Derleme
BibTex RIS Kaynak Göster

A Short Review of Two-Dimensional Metal Borides: Structure and Synthesis

Yıl 2025, Cilt: 2 Sayı: 1, 13 - 18, 22.04.2025

Öz

Two-dimensional transition metal borides (MBenes) pose significant advantages in various applications owing to their high oxidation resistance and stability, tailorable surface properties, and large surface area. Mbenes, two-dimensional transition metal borides, was discovered in 2017 and showed similar structural properties with transition metal carbides and nitrides known as MXenes. MBenes display great potential in various applications, including sensing and catalysis, due to their high electrical conductivity, the rich content of surface functional groups, the easy modification of surface functional groups and/or surface chemistry, the large physical surface area, and the hydrophilic surface properties. Despite its great potential, the research focused on MBenes is in the infant stage, and further research should be conducted to unravel the real potential of those new material families, especially in advanced materials science. This review briefly defines the structure and synthesis of MBenes, and their differences from those of Mxenes are explained in detail.

Kaynakça

  • Ade, M. and H. Hillebrecht (2015). Ternary borides Cr2AlB2, Cr3AlB4, and Cr4AlB6: The first members of the series (CrB2) n CrAl with n= 1, 2, 3 and a unifying concept for ternary borides as MAB-phases. Inorganic chemistry 54(13): 6122-6135.
  • Björk, J., Halim, J., Zhou, J., & Rosen, J. (2023). Predicting chemical exfoliation: fundamental insights into the synthesis of MXenes. npj 2D Materials and Applications, 7(1), 5.
  • Chen, D., L. H. Tang and J. H. Li (2010). Graphene-based materials in electrochemistry. Chemical Society Reviews 39(8): 3157-3180.
  • Chhowalla, M., H. S. Shin, G. Eda, L. J. Li, K. P. Loh and H. Zhang (2013). The chemistry of two-dimensional layered transition metal dichalcogenide nanosheets. Nature Chemistry 5(4): 263-275.
  • Geim, A. K. (2009). Graphene: Status and Prospects. Science 324(5934): 1530-1534
  • Gunda, H., Klebanoff, L. E., Sharma, P. A., Varma, A. K., Dolia, V., Jasuja, K., & Stavila, V. (2021). Progress, challenges, and opportunities in the synthesis, characterization, and application of metal-boride-derived two-dimensional nanostructures. ACS Materials Letters, 3(5), 535-556.
  • Gurbuz, H. N., Hussaini, A. A., Ipekci, H. H., Durmaz, F., Uzunoglu, A., & Yıldırım, M. (2024). Electrical behaviors of the MXene nanoflower interlayered heterojunction Schottky photodiode devices. Applied Physics A, 130(9), 652.
  • Gurbuz, H. N., Tok, K. C., Gumustas, M., Cagil, E. M., Ipekci, H. H., & Uzunoglu, A. (2025). Development of flexible nicotine sensors by inkjet printing of heteroatom-doped 3D V2C MXene nanoflower/holey carbon nanotube-based inks. FlatChem, 100811.
  • Javed, M. S., Zhang, X., Ahmad, T., Usman, M., Shah, S. S. A., Ahmad, A., & Han, W. (2024). MXenes to MBenes: latest development and opportunities for energy storage devices. Materials Today.
  • Jiang, L., Zhou, D., Yang, J., Zhou, S., Wang, H., Yuan, X., & Li, H. (2022). 2D single-and few-layered MXenes: synthesis, applications and perspectives. Journal of Materials Chemistry A, 10(26), 13651-13672.
  • Khan, A. J., Shah, S. S., Khan, S., Mateen, A., Iqbal, B., Naseem, M., & Zhao, G. (2024). 2D metal borides (MBenes): Synthesis methods for energy storage applications. Chemical Engineering Journal, 154429.
  • Liu, Y., Tang, Q., Xu, M., Ren, J., Guo, C., Chen, C., & Liu, D. (2023). Efficient mechanical exfoliation of MXene nanosheets. Chemical Engineering Journal, 468, 143439.
  • Miao, N., Yan, Y., & Wang, J. (2024). A rising layered boride family for energy and catalysis applications: novel hexagonal MAB phases and MBenes. ChemSusChem, 17(22), e202400229.
  • Nair, V. G., Birowska, M., Bury, D., Jakubczak, M., Rosenkranz, A., & Jastrzębska, A. M. (2022). 2D MBenes: a novel member in the flatland. Advanced Materials, 34(23), 2108840.
  • Novoselov, K. S., D. Jiang, F. Schedin, T. J. Booth, V. V. Khotkevich, S. V. Morozov and A. K. Geim (2005). Two-dimensional atomic crystals. Proceedings of the National Academy of Sciences of the United States of America 102(30): 10451-10453.
  • Ozkan, M. (2024). MXenes vs MBenes: Demystifying the materials of tomorrow’s carbon capture revolution. MRS Energy & Sustainability 11(1): 181-190.
  • Ramachandran, T., Butt, H., Zheng, L., & Rezeq, M. D. (2024). A review of 2D metal boride-derived nanostructures: From synthesis to energy storage and conversion applications. Journal of Energy Storage, 99, 113425.
  • Sharma, A., Rangra, V. S., & Thakur, A. (2022). Synthesis, properties, and applications of MBenes (two-dimensional metal borides) as emerging 2D materials: a review. Journal of Materials Science, 57(27), 12738-12751.
  • Sinha, A., H. Zhao, Y. Huang, X. Lu, J. Chen and R. Jain (2018). MXene: An emerging material for sensing and biosensing. TrAC Trends in Analytical Chemistry 105: 424-435.
  • Soomro, R. A., P. Zhang, B. Fan, Y. Wei and B. Xu (2023). Progression in the oxidation stability of MXenes. Nano-Micro Letters 15(1): 108.
  • Tripathy, D. B. (2024). Novel Two-Dimensional MBenes: Synthesis, Properties, and Energy Storage and Electrocatalytic Applications of Two-Dimensional Metal Borides. ACS Applied Engineering Materials.
  • Wang, K., Li, X. E., Wu, X., Yang, H., Li, Z., Diao, W., & Shi, J. (2022). Significant enhancement flame retardancy of GO/BP-MoB2 with ultrafast intelligent alarm. Journal of Alloys and Compounds, 924, 166491.
  • Wang, S., Li, J. X., Du, Y. L., & Cui, C. (2014). First-principles study on structural, electronic and elastic properties of graphene-like hexagonal Ti2C monolayer. Computational Materials Science, 83, 290-293.
  • Wen, T., Ning, S., Liu, D. A., Ye, B., Liu, H., & Chu, Y. (2019). Synthesis and characterization of the ternary metal diboride solid‐solution nanopowders. Journal of the American Ceramic Society, 102(8), 4956-4962
  • Xue, Y. H., H. Chen, J. Qu and L. M. Dai (2015). Nitrogen-doped graphene by ball-milling graphite with melamine for energy conversion and storage. 2d Materials 2(4).
  • Yang, S., P. Zhang, A. S. Nia and X. Feng (2020). Emerging 2D materials produced via electrochemistry. Advanced Materials 32(10): 1907857.
  • Yang, Y., Wang, H., Wang, C., Liu, J., Wu, H., Liu, N., & Zheng, J. (2024). Novel 2D Material of MBenes: Structures, Synthesis, Properties, and Applications in Energy Conversion and Storage. Small, 20(51), 2405870.
  • Zazoum, B., A. Bachri and J. Nayfeh (2021). Functional 2D MXene Inks for Wearable Electronics. Materials 14(21): 6603.
  • Zhang, B., J. Zhou and Z. Sun (2022). MBenes: progress, challenges and future. Journal of Materials Chemistry A 10(30): 15865-15880.
  • Zhang, T., Pan, L., Tang, H., Du, F., Guo, Y., Qiu, T., & Yang, J. (2017). Synthesis of two-dimensional Ti3C2Tx MXene using HCl+ LiF etchant: enhanced exfoliation and delamination. Journal of alloys and compounds, 695, 818-826.
  • Zhang, Z., Li, Y., Mo, F., Wang, J., Ling, W., Yu, M., & Huang, Y. (2024). MBene with Redox‐Active Terminal Groups for an Energy‐Dense Cascade Aqueous Battery. Advanced Materials, 36(16), 2311914.

İki Boyutlu Metal Borürler: Yapısal Özellikleri ve Sentezi

Yıl 2025, Cilt: 2 Sayı: 1, 13 - 18, 22.04.2025

Öz

İki boyutlu geçiş metali borürleri (MBenes), yüksek oksidasyon direnci ve stabilitesi, uyarlanabilir yüzey özellikleri ve geniş yüzey alanı nedeniyle çeşitli uygulamalarda önemli avantajlar sağlamaktadır. İki boyutlu geçiş metali borürleri olarak adlandırılan MBene’ ler, 2017 yılında keşfedilmiş ve MXene olarak bilinen geçiş metali karbürleri ve nitrürlerle benzer yapısal özellikler göstermektedir. MBene'ler, yüksek elektriksel iletkenlikleri, yüzey fonksiyonel gruplarının zengin içeriği, yüzey fonksiyonel gruplarının ve/veya yüzey kimyasının kolay modifikasyonu, geniş fiziksel yüzey alanı ve hidrofilik özellikleri nedeniyle sensör ve katalizör uygulamaları dahil olmak üzere çeşitli uygulamalarda büyük potansiyel sergilemektedirler. Bu büyük potansiyellerine rağmen MBene üzerine yapılan araştırmalar başlangıç aşamasındadır ve bu yeni malzeme ailesinin gerçek potansiyelini ortaya çıkarmak için daha fazla araştırma yapılmalıdır. Bu derleme çalışmasında, MBene'lerin yapısı ve sentezi kısaca tanımlanmakta ve MXene'lerden farklılıkları açıklanmaktadır.

Kaynakça

  • Ade, M. and H. Hillebrecht (2015). Ternary borides Cr2AlB2, Cr3AlB4, and Cr4AlB6: The first members of the series (CrB2) n CrAl with n= 1, 2, 3 and a unifying concept for ternary borides as MAB-phases. Inorganic chemistry 54(13): 6122-6135.
  • Björk, J., Halim, J., Zhou, J., & Rosen, J. (2023). Predicting chemical exfoliation: fundamental insights into the synthesis of MXenes. npj 2D Materials and Applications, 7(1), 5.
  • Chen, D., L. H. Tang and J. H. Li (2010). Graphene-based materials in electrochemistry. Chemical Society Reviews 39(8): 3157-3180.
  • Chhowalla, M., H. S. Shin, G. Eda, L. J. Li, K. P. Loh and H. Zhang (2013). The chemistry of two-dimensional layered transition metal dichalcogenide nanosheets. Nature Chemistry 5(4): 263-275.
  • Geim, A. K. (2009). Graphene: Status and Prospects. Science 324(5934): 1530-1534
  • Gunda, H., Klebanoff, L. E., Sharma, P. A., Varma, A. K., Dolia, V., Jasuja, K., & Stavila, V. (2021). Progress, challenges, and opportunities in the synthesis, characterization, and application of metal-boride-derived two-dimensional nanostructures. ACS Materials Letters, 3(5), 535-556.
  • Gurbuz, H. N., Hussaini, A. A., Ipekci, H. H., Durmaz, F., Uzunoglu, A., & Yıldırım, M. (2024). Electrical behaviors of the MXene nanoflower interlayered heterojunction Schottky photodiode devices. Applied Physics A, 130(9), 652.
  • Gurbuz, H. N., Tok, K. C., Gumustas, M., Cagil, E. M., Ipekci, H. H., & Uzunoglu, A. (2025). Development of flexible nicotine sensors by inkjet printing of heteroatom-doped 3D V2C MXene nanoflower/holey carbon nanotube-based inks. FlatChem, 100811.
  • Javed, M. S., Zhang, X., Ahmad, T., Usman, M., Shah, S. S. A., Ahmad, A., & Han, W. (2024). MXenes to MBenes: latest development and opportunities for energy storage devices. Materials Today.
  • Jiang, L., Zhou, D., Yang, J., Zhou, S., Wang, H., Yuan, X., & Li, H. (2022). 2D single-and few-layered MXenes: synthesis, applications and perspectives. Journal of Materials Chemistry A, 10(26), 13651-13672.
  • Khan, A. J., Shah, S. S., Khan, S., Mateen, A., Iqbal, B., Naseem, M., & Zhao, G. (2024). 2D metal borides (MBenes): Synthesis methods for energy storage applications. Chemical Engineering Journal, 154429.
  • Liu, Y., Tang, Q., Xu, M., Ren, J., Guo, C., Chen, C., & Liu, D. (2023). Efficient mechanical exfoliation of MXene nanosheets. Chemical Engineering Journal, 468, 143439.
  • Miao, N., Yan, Y., & Wang, J. (2024). A rising layered boride family for energy and catalysis applications: novel hexagonal MAB phases and MBenes. ChemSusChem, 17(22), e202400229.
  • Nair, V. G., Birowska, M., Bury, D., Jakubczak, M., Rosenkranz, A., & Jastrzębska, A. M. (2022). 2D MBenes: a novel member in the flatland. Advanced Materials, 34(23), 2108840.
  • Novoselov, K. S., D. Jiang, F. Schedin, T. J. Booth, V. V. Khotkevich, S. V. Morozov and A. K. Geim (2005). Two-dimensional atomic crystals. Proceedings of the National Academy of Sciences of the United States of America 102(30): 10451-10453.
  • Ozkan, M. (2024). MXenes vs MBenes: Demystifying the materials of tomorrow’s carbon capture revolution. MRS Energy & Sustainability 11(1): 181-190.
  • Ramachandran, T., Butt, H., Zheng, L., & Rezeq, M. D. (2024). A review of 2D metal boride-derived nanostructures: From synthesis to energy storage and conversion applications. Journal of Energy Storage, 99, 113425.
  • Sharma, A., Rangra, V. S., & Thakur, A. (2022). Synthesis, properties, and applications of MBenes (two-dimensional metal borides) as emerging 2D materials: a review. Journal of Materials Science, 57(27), 12738-12751.
  • Sinha, A., H. Zhao, Y. Huang, X. Lu, J. Chen and R. Jain (2018). MXene: An emerging material for sensing and biosensing. TrAC Trends in Analytical Chemistry 105: 424-435.
  • Soomro, R. A., P. Zhang, B. Fan, Y. Wei and B. Xu (2023). Progression in the oxidation stability of MXenes. Nano-Micro Letters 15(1): 108.
  • Tripathy, D. B. (2024). Novel Two-Dimensional MBenes: Synthesis, Properties, and Energy Storage and Electrocatalytic Applications of Two-Dimensional Metal Borides. ACS Applied Engineering Materials.
  • Wang, K., Li, X. E., Wu, X., Yang, H., Li, Z., Diao, W., & Shi, J. (2022). Significant enhancement flame retardancy of GO/BP-MoB2 with ultrafast intelligent alarm. Journal of Alloys and Compounds, 924, 166491.
  • Wang, S., Li, J. X., Du, Y. L., & Cui, C. (2014). First-principles study on structural, electronic and elastic properties of graphene-like hexagonal Ti2C monolayer. Computational Materials Science, 83, 290-293.
  • Wen, T., Ning, S., Liu, D. A., Ye, B., Liu, H., & Chu, Y. (2019). Synthesis and characterization of the ternary metal diboride solid‐solution nanopowders. Journal of the American Ceramic Society, 102(8), 4956-4962
  • Xue, Y. H., H. Chen, J. Qu and L. M. Dai (2015). Nitrogen-doped graphene by ball-milling graphite with melamine for energy conversion and storage. 2d Materials 2(4).
  • Yang, S., P. Zhang, A. S. Nia and X. Feng (2020). Emerging 2D materials produced via electrochemistry. Advanced Materials 32(10): 1907857.
  • Yang, Y., Wang, H., Wang, C., Liu, J., Wu, H., Liu, N., & Zheng, J. (2024). Novel 2D Material of MBenes: Structures, Synthesis, Properties, and Applications in Energy Conversion and Storage. Small, 20(51), 2405870.
  • Zazoum, B., A. Bachri and J. Nayfeh (2021). Functional 2D MXene Inks for Wearable Electronics. Materials 14(21): 6603.
  • Zhang, B., J. Zhou and Z. Sun (2022). MBenes: progress, challenges and future. Journal of Materials Chemistry A 10(30): 15865-15880.
  • Zhang, T., Pan, L., Tang, H., Du, F., Guo, Y., Qiu, T., & Yang, J. (2017). Synthesis of two-dimensional Ti3C2Tx MXene using HCl+ LiF etchant: enhanced exfoliation and delamination. Journal of alloys and compounds, 695, 818-826.
  • Zhang, Z., Li, Y., Mo, F., Wang, J., Ling, W., Yu, M., & Huang, Y. (2024). MBene with Redox‐Active Terminal Groups for an Energy‐Dense Cascade Aqueous Battery. Advanced Materials, 36(16), 2311914.
Toplam 31 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Malzeme Mühendisliği (Diğer)
Bölüm Derlemeler
Yazarlar

Aytekin Uzunoglu

Canan Yagmur Karakas

Yayımlanma Tarihi 22 Nisan 2025
Gönderilme Tarihi 16 Ocak 2025
Kabul Tarihi 10 Şubat 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 2 Sayı: 1

Kaynak Göster

APA Uzunoglu, A., & Karakas, C. Y. (2025). A Short Review of Two-Dimensional Metal Borides: Structure and Synthesis. ITU Journal of Metallurgy and Materials Engineering, 2(1), 13-18.