Metal-Organic Frameworks (MOFs): Recent Advances in Synthetic Methodologies and Some Applications

سال انتشار: 1398
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 534

فایل این مقاله در 23 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_CHM-3-2_002

تاریخ نمایه سازی: 20 مهر 1398

چکیده مقاله:

The pursuit of rapid development in the area of catalysis, solar energy, environmental remediation, wastewater treatment and other aspects of ecological and sustainable chemistry has prompted substantial research by material chemists, physicists, academics and other scientists for the development of porous material. A lot of energy had been invested in this course by scientist, research organizations and public sector agencies from antiquity, but the resulting solution has been somewhat undesirable until two decades ago when Metal-Organic Frameworks (MOFs) appears to offer a glimpse of solution to those challenging issues. The adaptability, flexibility, uniqueness and usability of the metal-organic frameworks material, and its suitability to every facet of scientific and technological advancement has since triggered an incredible upsurge in studies aimed at uncovering more of the inherent influential properties of the materials, and its improvement for the betterment of material science and research world. This review is aimed at investigating some of the recent advancements/ breakthrough in metal-organic frameworks, synthetic methodologies and impending applications.

کلیدواژه ها:

نویسندگان

Abdulraheem Anumah

State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian ۱۱۶۰۲۳, China

Hitler Louis

Department of Pure and Applied Chemistry, University of Calabar, Calabar, Nigeria| National Centre for Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing ۱۰۰۱۹۰, China

Saud-uz- Zafar

National Centre for Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing ۱۰۰۱۹۰, China

Adejoke T. Hamzat

Department of Chemistry, University of Ilorin, Ilorin, Nigeria

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • Farha O.K., Yazaydin A.O., Eryazici I., Malliakas C.D., Hauser B.G., ...
  • Farha O.K., Eryazici I., Jeong N.C., Hauser B.G., Wilmer C.E., ...
  • Suh M.P., Park H.J., Prasad T.K., Lim D.W. Chem. Rev., ...
  • Li J.R., Sculley J. Zhou H.C. Chem. Rev., 2012, 112:869 ...
  • Kreno L.E., Leong K., Farha O.K., Allendorf M., Van Duyne ...
  • Ma L.Q., Falkowski J.M., Abney C., Lin W.B. Nat. Chem., ...
  • Lee J.Y., Farha O.K., Roberts J., Scheidt K.A., Nguyen S.T., ...
  • Juzenas P., Chen W., Sun Y.P., Coelho M.A.N., Generalov R., ...
  • Probst C.E., Zrazhevskiy P., Bagalkot V., Gao X. Adv. Drug ...
  • Rabone J., Yue Y.F., Chong S.Y., Stylianou K.C., Bacsa J., ...
  • Biradha K., Ramanan A., Vittal J.J. Cryst. Growth Des., 2009, ...
  • Bailar J.C., Jr Prep. Inorg. React. 1964, 1:1 ...
  • Hoskins B.F., Robson R. J. Am. Chem. Soc., 1989, 111:5962 ...
  • Robson R. Dalton Trans., 2008, 14:5113 ...
  • Hoskins B.F., Robson R. J. Am. Chem. Soc., 1990, 112: ...
  • (a) Stock N., Biswas S. Chem. Rev., 2012, 112:933 (b) ...
  • Wang H., Yuan X.Z., Wu Y., Zeng G.M., Chen X.H., ...
  • Liang R.W., Jing F.F., L. J. Shen, N. Qin and ...
  • Xu Q.Q., Fan H.J., Li Y.T., Christensen K.E., Ren T.Z. ...
  • Millward A.R., Yaghi O.M. J. Am. Chem. Soc., 2005, 127:17998 ...
  • Sumida K., Rogow D.L., Mason J.A., McDonald T.M., Bloch E.D., ...
  • Liu X.J., Zhang Y.H., Chang Z., Li A.L., Tian D., ...
  • Wang B., Lv X.L., Feng D., Xie L.H., Zhang J., ...
  • Couck S., Denayer J.F.M., Baron G.V., Remy T., Gascon J., ...
  • Bauer S., Serre C., Devic T., Horcajada P., Marrot J., ...
  • Serra-Crespo P., Ramos-Fernandez E.V., Gascon J., Kapteijn F. Chem. Mater., ...
  • Ahnfeldt T., Guillou N., Gunzelmann D., Margiolaki I., Loiseau T., ...
  • Bloch E.D., Britt D., Lee C., Doonan C.J., Uribe-Romo F.J., ...
  • Demessence A., D’Alessandro D.M., Foo M.L., Long J.R. J. Am. ...
  • Hu Y., Verdegaal W.M., Yu S.H., Jiang H.L. ChemSusChem., 2014, ...
  • Dhakshinamoorthy A., Asiri A.M., Garcia H. Angew. Chem., Int. Ed., ...
  • Zeng L., Guo X.Y., He C., Duan C.Y. ACS Catal., ...
  • Horiuchi Y., Toyao T., Saito M., Mochizuki K., Iwata M., ...
  • Fu Y.H., Sun D.R., Chen Y.J., Huang R.K., Ding Z.X., ...
  • Zhu Q.L., Xu Q. Chem. Soc. Rev., 2014, 43:5468 ...
  • Henschel A., Gedrich K., Kraehnert R., Kaskel S. Chem. Commun., ...
  • Horcajada P., Surble S., Serre C., Hong D.Y., Seo Y.K., ...
  • Byrappa K., Yoshimura M. In Handbook of Hydrothermal Technology (Materials ...
  • Rabenau A. Angew. Chem., Int. Ed. Engl., 1985, 24:1026 ...
  • Huang L., Wang H., Chen J., Wang Z., Sun J., ...
  • Tranchemontagne D., Hunt J., Yaghi O.M. Tetrahedron, 2008, 64:8553 ...
  • Cravillon J., Münzer S., Lohmeier S.J., Feldhoff A., Huber K., ...
  • Forster P. M., Stock N., Cheetham A. K. Angew. Chem., ...
  • Bauer S., Stock N. Angew. Chem Int. Ed., 2007, 46:6857 ...
  • Biemmi E., Christian S., Stock N., Bein T. Microporous Mesoporous ...
  • Millange F., Osta R.E., Medina M.E., Walton R.I. Cryst. Eng. ...
  • Schubert M., Münzer U., Tonigold M., Ruetz R. Patent WO2007/023134 ...
  • Schubert M., Münzer U., Mattenheimer H., Tonigold M. patent WO2007/023119 ...
  • Shono T., Mingos D.M.P., Baghurst D.R., Lickiss P.D. Novel Energy ...
  • Rabenau A. Angew. Chem., Int. Ed. Engl., 1985, 24:1026 ...
  • Hoskins B.F., Robson R. J. Am. Chem. Soc., 1990, 112:1546 ...
  • Chen B.Y., Chen D., Kang Z.T., Zhang Y.Z. J. Alloys ...
  • Chen D., Zhang Y.Z., Kang Z.T. Chem. Eng. J., 2013, ...
  • Chen D., Zhang Y.Z., Tu C.J. Mater. Lett., 2012, 82:10 ...
  • Chen D., Zhang Y.Z., Chen B.Y., Kang Z.T. Ind. Eng. ...
  • Chen G., Song Z., Chen J., Peng J.H. J. Alloys ...
  • Zhang Y.Z., Kang Z.T., Chen D. Mater. Lett., 2014, 133:259 ...
  • Chen G. J. Alloys Compd., 2015, 651:503 ...
  • Kappe C.O., Dallinger D., Murphree S. In Practical Microwave Synthesis ...
  • Kappe C.O. Chem. Soc. Rev., 2008, 37:1127 ...
  • Klinowski J., Paz F.A.A., Rocha J. Dalton Trans., 2011, 40:321 ...
  • Suslick K.S., Choe S.B., Cichowlas A.A., Grinstaff M.W. Nature, 1991, ...
  • Gedanken A. Ultrason. Sonochem., 2004, 11:47 ...
  • Bang J.H., Suslick K.S. Adv. Mater., 2010, 22:1039 ...
  • Mason T.J. Peters D. In Practical Sonochemistry: Power Ultrasound Uses ...
  • Stock N. Micropor. Mesopor. Mater., 2010, 129:287 ...
  • Son W.J., Kim J., Kim J., Ahn W.S. Chem. Commun., ...
  • Li Z.Q., Qiu L.G., Su T., Wu Y., Wang W., ...
  • Kim J., Yang S.T., Choi S.B., Sim J., Kim J., ...
  • Mueller U., Puetter H., Hesse M., Wessel H. WO 2005/ ...
  • Mueller U., Schubert M., Teich F., Puetter H., Schierle-Arndt K., ...
  • Joaristi A.M., Juan-AlcanÞiz J., Serra-Crespo P., Kapteijn F., Gascon J. ...
  • Stock N., Biswas S. Chem. Rev., 2012, 112:933 ...
  • Boldyrev V.V., Tkacova K. J. Mater. Synth. Proc., 2000, 8:121 ...
  • Kaupp G. CrystEngComm, 2009, 11:388 ...
  • Lazuen-Garay A., Pichon A., James S.L. Chem. Soc. Rev., 2007, ...
  • Beyer M.K., Clausen-Schaumann H. Chem. Rev., 2005, 105:2921 ...
  • Frišcic T. J. Mater. Chem., 2010, 20:7599 ...
  • Schlesinger M., Schulze S., Hietschold M., Mehring M. Microporous Mesoporous ...
  • Pichon A., James S.L. CrystEngComm., 2008, 10:1839 ...
  • Yuan W., Lazuen-Garay A., Pichon A., Clowes R., Wood C.D., ...
  • Klimakow M., Klobes P., Th€unemann A.F., Rademann K., Emmerling F. ...
  • Yang H., Orefuwa S., Goudy A. Microporous Mesoporous Mater., 2011, ...
  • Beldon P.J., F_abi_an L., Stein R.S., Thirumurugan A., Cheetham A.K. ...
  • Willans C.E., French S., Anderson K.M., Barbour L.J., Gertenbach J.A., ...
  • Liu L., Wei H., Zhang L., Li J., Dong J. ...
  • Himeur F., Stein I., Wragg D.S., Slawin A.M.Z., Lightfoot P., ...
  • Kim S.H., Yang S.T., Kim J., Ahn W.S. Bull. Korean ...
  • Zhang J., Wu T., Chen S., Feng P., Bu X. ...
  • Lin Z., Slawin A.M.Z., Morris R.E. J. Am. Chem. Soc., ...
  • Schoenecker P.M., Belancik G.A., Grabicka B.E., Walton K.S. AIChE J., ...
  • Ameloot R., Vermoortele F., Vanhove W., Roeffaers M.B.J., Sels B.F., ...
  • Witters D., Vergauwe N., Ameloot R., Vermeir S., De Vos ...
  • Kornienko N., Zhao Y., Kley C.S., Zhu C., Kim D., ...
  • Lu X.F., Liao P.Q., Wang J.W., Wu J.X., Chen X.W., ...
  • Hwang Y.K., Hong D.Y., Chang J.S., Jhung S.H., Seo Y.K., ...
  • Zhu Q.L., Xu Q. Chem. Soc. Rev., 2014, 43:5468 ...
  • An B., Zhang J., Cheng K., Ji P., Wang C., ...
  • Dhakshinamoorthy A., Asiri A.M., Garcia H. Angew. Chem., Int. Ed., ...
  • Xiao J.D., Shang Q.C., Xiong Y.J., Zhang Q., Luo Y., ...
  • Horiuchi Y., Toyao T., Saito M., Mochizuki K., Iwata M., ...
  • Fu Y.H., Sun D.R., Chen Y.J., Huang R.K., Ding Z.X., ...
  • Chi L., Xu Q., Liang X., Wang J., Su X. ...
  • Gao Y.W., Li S.M., Li Y.X., Yao L.Y., Zhang H. ...
  • Liang R.W., Jing F.F., Shen L.J., Qin N., Wu L. ...
  • Fateeva A., Chater P.A., Ireland C.P., Tahir A.A., Khimyak Y.Z., ...
  • An Y., Liu Y.Y., An P.F., Dong J.C., Xu B.Y., ...
  • Zeng X., Huang L.Q., Wang C.N., Wang J.S., Li J.T., ...
  • Yang C., You X., Cheng J.H., Zheng H.D., Chen Y.C. ...
  • Yang Z.W., Xu X.Q., Liang X.X., Lei C., Wei Y.L., ...
  • Tilgner D., Kempe R. Chem. Eur. J., 2017, 23:3184 ...
  • Nguyen H.G.T., Mao L., Peters A.W., Audu C.O., Brown Z.J., ...
  • Pullen S., Fei H.H., Orthaber A., Cohen S.M., Ott S. ...
  • Wang C., Wang J.L., Lin W.B. J. Am. Chem. Soc., ...
  • Zhang Z.M., Zhang T., Wang C., Lin Z.K., Long L.S., ...
  • Li Q.Y., Ma Z., Zhang W.Q., Xu J.L., Wei W., ...
  • Horcajada P., Chalati T., Serre C., Gillet B., Sebrie C., ...
  • Horcajada P., Serre C., Maurin G., Ramsahye N.A., Balas F., ...
  • (a) Liu X.J., Zhang Y.H., Chang Z., Li A.L., Tian ...
  • Yassine O., Shekhah O., Assen A.H., Belmabkhout Y., Salama K.N., ...
  • Feng D., Wang K., Wei Z., Chen Y.P., Simon C.M., ...
  • Canivet J., Fateeva A., Guo Y., Coasne B., Farrusseng D. ...
  • Burtch N.C., Jasuja H., Walton K.S. Chem. Rev., 2014, 114:10575 ...
  • Wade C.R., Corrales-Sanchez T., Narayan T.C., Dincaˇ M. Ene. Environ. ...
  • Seo Y.K., Yoon J.W., Lee J.S., Hwang Y.K., Jun C.H., ...
  • Khutia A., Rammelberg H.U., Schmidt T., Henninger S., Janiak C. ...
  • Liu Y., Moon S.Y., Hupp J.T., Farha O.K. ACS Nano., ...
  • Barea E., Montoro C., Navarro J.A.R. Chem. Soc. Rev., 2014, ...
  • Grant Glover T., Peterson G.W., Schindler B.J., Britt D., Yaghi ...
  • Liu Y., Howarth A.J., Hupp J.T., Farha O.K. Angew. Chem., ...
  • Lee Y.R., Kim J., SeungAhn W. Korean J. Chem. Eng., ...
  • Falcaro R., Ricco C., Doherty M., Liang K., Hill A.J., ...
  • Keskin S., Kızılel S. Ind. Eng. Chem. Res., 2011, 50:1799 ...
  • Chen D.S., Xing H.Z., Wang C.G., Su Z.M. J. Mater. ...
  • Chen Y., Wang D., Deng X., Li Z. Catal. Sci. ...
  • Sajjadifar S., Arzehgar Z., Khoshpoori S. J. Inorg. Organometal. Poly. ...
  • Soleiman-Beigi M., Arzehgar Z. Synlett, 2018, 29:986 ...
  • Sajjadifar S., Arzehgar Z., Ghayuri A., J. Chin. Chem. Soc., ...
  • نمایش کامل مراجع