Gel-Print-Grow: A New Way of 3D Printing Meta-Organic Frameworks

被引:76
作者
Lawson, Shane [1 ]
Alwakwak, Abdo-Aslam [1 ]
Rownaghi, Ali A. [1 ]
Rezaei, Fateme [1 ]
机构
[1] Missouri Univ Sci & Technol, Dept Chem & Biochem Engn, Rolla, MO 65409 USA
基金
美国国家科学基金会;
关键词
3D printing; sol-gel synthesis; MOF coordination; gelation; CO2; adsorption; HKUST-1; ACTIVATION; MONOLITHS; REMOVAL; WATER; CU-3(BTC)(2); COMPOSITES; ADSORBENTS; POROSITY; HYBRID;
D O I
10.1021/acsami.0c18720
中图分类号
TB3 [工程材料学];
学科分类号
082905 [生物质能源与材料];
摘要
3D printing offers an attractive means of forming structured metal-organic frameworks (MOFs), as this technique imparts digital geometric tuning to fit any process column. However, 3D-printed MOF structures are usually formed by suspending presynthesized particles into an ink for further processing. This leads to poor rheological properties as MOFs do not bind with inert binders. Herein, we address this problem by coordinating the MOF secondarily by 3D printing its gelated precursors. Specifically, we produced a printable sol-gel containing similar to 70% wt % of HKUST-1 precursors and optimized the in situ growth conditions by varying the desolvation temperature and activation solvent. Analysis of the so-called gel-print-grow monoliths' properties as a function of the coordination variables revealed that desolvating at 120 degrees C produced fully formed MOF particles with comparable diffractive indices to the parent powder regardless of the activation solvent used. Assessment of the samples' textural properties revealed that washing in acetone or methanol produced the highest surface areas, pore volumes, and CO2 adsorption capacities, however, washing with methanol produced binder swelling and collapse of the printed structure, thereby indicating that washing with acetone was more effective overall. This study represents a promising way of 3D printing MOFs and a breakthrough in additive manufacturing, since the simple, high-throughput, framework detailed herein-whereby the synthesis temperature and washing solvent are varied to optimize MOF coordination-could easily be applied to other crystallites. As such, it is anticipated that this new and exciting method will provide new paths to shape engineer MOFs for applications in energy-intensive fields and beyond.
引用
收藏
页码:56108 / 56117
页数:10
相关论文
共 47 条
[1]
Ultrasonically assisted hydrothermal synthesis of activated carbon-HKUST-1-MOF hybrid for efficient simultaneous ultrasound-assisted removal of ternary organic dyes and antibacterial investigation: Taguchi optimization [J].
Azad, F. Nasiri ;
Ghaedi, M. ;
Dashtian, K. ;
Hajati, S. ;
Pezeshkpour, V. .
ULTRASONICS SONOCHEMISTRY, 2016, 31 :383-393
[2]
One-pot synthesis of binary metal organic frameworks (HKUST-1 and UiO-66) for enhanced adsorptive removal of water contaminants [J].
Azhar, Muhammad Rizwan ;
Abid, Hussein Rasool ;
Sun, Hongqi ;
Periasamy, Vijay ;
Tade, Moses O. ;
Wang, Shaobin .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2017, 490 :685-694
[3]
Metal-Organic Frameworks with Potential Application for SO2 Separation and Flue Gas Desulfurization [J].
Brandt, Philipp ;
Nuhnen, Alexander ;
Lange, Marcus ;
Moellmer, Jens ;
Weingart, Oliver ;
Janiak, Christoph .
ACS APPLIED MATERIALS & INTERFACES, 2019, 11 (19) :17350-17358
[4]
Chromium(III) Terephthalate Metal Organic Framework (MIL-101): HF-Free Synthesis, Structure, Polyoxometalate Composites, and Catalytic Properties [J].
Bromberg, Lev ;
Diao, Ying ;
Wu, Huimeng ;
Speakman, Scott A. ;
Hatton, T. Alan .
CHEMISTRY OF MATERIALS, 2012, 24 (09) :1664-1675
[5]
Multifunctional Supramolecular Hybrid Materials Constructed from Hierarchical Self-Ordering of In Situ Generated Metal-Organic Framework (MOF) Nanoparticles [J].
Chaudhari, Abhijeet K. ;
Han, Intaek ;
Tan, Jin-Chong .
ADVANCED MATERIALS, 2015, 27 (30) :4438-4446
[6]
MOF Functionalization via Solvent-Assisted Ligand Incorporation: Phosphonates vs Carboxylates [J].
Deria, Pravas ;
Bury, Wojciech ;
Hod, Idan ;
Kung, Chung-Wei ;
Karagiaridi, Olga ;
Hupp, Joseph T. ;
Farha, Omar K. .
INORGANIC CHEMISTRY, 2015, 54 (05) :2185-2192
[7]
Synthesis through 3D printing: formation of 3D coordination polymers [J].
Halevi, Oded ;
Chen, Jingwei ;
Thangavel, Gurunathan ;
Morris, Samuel Alexander ;
Ben Uliel, Tal ;
Tischler, Yaakov Raphael ;
Lee, Pooi See ;
Magdassi, Shlomo .
RSC ADVANCES, 2020, 10 (25) :14812-14817
[8]
Best Practices for the Synthesis, Activation, and Characterization of Metal-Organic Frameworks [J].
Howarth, Ashlee J. ;
Peters, Aaron W. ;
Vermeulen, Nicolaas A. ;
Wang, Timothy C. ;
Hupp, Joseph T. ;
Farha, Omar K. .
CHEMISTRY OF MATERIALS, 2017, 29 (01) :26-39
[9]
Hu ZB, 2000, ADV MATER, V12, P1173, DOI 10.1002/1521-4095(200008)12:16<1173::AID-ADMA1173>3.0.CO
[10]
2-Z