye J, Xu T & Tan J-C},
  journal={ACS Applied Nano Materials},
  publisher={American Chemical Society (ACS)},
  year = "2025"
}

Functionalized PDMS for regulating the triboelectric output of nanogenerators: a study of charge transfer mechanisms.

Ye J, Xu T, Germane L, Lapcinskis L, Šutka A et al. (2025), Journal of materials chemistry. C

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@article{functionalizedp-2025/2,
  title={Functionalized PDMS for regulating the triboelectric output of nanogenerators: a study of charge transfer mechanisms. },
  author={Ye J, Xu T, Germane L, Lapcinskis L, Šutka A et al.},
  journal={Journal of materials chemistry. C},
  year = "2025"
}

Fine-Scale Aerosol-Jet Printing of Luminescent Metal–Organic Framework Nanosheets

Sherman DA, Landberg E, Peringath AR, Kar-Narayan S & Tan J-C (2024), ACS Applied Materials & Interfaces

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@article{finescaleaeroso-2024/10,
  title={Fine-Scale Aerosol-Jet Printing of Luminescent Metal–Organic Framework Nanosheets},
  author={Sherman DA, Landberg E, Peringath AR, Kar-Narayan S & Tan J-C},
  journal={ACS Applied Materials & Interfaces},
  publisher={American Chemical Society (ACS)},
  year = "2024"
}

Exploring the Photophysical and Mechanical Behavior of Fluorescent Metal–Organic Framework Monoliths

Tricarico M, Mollick S, Kachwal V, Sherman DA & Tan J-C (2024), Chemistry of Materials, 36(17), 8247-8254

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@article{exploringthepho-2024/8,
  title={Exploring the Photophysical and Mechanical Behavior of Fluorescent Metal–Organic Framework Monoliths},
  author={Tricarico M, Mollick S, Kachwal V, Sherman DA & Tan J-C},
  journal={Chemistry of Materials},
  volume={36},
  pages={8247-8254},
  publisher={American Chemical Society (ACS)},
  year = "2024"
}

Water sorption studies with mesoporous multivariate monoliths based on UiO-66

Marazani LG, Gascon-Perez V, Pathak A, Tricarico M, Zaworotko MJ et al. (2024), Materials Advances, 5, 7679-7689

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@article{watersorptionst-2024/8,
  title={Water sorption studies with mesoporous multivariate monoliths based on UiO-66},
  author={Marazani LG, Gascon-Perez V, Pathak A, Tricarico M, Zaworotko MJ et al.},
  journal={Materials Advances},
  volume={5},
  pages={7679-7689},
  publisher={Royal Society of Chemistry},
  year = "2024"
}

Unravelling the Ageing Effects of PDMS‐Based Triboelectric Nanogenerators (Adv. Mater. Interfaces 19/2024)

Xu T, Ye J & Tan J (2024), Advanced Materials Interfaces, 11(19)

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@article{unravellingthea-2024/7,
  title={Unravelling the Ageing Effects of PDMS‐Based Triboelectric Nanogenerators (Adv. Mater. Interfaces 19/2024)},
  author={Xu T, Ye J & Tan J},
  journal={Advanced Materials Interfaces},
  volume={11},
  publisher={Wiley},
  year = "2024"
}

Stable photoinduced metal-organic nanosheet blue phosphor for white light emission

Sherman D, Kamal W, Elston SJ, Castrejón-Pita AA, Morris SM et al. (2024), Materials Today Chemistry, 38

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@article{stablephotoindu-2024/5,
  title={Stable photoinduced metal-organic nanosheet blue phosphor for white light emission},
  author={Sherman D, Kamal W, Elston SJ, Castrejón-Pita AA, Morris SM et al.},
  journal={Materials Today Chemistry},
  volume={38},
  number={102089},
  publisher={Elsevier},
  year = "2024"
}

Unravelling the ageing effects of PDMS‐based triboelectric nanogenerators

Xu T, Ye J & Tan J-C (2024), Advanced Materials Interfaces, 11(19)

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@article{unravellingthea-2024/4,
  title={Unravelling the ageing effects of PDMS‐based triboelectric nanogenerators},
  author={Xu T, Ye J & Tan J-C},
  journal={Advanced Materials Interfaces},
  volume={11},
  number={2400094},
  publisher={Wiley},
  year = "2024"
}

Unlocking Diabetic Acetone Vapor Detection by A Portable Metal-Organic Framework-Based Turn-On Optical Sensor Device.

Mollick S, Rai S, Frentzel-Beyme L, Kachwal V, Donà L et al. (2023), Advanced science (Weinheim, Baden-Wurttemberg, Germany), e2305070

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@article{unlockingdiabet-2023/11,
  title={Unlocking Diabetic Acetone Vapor Detection by A Portable Metal-Organic Framework-Based Turn-On Optical Sensor Device.},
  author={Mollick S, Rai S, Frentzel-Beyme L, Kachwal V, Donà L et al.},
  journal={Advanced science (Weinheim, Baden-Wurttemberg, Germany)},
  pages={e2305070},
  year = "2023"
}

Unlocking diabetic acetone vapor detection by a portable metal-organic framework-based turn-on optical sensor device

Mollick S, Rai S, Frentzel-Beyme L, Kachwal V, Donà L et al. (2023), Advanced Science, 11(4)

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@article{unlockingdiabet-2023/11,
  title={Unlocking diabetic acetone vapor detection by a portable metal-organic framework-based turn-on optical sensor device},
  author={Mollick S, Rai S, Frentzel-Beyme L, Kachwal V, Donà L et al.},
  journal={Advanced Science},
  volume={11},
  number={2305070},
  publisher={Wiley},
  year = "2023"
}

Resilient photoswitchable metal–organic frameworks for sunlight-induced on-demand photochromism in the solid state

Mollick S, Zhang Y, Kamal W, Tricarico M, Möslein A et al. (2023), Chemical Engineering Journal, 476

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@article{resilientphotos-2023/10,
  title={Resilient photoswitchable metal–organic frameworks for sunlight-induced on-demand photochromism in the solid state},
  author={Mollick S, Zhang Y, Kamal W, Tricarico M, Möslein A et al.},
  journal={Chemical Engineering Journal},
  volume={476},
  number={146727},
  publisher={Elsevier},
  year = "2023"
}

Tailored Broad-Spectrum Emission in Hybrid Aggregation Induced Emission (AIE)-MOFs: Boosting White Light Efficiency in Electrospun Janus Microfibers

Kachwal V, Mollick S & Tan J-C (2023), ADVANCED FUNCTIONAL MATERIALS

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@article{tailoredbroadsp-2023/10,
  title={Tailored Broad-Spectrum Emission in Hybrid Aggregation Induced Emission (AIE)-MOFs: Boosting White Light Efficiency in Electrospun Janus Microfibers},
  author={Kachwal V, Mollick S & Tan J-C},
  journal={ADVANCED FUNCTIONAL MATERIALS},
  publisher={Wiley},
  year = "2023"
}

Stress-strain relationships and yielding of metal-organic framework monoliths

Tricarico M, Besnard C, Cinque G, Korsunsky AM & Tan J-C (2023), COMMUNICATIONS MATERIALS, 4(1), 86-86

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@article{stressstrainrel-2023/10,
  title={Stress-strain relationships and yielding of metal-organic framework monoliths},
  author={Tricarico M, Besnard C, Cinque G, Korsunsky AM & Tan J-C},
  journal={COMMUNICATIONS MATERIALS},
  volume={4},
  number={ARTN 86},
  pages={86-86},
  publisher={Springer Nature},
  year = "2023"
}

High-performance triboelectric nanogenerators incorporating chlorinated zeolitic imidazolate frameworks with topologically tunable dielectric and surface adhesion properties

Ye J & Tan J-C (2023), Nano Energy, 114, 108687-108687

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@article{highperformance-2023/9,
  title={High-performance triboelectric nanogenerators incorporating chlorinated zeolitic imidazolate frameworks with topologically tunable dielectric and surface adhesion properties},
  author={Ye J & Tan J-C},
  journal={Nano Energy},
  volume={114},
  number={108687},
  pages={108687-108687},
  publisher={Elsevier BV},
  year = "2023"
}

Nanotrap Grafted Anionic MOF for Superior Uranium Extraction from Seawater.

More YD, Mollick S, Saurabh S, Fajal S, Tricarico M et al. (2023), Small (Weinheim an der Bergstrasse, Germany), e2302014-e2302014

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@article{nanotrapgrafted-2023/9,
  title={Nanotrap Grafted Anionic MOF for Superior Uranium Extraction from Seawater.},
  author={More YD, Mollick S, Saurabh S, Fajal S, Tricarico M et al.},
  journal={Small (Weinheim an der Bergstrasse, Germany)},
  pages={e2302014-e2302014},
  year = "2023"
}

Liquids with High Compressibility.

Lai B, Liu S, Cahir J, Sun Y, Yin H et al. (2023), Advanced materials (Deerfield Beach, Fla.), e2306521-e2306521

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@article{liquidswithhigh-2023/8,
  title={Liquids with High Compressibility.},
  author={Lai B, Liu S, Cahir J, Sun Y, Yin H et al.},
  journal={Advanced materials (Deerfield Beach, Fla.)},
  pages={e2306521-e2306521},
  publisher={Wiley},
  year = "2023"
}

Quantum tunneling rotor as a sensitive atomistic probe of guests in a metal-organic framework

Titov K, Ryder MR, Lamaire A, Zeng Z, Chaudhari AK et al. (2023), Physical Review Materials, 7(7)

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@article{quantumtunnelin-2023/7,
  title={Quantum tunneling rotor as a sensitive atomistic probe of guests in a metal-organic framework},
  author={Titov K, Ryder MR, Lamaire A, Zeng Z, Chaudhari AK et al.},
  journal={Physical Review Materials},
  volume={7},
  number={73402},
  publisher={American Physical Society (APS)},
  year = "2023"
}

Guest Entrapment in Metal-Organic Nanosheets for Quantifiably Tuneable Luminescence

Sherman DA, Gutierrez M, Griffiths I, Mollick S, Amin N et al. (2023), ADVANCED FUNCTIONAL MATERIALS

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@article{guestentrapment-2023/6,
  title={Guest Entrapment in Metal-Organic Nanosheets for Quantifiably Tuneable Luminescence},
  author={Sherman DA, Gutierrez M, Griffiths I, Mollick S, Amin N et al.},
  journal={ADVANCED FUNCTIONAL MATERIALS},
  publisher={Wiley},
  year = "2023"
}

Manganese catalysed dehydrogenative synthesis of polyureas from diformamide and diamines.

McLuskie A, Brodie CN, Tricarico M, Gao C, Peters G et al. (2023), Catalysis science & technology, 13(12), 3551-3557

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@article{manganesecataly-2023/6,
  title={Manganese catalysed dehydrogenative synthesis of polyureas from diformamide and diamines.},
  author={McLuskie A, Brodie CN, Tricarico M, Gao C, Peters G et al.},
  journal={Catalysis science & technology},
  volume={13},
  pages={3551-3557},
  year = "2023"
}

High-Performance Triboelectric Nanogenerators Incorporating Chlorinated Zeolitic Imidazolate Frameworks with Topologically Tunable Dielectric and Surface Adhesion Properties

Ye J & Tan J-C (2023)

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@misc{highperformance-2023/5,
  title={High-Performance Triboelectric Nanogenerators Incorporating Chlorinated Zeolitic Imidazolate Frameworks with Topologically Tunable Dielectric and Surface Adhesion Properties},
  author={Ye J & Tan J-C},
  year = "2023"
}

High-Performance Triboelectric Nanogenerators Incorporating Chlorinated Zeolitic Imidazolate Frameworks with Topologically Tunable Dielectric and Surface Adhesion Properties

Ye J & Tan J-C (2023)

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@misc{highperformance-2023/5,
  title={High-Performance Triboelectric Nanogenerators Incorporating Chlorinated Zeolitic Imidazolate Frameworks with Topologically Tunable Dielectric and Surface Adhesion Properties},
  author={Ye J & Tan J-C},
  year = "2023"
}

Manganese catalysed dehydrogenative synthesis of polyureas from diformamide and diamines

McLuskie A, Brodie CN, Tricarico M, Gao C, Peters G et al. (2023), Catalysis Science & Technology, 13(12), 3551-3557

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@article{manganesecataly-2023/5,
  title={Manganese catalysed dehydrogenative synthesis of polyureas from diformamide and diamines},
  author={McLuskie A, Brodie CN, Tricarico M, Gao C, Peters G et al.},
  journal={Catalysis Science & Technology},
  volume={13},
  pages={3551-3557},
  publisher={Royal Society of Chemistry },
  year = "2023"
}

In situ micropillar compression of an anisotropic metal-organic framework single crystal

Zeng Z, Xiao Y, Wheeler JM & Tan J (2023), Communications Chemistry, 6(1)

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@article{insitumicropill-2023/4,
  title={In situ micropillar compression of an anisotropic metal-organic framework single crystal},
  author={Zeng Z, Xiao Y, Wheeler JM & Tan J},
  journal={Communications Chemistry},
  volume={6},
  number={63},
  publisher={Spinger Nature},
  year = "2023"
}

In situ micropillar compression of an anisotropic metal-organic framework single crystal.

Zeng Z, Xiao Y, Wheeler JM & Tan J-C (2023), Commun Chem, 6(1), 63

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@article{insitumicropill-2023/4,
  title={In situ micropillar compression of an anisotropic metal-organic framework single crystal.},
  author={Zeng Z, Xiao Y, Wheeler JM & Tan J-C},
  journal={Commun Chem},
  volume={6},
  pages={63},
  year = "2023"
}

Nanostructure-dependent indentation fracture toughness of metal-organic framework monoliths

Tricarico M & Tan J-C (2023), Next Materials, 1(1)

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@article{nanostructurede-2023/3,
  title={Nanostructure-dependent indentation fracture toughness of metal-organic framework monoliths},
  author={Tricarico M & Tan J-C},
  journal={Next Materials},
  volume={1},
  number={100009},
  publisher={Elsevier},
  year = "2023"
}

Fundamentals of MOF Mechanics & Structure–Mechanical Property Relationships

Tan J-C (2023), 1-64

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@misc{fundamentalsofm-2023/3,
  title={Fundamentals of MOF Mechanics & Structure–Mechanical Property Relationships},
  author={Tan J-C},
  year = "2023"
}

Manganese Catalysed Dehydrogenative Synthesis of Polyureas from Diformamide and Diamines

McLuskie A, Brodie C, Tricarico M, Gao C, Peters G et al. (2023)

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@misc{manganesecataly-2023/1,
  title={Manganese Catalysed Dehydrogenative Synthesis of Polyureas from Diformamide and Diamines},
  author={McLuskie A, Brodie C, Tricarico M, Gao C, Peters G et al.},
  year = "2023"
}

Guest Entrapment in Metal-Organic Nanosheets for Quantifiably Tuneable Luminescence

Sherman DA, Gutierrez M, Griffiths I, Mollick S, Amin N et al. (2023), ADVANCED FUNCTIONAL MATERIALS

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@article{guestentrapment-2023/,
  title={Guest Entrapment in Metal-Organic Nanosheets for Quantifiably Tuneable Luminescence},
  author={Sherman DA, Gutierrez M, Griffiths I, Mollick S, Amin N et al.},
  journal={ADVANCED FUNCTIONAL MATERIALS},
  year = "2023"
}

High-performance triboelectric nanogenerators incorporating chlorinated zeolitic imidazolate frameworks with topologically tunable dielectric and surface adhesion properties

Ye J & Tan J-C (2023), NANO ENERGY, 114

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@article{highperformance-2023/,
  title={High-performance triboelectric nanogenerators incorporating chlorinated zeolitic imidazolate frameworks with topologically tunable dielectric and surface adhesion properties},
  author={Ye J & Tan J-C},
  journal={NANO ENERGY},
  volume={114},
  number={ARTN 108687},
  year = "2023"
}

Quantum tunneling rotor as a sensitive atomistic probe of guests in a metal-organic framework

Titov K, Ryder MR, Lamaire A, Zeng Z, Chaudhari AK et al. (2023), PHYSICAL REVIEW MATERIALS, 7(7)

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@article{quantumtunnelin-2023/,
  title={Quantum tunneling rotor as a sensitive atomistic probe of guests in a metal-organic framework},
  author={Titov K, Ryder MR, Lamaire A, Zeng Z, Chaudhari AK et al.},
  journal={PHYSICAL REVIEW MATERIALS},
  volume={7},
  number={ARTN 073402},
  year = "2023"
}

Stress-strain relationships and yielding of metal-organic framework monoliths

Tricarico M, Besnard C, Cinque G, Korsunsky AM & Tan J-C (2023), COMMUNICATIONS MATERIALS, 4(1)

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@article{stressstrainrel-2023/,
  title={Stress-strain relationships and yielding of metal-organic framework monoliths},
  author={Tricarico M, Besnard C, Cinque G, Korsunsky AM & Tan J-C},
  journal={COMMUNICATIONS MATERIALS},
  volume={4},
  number={ARTN 86},
  year = "2023"
}

Resilient photoswitchable metal-organic frameworks for sunlight-induced on-demand photochromism in the solid state

Mollick S, Zhang Y, Kamal W, Tricarico M, Moslein AF et al. (2023), CHEMICAL ENGINEERING JOURNAL, 476

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@article{resilientphotos-2023/,
  title={Resilient photoswitchable metal-organic frameworks for sunlight-induced on-demand photochromism in the solid state},
  author={Mollick S, Zhang Y, Kamal W, Tricarico M, Moslein AF et al.},
  journal={CHEMICAL ENGINEERING JOURNAL},
  volume={476},
  number={ARTN 146727},
  year = "2023"
}

Tailored Broad-Spectrum Emission in Hybrid Aggregation Induced Emission (AIE)-MOFs: Boosting White Light Efficiency in Electrospun Janus Microfibers

Kachwal V, Mollick S & Tan J-C (2023), ADVANCED FUNCTIONAL MATERIALS

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@article{tailoredbroadsp-2023/,
  title={Tailored Broad-Spectrum Emission in Hybrid Aggregation Induced Emission (AIE)-MOFs: Boosting White Light Efficiency in Electrospun Janus Microfibers},
  author={Kachwal V, Mollick S & Tan J-C},
  journal={ADVANCED FUNCTIONAL MATERIALS},
  year = "2023"
}

A Multimodal Study on the Unique Sensing Behavior of a Guest@Metal‐Organic Framework Material for the Detection of Volatile Acetone

Möslein AF, Gutiérrez M, Titov K, Donà L, Civalleri B et al. (2022), Advanced Materials Interfaces, 2201401-2201401

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@article{amultimodalstud-2022/12,
  title={A Multimodal Study on the Unique Sensing Behavior of a Guest@Metal‐Organic Framework Material for the Detection of Volatile Acetone},
  author={Möslein AF, Gutiérrez M, Titov K, Donà L, Civalleri B et al.},
  journal={Advanced Materials Interfaces},
  pages={2201401-2201401},
  publisher={Wiley},
  year = "2022"
}

Stimuli-Responsive Electrospun Fluorescent Fibers Augmented with Aggregation-Induced Emission (AIE) for Smart Applications.

Kachwal V & Tan J-C (2022), Advanced science (Weinheim, Baden-Wurttemberg, Germany), e2204848-e2204848

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@article{stimuliresponsi-2022/11,
  title={Stimuli-Responsive Electrospun Fluorescent Fibers Augmented with Aggregation-Induced Emission (AIE) for Smart Applications.},
  author={Kachwal V & Tan J-C},
  journal={Advanced science (Weinheim, Baden-Wurttemberg, Germany)},
  pages={e2204848-e2204848},
  publisher={Wiley},
  year = "2022"
}

Surface modulation of metal-organic frameworks for on-demand photochromism in the solid state

Mollick S, Zhang Y, Kamal W, Tricarico M, Möslein AF et al. (2022)

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@misc{surfacemodulati-2022/10,
  title={Surface modulation of metal-organic frameworks for on-demand photochromism in the solid state},
  author={Mollick S, Zhang Y, Kamal W, Tricarico M, Möslein AF et al.},
  year = "2022"
}

Fracture behavior of MOF monoliths revealed by nanoindentation and nanoscratch

Tricarico M & Tan J-C (2022)

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@misc{fracturebehavio-2022/10,
  title={Fracture behavior of MOF monoliths revealed by nanoindentation and nanoscratch},
  author={Tricarico M & Tan J-C},
  year = "2022"
}

In situ micropillar compression of an anisotropic metal-organic framework single crystal

Zeng Z, Xiao Y, Wheeler JM & Tan J-C (2022)

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BibTeX
@misc{insitumicropill-2022/10,
  title={In situ micropillar compression of an anisotropic metal-organic
  framework single crystal},
  author={Zeng Z, Xiao Y, Wheeler JM & Tan J-C},
  year = "2022"
}

Quantifiably Tuneable Luminescence by Ultra-Thin Metal-Organic Nanosheets via Dual-Guest Energy Transfer

Sherman DA, Gutiérrez M, Griffiths I, Mollick S, Amin N et al. (2022)

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@misc{quantifiablytun-2022/10,
  title={Quantifiably Tuneable Luminescence by Ultra-Thin Metal-Organic
  Nanosheets via Dual-Guest Energy Transfer},
  author={Sherman DA, Gutiérrez M, Griffiths I, Mollick S, Amin N et al.},
  year = "2022"
}

Parts-per-billion (ppb) selective iodine sensors leveraging metal–organic framework nanoenvironment

Babal A, Mollick S, Kamal W, Elston S, Castrejón-Pita A et al. (2022), Materials Today, 58, 91-99

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@article{partsperbillion-2022/9,
  title={Parts-per-billion (ppb) selective iodine sensors leveraging metal–organic framework nanoenvironment},
  author={Babal A, Mollick S, Kamal W, Elston S, Castrejón-Pita A et al.},
  journal={Materials Today},
  volume={58},
  pages={91-99},
  year = "2022"
}

Parts-per-billion (ppb) selective iodine sensors leveraging metal-organic framework nanoenvironment

Babal AS, Mollick S, Kamal W, Elston S, Castrejon-Pita AA et al. (2022), MATERIALS TODAY, 58, 91-99

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@article{partsperbillion-2022/9,
  title={Parts-per-billion (ppb) selective iodine sensors leveraging metal-organic framework nanoenvironment},
  author={Babal AS, Mollick S, Kamal W, Elston S, Castrejon-Pita AA et al.},
  journal={MATERIALS TODAY},
  volume={58},
  pages={91-99},
  year = "2022"
}

Turn-on fluorescence chemical sensing through transformation of self-trapped exciton states at room temperature

Zhang Y, Mollick S, Tricarico M, Ye J, Sherman DA et al. (2022), ACS Sensors, 7(8), 2338-2344

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@article{turnonfluoresce-2022/8,
  title={Turn-on fluorescence chemical sensing through transformation of self-trapped exciton states at room temperature},
  author={Zhang Y, Mollick S, Tricarico M, Ye J, Sherman DA et al.},
  journal={ACS Sensors},
  volume={7},
  pages={2338-2344},
  publisher={American Chemical Society},
  year = "2022"
}

Sol-gel processing of a covalent organic framework for the generation of hierarchically porous monolithic adsorbents

Carrington ME, Rampal N, Madden DG, O’Nolan D, Casati NPM et al. (2022), Chem, 8(11), 2961-2977

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@article{solgelprocessin-2022/8,
  title={Sol-gel processing of a covalent organic framework for the generation of hierarchically porous monolithic adsorbents},
  author={Carrington ME, Rampal N, Madden DG, O’Nolan D, Casati NPM et al.},
  journal={Chem},
  volume={8},
  pages={2961-2977},
  publisher={Cell Press},
  year = "2022"
}

Nanoconfinement of tetraphenylethylene in zeolitic metal-organic framework for turn-on mechanofluorochromic stress sensing

Zhang Y, Xiong T, Möslein AF, Mollick S, Kachwal V et al. (2022), Applied Materials Today, 27, 101434-101434

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@article{nanoconfinement-2022/6,
  title={Nanoconfinement of tetraphenylethylene in zeolitic metal-organic framework for turn-on mechanofluorochromic stress sensing},
  author={Zhang Y, Xiong T, Möslein AF, Mollick S, Kachwal V et al.},
  journal={Applied Materials Today},
  volume={27},
  number={101434},
  pages={101434-101434},
  publisher={Elsevier BV},
  year = "2022"
}

Confinement of Luminescent Guests in Metal–Organic Frameworks: Understanding Pathways from Synthesis and Multimodal Characterization to Potential Applications of LG@MOF Systems

Gutiérrez M, Zhang Y & Tan J-C (2022), Chemical Reviews

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@article{confinementoflu-2022/4,
  title={Confinement of Luminescent Guests in Metal–Organic Frameworks: Understanding Pathways from Synthesis and Multimodal Characterization to Potential Applications of LG@MOF Systems},
  author={Gutiérrez M, Zhang Y & Tan J-C},
  journal={Chemical Reviews},
  number={acs.chemrev.1c00980},
  publisher={American Chemical Society (ACS)},
  year = "2022"
}

Defect engineering in metal–organic framework nanocrystals: implications for mechanical properties and performance

Möslein AF, Donà L, Civalleri B & Tan J (2022), ACS Applied Nano Materials

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@article{defectengineeri-2022/3,
  title={Defect engineering in metal–organic framework nanocrystals: implications for mechanical properties and performance},
  author={Möslein AF, Donà L, Civalleri B & Tan J},
  journal={ACS Applied Nano Materials},
  publisher={American Chemical Society},
  year = "2022"
}

Vibrational Modes and Terahertz Phenomena of the Large-Cage Zeolitic Imidazolate Framework-71.

Möslein AF & Tan J-C (2022), J Phys Chem Lett, 13(12), 2838-2844

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@article{vibrationalmode-2022/3,
  title={Vibrational Modes and Terahertz Phenomena of the Large-Cage Zeolitic Imidazolate Framework-71.},
  author={Möslein AF & Tan J-C},
  journal={J Phys Chem Lett},
  volume={13},
  pages={2838-2844},
  year = "2022"
}

Nano-Trap Engineering in MOF Microenvironment for Ultratrace Iodine Sensors

Babal AS, Mollick S, Kamal W, Elston S, Castrejón-Pita AA et al. (2022)

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BibTeX
@misc{nanotrapenginee-2022/2,
  title={Nano-Trap Engineering in MOF Microenvironment for Ultratrace Iodine
  Sensors},
  author={Babal AS, Mollick S, Kamal W, Elston S, Castrejón-Pita AA et al.},
  year = "2022"
}