$B:G=*99?7F|;~!'(B2020-09-26 15:59:01
$B | $B9V1iBjL\!?H/I=$B%-!<%o!<%I(B | $B | $B?=9~(B | $BJ}K!(B | |
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601 | Synergistic Effect of 3D Hierarchical Microsphere TiO2 by Carbon Doping for The Photocatalytic Antibiotic Degradation | 5-a | 3D hierarchical TiO2 microsphere structure Carbon doping Antibiotic degradation | 12/21 16:12:38 | WWW |
602 | Recombinant antibody production using a transactivator system in CHO cells. | 7-e | CHO cells recombinant antibody biopharmaceuticals | 12/21 16:13:27 | WWW |
603 | [$B=w@->^(B] $B:`NA2J3X$N$?$a$NI=LLNOB,Dj$NE83+(B | HC-12 | Surface Forces Measurement Materials Science Solid-Liquid Interface | 12/21 16:13:29 | WWW |
604 | Surface modification of boron carbide ceramic after molten aluminum infiltration | 12-a | boron carbide surface modification cracks | 12/21 16:13:55 | WWW |
605 | $B2=3X%k!<%WK!$K$h$kE4%I!<%W%P%j%&%`%8%k%3%M!<%H$rMQ$$$?%a%?%sG.J,2r7??eAG@8@.(B | 9-c | Methane decomposition CO2 activation Chemical looping | 12/21 16:14:52 | WWW |
606 | $B=[4D<0MaAe$K$*$1$kDcG;EY%*%>%s?e$K$h$k(BLegionella pneumophila$B$NIT3h@-2=$K5Z$\$9MaAe?e$N1F6A(B | 13-a | ozonated water Legionella pneumophila bathwater | 12/21 16:30:23 | WWW |
607 | $B%9%i%0N.3&LL$K$*$1$kH?1~J,N%%W%m%;%9$KBP$9$k3&LL3h@-:^$N1F6A(B | 5-d | surfactant slug flow 5-hydroxymethylfurfural | 12/21 16:32:41 | WWW |
608 | $B%W%i%:%^(BCVD$BK!%7%j%+7O%,%9%P%j%"Kl$N;DN11~NO(B | 5-h | CVD residual stress silica gas barrier film | 12/21 16:34:21 | WWW |
609 | [$B=w@->^(B] $B2=>QIJ%W%m%8%'%/%H%j!<%@!<$H$7$F$N3hF0(B | HC-12 | unutilized resources chitin and chitosan gender equality | 12/21 16:34:32 | WWW |
610 | CO2$B5[<}:^$HC_G.:`$r0lBN2=$7$?%^%$%/%m%+%W%;%k$N3+H/(B | 4-d | Carbon dioxide capture Heat storage Microfluidics | 12/21 16:35:53 | WWW |
611 | $BG3NA3H;6$r9MN8$7$?D>@\%.;@1vMO1U7?8GBN%"%k%+%jG3NAEECS%b%G%k$N9=C[(B | 9-e | Direct formate fuel cell Mathematical model Fuel transport | 12/21 16:38:34 | WWW |
612 | $B6bB0;@2=J*$rC4BN$KMQ$$$?;@AGH/@8H?1~MQ%3%s%]%8%C%HEE6K?(G^$N3+H/(B | 12-c | Water splitting OER electrocatalyst Carbon free | 12/21 16:39:19 | WWW |
613 | [$B>7BT9V1i(B] $BCK!"F|K\?M!"%7%K%"!"M-L>Bg3XB4!D!!$=$s$J?M$?$A$@$1$G@o$($^$9$+!)(B | HC-12 | Change,or Die ! U-A-I (Understanding, Agreement, Implementation) 100+30=100 | 12/21 16:48:35 | WWW |
614 | $B%h%&2=1t%a%A%k%"%s%b%K%&%`%Z%m%V%9%+%$%HKl$N(BCVD$B%W%m%;%9$N3+H/(B | 5-h | CVD methylammonium lead iodide lead melt | 12/21 17:01:52 | WWW |
615 | $B?eAG!&%"%;%H%"%k%G%R%IF1;~@=B$EE5$2=3X%W%m%;%9$K$*$1$kA*Br@-(B | 9-e | electroorganic synthesis selectivity acetaldehyde | 12/21 17:15:26 | WWW |
616 | Electrochemical Conversion of Carbonate to Formate: Regenerating fuels for Direct formate fuel cell | 9-a | Bipolar membrane Fuel Regeneration Formate | 12/21 17:30:34 | WWW |
617 | $B8GBNI=LL4V$NAB1U@-0zNO$H1U2M660zNO$N(BDFT$B7W;;(B | 12-a | Surface forces Capillary-induced phase transition Density functional theory | 12/21 17:37:15 | WWW |
618 | CO2$B$r86NA$H$7$?%a%?%N!<%k9g@.$X$NKlH?1~4o$NE,MQ(B | 4-a | membrane reactor methanol process zeolite membrane | 12/21 17:46:29 | WWW |
619 | $B2VJ4N3;RI=LL$N(BHansen$BMO2rEY%Q%i%a!<%?$NB,Dj$*$h$S6u5$Cf$N2VJ4=|5n$X$N1~MQ(B | 1-b | Hansen solubility parameter Physical property Pollen | 12/21 17:49:23 | WWW |
620 | $BB?4DK'9aB2C:2=?eAG$N@\?(J,2rH?1~$X$N5!3#3X=,$NE,MQ(B | 5-a | machine learning feature engineering catalytic cracking | 12/21 18:04:06 | WWW |
621 | $BD6NW3&Fs;@2=C:AG$K$h$k%P%$%*%^%9$+$i$N;iMO@-@.J,Cj=P(B | 8-c | Biomass Extraction Supercritical Carbon Dioxide | 12/21 18:18:12 | WWW |
622 | $B?75,%+%9%1!<%I7?O"B3%U%m!<>=@O$rMQ$$$?7k>=N3;R72$NIJ | 12-g | Crystallization Continuous flow Cascade | 12/21 18:23:52 | WWW |
623 | Anti-solvent$B>=@OK!$K$h$k6&7k>=N3;R72$N(BHomogeneity$BI>2A(B | 12-g | Crystallization Cocrystal Homogeneity | 12/21 18:25:53 | WWW |
624 | Ni-Co$B:.9gN22=J*$+$i$N(BNi$B?;=PB.EY8~>e$K4X$9$k8!F$(B | 5-i | Nickel-Cobalt mixed sulfide Ni leaching Sulfer oxidation | 12/21 18:40:20 | WWW |
625 | $BC4;}5.6bB0?(G^$rMQ$$$?FG@-6bB0%$%*%s$N?eCf;@2=!?4T85(B | 5-a | Arcenite oxidation Selenate reduction Supported noble metal catalysts | 12/21 18:48:39 | WWW |
626 | $B6&>=7O$rMxMQ$7$?MO2rB.EY2~A1$N$?$a$N8GAjJ,;6M;1U>=@OK!(B | 12-g | Melt crystallization Eutectic Dissolution rate | 12/21 18:59:38 | WWW |
627 | Development of High Performance Graphene oxide Modified Bi2WO6 Based Photocatalyst for Wastewater Treatment | 5-a | Graphene oxide Modification of Bi2WO6 Photocatalytic activity | 12/21 19:04:27 | WWW |
628 | $B1x@wEZ>mEy$ND94|2>CV$KH<$&J]4IMF4o$NNt2=$K4X$9$kD4::(B | 13-c | Flexible container Deterioration Long-term storage | 12/21 19:07:47 | WWW |
629 | $BAB?e@-%7%j%+Kl$N:Y9&7B@)8f$*$h$S?;F)5$2=J,N%$X$N1~MQ(B | 4-a | Hydrophobic silica membrane Separation Pervaporation | 12/21 19:19:35 | WWW |
630 | $B=E9gEY$N0[$J$k%]%j%^!<$N(BHansen$BMO2rEY%Q%i%a!<%?$NB,Dj(B | 1-b | Hansen solubility parameter Polymer Polymerization | 12/21 19:19:49 | WWW |
631 | Ag$B7O%$%*%s8r49%<%*%i%$%H$K$h$k4u%,%9$N5[CeJ,N%(B | 4-e | Zeolite Silver Adsorption | 12/21 19:19:51 | WWW |
632 | $BM%$l$?;@AGH/@8H?1~3h@-$r<($9%"%k%+%j?eEE2rMQE47O%"%N!<%I?(G^$N3+H/(B | 9-e | oxygen evolution reaction iron-based electrocatalyst alkaline water splitting | 12/21 19:20:20 | WWW |
633 | Characterization and Application of Non-ionic Surfactant assisted TiO2 Based Composite for Enhanced Degradation of Organic Pollutant in Seawater | 13-b | Polyethylene glycol P/Ag/Ag2O/Ag3PO4/TiO2 photocatalyst Salinity | 12/21 19:22:01 | WWW |
634 | ($B7gHV(B) | 100 | 12/21 19:35:13 | WWW | |
635 | $B%"%k%_%JB?9& | 4-a | MIL-160 Metal Organic Framework Xylene isomers separation | 12/21 19:50:08 | WWW |
636 | $B7k>=%7%j%3%sKl$rMQ$$$?%U%l%-%7%V%kM-5!(B/$BL55!%X%F%m@\9gB@M[EECS$N3+H/(B | 9-e | solar cell mono-crystalline Si film PEDOT:PSS | 12/21 19:56:16 | WWW |
637 | $BJ,;R%$%s%W%j%s%H9bJ,;R8GDj%+!<%\%s%Z!<%9%HEE6K$rMQ$$$??75,7P8}936E8GLt%;%s%5$N3+H/(B | 7-e | edoxaban molecularly imprinted polymer sensor | 12/21 19:58:08 | WWW |
638 | $B8GBN9bJ,;RG3NAEECS$NJ,6K6J@~$N;@AGJ,050MB8@-$+$i$NL5 | 9-e | polymer electrolyte fuel cell analysis method dimensionless moduli | 12/21 20:05:08 | WWW |
639 | $B%"%s%H%i%;%sFsNLBN$rMQ$$$?3h@-$J9ZAG8GDj2= | 12-a | Biofuel cells Enzyme immobilization Suppression of physical adsorption | 12/21 20:42:08 | WWW |
640 | $B4D6-1x@wJ* | 7-d | Biocontainment Outer membrane protein Toluene degradation | 12/21 21:25:14 | WWW |
641 | Low-temperature chemical conversion with highly active nanomaterials synthesised using the supercritical hydrothermal method | 8-e | nanoparticles low-temperature supercritical | 12/21 21:45:44 | WWW |
642 | $BJ,;R%$%s%W%j%s%H9bJ,;R8GDj%0%i%U%!%$%H%Z!<%9%HEE6K$rMQ$$$?%a%m%Z%M%`%;%s%5$N:GE,2M66@-%b%N%^! | 7-e | meropenem molecularly imprinted polymer sensor | 12/21 21:54:47 | WWW |
643 | $B9b%9%k%[%s;@4pL)EY%"%$%*%N%^!<= | 9-e | polymer electrolyte fuel cells pore-filling membrane chemical durability | 12/21 22:26:25 | WWW |
644 | $B%"%_%sE:2CG.?e$K$h$kC:AGA!0]6/2=%W%i%9%A%C%/$N | 8-d | hydrothemal CFRP amine | 12/21 22:48:47 | WWW |
645 | $B= | 5-f | packed bed reactors CFD process design | 12/21 22:51:05 | WWW |
646 | $BJBNs5$1U%9%i%0N.%7%9%F%`$NN.NL!&05NO%P%i%s%97W;;$K$h$kF0FC@-2r@O$H@_7W(B | 5-f | Parallelized microreactors Gas-liquid slug flow Modeling and design | 12/21 23:08:45 | WWW |
647 | $B%7%s%0%k%f!<%95;=Q!&O"B3@8;:$r9MN8$7$?%P%$%*0eLtIJ@=B$%W%m%;%9$NPmbWE*@_7W(B | 6-b | pharmaceutical manufacturing single-use technology continuous manufacturing | 12/21 23:11:54 | WWW |
648 | $BG.NO3XE*>uBV6u4V$NH?1~7PO):GE,2=$K$h$kCJ3,E*H?1~AuCV9=B$@_7W(B | 5-f | Multi-level reactor design Systematic process intensification Optimization | 12/21 23:28:26 | WWW |
649 | $BB?4I<0G.8r497?%^%$%/%m%j%"%/%?%b%8%e!<%k@_7WK!(B | 5-f | Microreactor Design CFD | 12/21 23:47:11 | WWW |
650 | $B<+8J=89gBN$rH?1~>l$H$7$FMQ$$$?(Bcholesterol$B$N%(%]%-%72=H?1~(B | 12-m | Self-assembly Cholesterol Epoxidation | 12/21 23:58:38 | WWW |