Gleick PH (1993) Water in crisis: a guide to the World’s fresh water resources. Oxford University
Press, Oxford
Guo D, Wen R, Liu M, Guo H, Chen J, Weng W (2015) Facile fabrication of g-C 3 N 4 /MIL-53
(Al) composite with enhanced photocatalytic activities under visible-light irradiation. Appl
Organometallic Chem 29:690–697
Hausdorf S, Wagler J, Mossig R, Mertens FORL (2008) Proton and water activity-controlled
structure formation in zinc carboxylate-based metal organic frameworks. J Phys Chem A
112:7567–7576
He X, Yu Y, Li Y (2018) Facile synthesis of boronic acid-functionalized magnetic metal organic
frameworks for selective extraction and quantification of catecholamines in rat plasma. RSC
Adv 8:41976e41985
Hong J, Chen C, Bedoya FE, Kelsall GH, O’Hare D, Petit C (2016) Carbon nitride nanosheet/
metal–organic framework nanocomposites with synergistic photocatalytic activities. Cat Sci
Technol 6:5042–5051
Hopfield JJ (1961) On the energy dependence of the absorption constant and photoconductivity
near a direct band gap. J Phys Chem Solids 22:63–72
Jarrah A, Farhadi S (2018) Dawson-type polyoxometalate incorporated into nanoporous MIL-101
(Cr): preparation, characterization and application for ultrafast removal of organic dyes. Acta
Chim Slov 66:85–102
Javanbakht S, Nezhad-Mokhtari P, Shaabani A, Arsalani N, Ghorbani M (2019) Incorporating
Cu-based metal-organic framework/drug nanohybrids into gelatin microsphere for ibuprofen
oral delivery. Mater Sci Eng C 96:302–309
Ji G, Zheng T, Gao X, Liu Z (2019) A highly selective turn-on luminescent logic gates probe based
on post-synthetic MOF for aspartic acid detection. Sens Actuators B Chem 284:9–95
Jiang H, Makal TA, Zhou H (2013) Interpenetration control in metal – organic frameworks for
functional applications. Coord Chem Rev 257:2232–2249
Jiao Y, Hong W, Li P, Wang L, Chen G (2019) Metal-organic framework derived Ni/NiO microparticles with subtle lattice distortions for high-performance electrocatalyst and supercapacitor.
Appl Catal B Environ 244:732–739
Jing HP, Wang CC, Zhang YW, Wang P, Li R (2014) Photocatalytic degradation of methylene blue
in ZIF-8. bRSC Adv 4:54454–54462
Joseph L, Jun B-M, Jang M, Park CM, Munoz-Senmache JC, Hernandez-Maldonado AJ,
Heyden A, Yu M, Yoon Y (2019) Removal of contaminants of emerging concern by metalorganic frameworks nanoadsorbents: a review. Chem Eng J 369:928–946
Kabir MD, Kim HJ, Choi SJ (2018) Highly proton conductive Zn (II)-based metal organic
framework/Nafion composite membrane for fuel cell application. Sci Adv Mater 10:1630–1635
Kim J, Kim DO, Kim DW, Sagong K (2013) Synthesis of MOF having hydroxyl functional side
groups and optimization of activation process for the maximization of its BET surface area. J
Solid State Chem 197:261–265
Kojtari A, Ji H-F (2015) Metal organic framework micro/nanopillars of Cu(BTC)3H 2 O and Zn
(ADC)ÁDMSO. Nano 5:565–576
Kreno LE, Leong K, Farha OK, Allendorf M, Van Duyne RP, Hupp JT (2011) Metal-organic
mramework materials as chemical sensors. Chem Rev 112:1105–1125
Kulshreshtha SN (1998) A global outlook for water resources to the year 2025. Water Resour
Manag 12:167–184
Kumar SG, Rao KSRK (2017) Comparison of modification strategies towards enhanced charge
carrier separation and photocatalytic degradation activity of metal oxide semiconductors (TiO 2 ,
WO 3 and ZnO). Appl Surf Sci 391:124–148
Kumar RS, Kumar SS, Kulandainathan MA (2013) Microporous and mesoporous materials efficient electrosynthesis of highly active Cu 3 (BTC) 2 -MOF and its catalytic application to chemical
reduction. Microporous Mesoporous Mater 168:57–64
Langmi LM, Ren J, North B, Mathe M, Bessarabov D (2013) Hydrogen storage in metal-organic
frameworks: a review. Electrochim Acta 128:368–392
280
T. C. Maponya et al.
Press, Oxford
Guo D, Wen R, Liu M, Guo H, Chen J, Weng W (2015) Facile fabrication of g-C 3 N 4 /MIL-53
(Al) composite with enhanced photocatalytic activities under visible-light irradiation. Appl
Organometallic Chem 29:690–697
Hausdorf S, Wagler J, Mossig R, Mertens FORL (2008) Proton and water activity-controlled
structure formation in zinc carboxylate-based metal organic frameworks. J Phys Chem A
112:7567–7576
He X, Yu Y, Li Y (2018) Facile synthesis of boronic acid-functionalized magnetic metal organic
frameworks for selective extraction and quantification of catecholamines in rat plasma. RSC
Adv 8:41976e41985
Hong J, Chen C, Bedoya FE, Kelsall GH, O’Hare D, Petit C (2016) Carbon nitride nanosheet/
metal–organic framework nanocomposites with synergistic photocatalytic activities. Cat Sci
Technol 6:5042–5051
Hopfield JJ (1961) On the energy dependence of the absorption constant and photoconductivity
near a direct band gap. J Phys Chem Solids 22:63–72
Jarrah A, Farhadi S (2018) Dawson-type polyoxometalate incorporated into nanoporous MIL-101
(Cr): preparation, characterization and application for ultrafast removal of organic dyes. Acta
Chim Slov 66:85–102
Javanbakht S, Nezhad-Mokhtari P, Shaabani A, Arsalani N, Ghorbani M (2019) Incorporating
Cu-based metal-organic framework/drug nanohybrids into gelatin microsphere for ibuprofen
oral delivery. Mater Sci Eng C 96:302–309
Ji G, Zheng T, Gao X, Liu Z (2019) A highly selective turn-on luminescent logic gates probe based
on post-synthetic MOF for aspartic acid detection. Sens Actuators B Chem 284:9–95
Jiang H, Makal TA, Zhou H (2013) Interpenetration control in metal – organic frameworks for
functional applications. Coord Chem Rev 257:2232–2249
Jiao Y, Hong W, Li P, Wang L, Chen G (2019) Metal-organic framework derived Ni/NiO microparticles with subtle lattice distortions for high-performance electrocatalyst and supercapacitor.
Appl Catal B Environ 244:732–739
Jing HP, Wang CC, Zhang YW, Wang P, Li R (2014) Photocatalytic degradation of methylene blue
in ZIF-8. bRSC Adv 4:54454–54462
Joseph L, Jun B-M, Jang M, Park CM, Munoz-Senmache JC, Hernandez-Maldonado AJ,
Heyden A, Yu M, Yoon Y (2019) Removal of contaminants of emerging concern by metalorganic frameworks nanoadsorbents: a review. Chem Eng J 369:928–946
Kabir MD, Kim HJ, Choi SJ (2018) Highly proton conductive Zn (II)-based metal organic
framework/Nafion composite membrane for fuel cell application. Sci Adv Mater 10:1630–1635
Kim J, Kim DO, Kim DW, Sagong K (2013) Synthesis of MOF having hydroxyl functional side
groups and optimization of activation process for the maximization of its BET surface area. J
Solid State Chem 197:261–265
Kojtari A, Ji H-F (2015) Metal organic framework micro/nanopillars of Cu(BTC)3H 2 O and Zn
(ADC)ÁDMSO. Nano 5:565–576
Kreno LE, Leong K, Farha OK, Allendorf M, Van Duyne RP, Hupp JT (2011) Metal-organic
mramework materials as chemical sensors. Chem Rev 112:1105–1125
Kulshreshtha SN (1998) A global outlook for water resources to the year 2025. Water Resour
Manag 12:167–184
Kumar SG, Rao KSRK (2017) Comparison of modification strategies towards enhanced charge
carrier separation and photocatalytic degradation activity of metal oxide semiconductors (TiO 2 ,
WO 3 and ZnO). Appl Surf Sci 391:124–148
Kumar RS, Kumar SS, Kulandainathan MA (2013) Microporous and mesoporous materials efficient electrosynthesis of highly active Cu 3 (BTC) 2 -MOF and its catalytic application to chemical
reduction. Microporous Mesoporous Mater 168:57–64
Langmi LM, Ren J, North B, Mathe M, Bessarabov D (2013) Hydrogen storage in metal-organic
frameworks: a review. Electrochim Acta 128:368–392
280
T. C. Maponya et al.
