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phenyl group的中文,翻译,解释,例句

phenyl group

phenyl group的基本解释
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苯基

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更多 网络例句 与phenyl group相关的网络例句 [注:此内容来源于网络,仅供参考]

When pumped with 800 nm laser irradiation, 2 {4 [2 (4 dimethylamino phenyl vinyl] phenyl} ethylamino ethanol and 2 {4 [2 (4 diethylamino phenyl vinyl] phenyl} ethylamino ethanol show strong two photon induced blue fluorescence at 436 and 440 nm respectively, while DMANHAS and 4 nitro benzoic acid 2 {4 [2 (4 diethylamino phenyl vinyl] phenyl} ethylamino ethyl ester exhibit no fluorescence.

在800 nm的飞秒脉冲激光激发下,反式-4-(N-羟乙基-N'-乙基氨基)-4'-二苯乙烯和反式-4-(N-羟乙基-N'-乙基氨基)-4'-二苯乙烯均发出较强的蓝紫色上转换荧光,荧光峰分别位于436和440 nm,而DMANHAS和反式-4-[N-(乙氧基羰基-4-硝基苯基)-N'-乙基氨基]-4'-二苯乙烯没有荧光。

Eight porphyrin compounds, meso-5, 10, 15, 20-Tetra [4-aminophenyl] porphine (TAPPH〓, 1), meso-5, 10, 15, 20-Tetra [4-(N-pyrrolidinyl) phenyl] porphine (TBPPH〓, 2), meso-5, 10, 15, 20-Tetra [4-(4'-ethylpiperazinyl) phenyl] porphine (TEPPH〓, 3), meso-5, 10, 15, 20-Tetra [4-(4'-butylpiperazinyl) phenyl] porphine (TUPPH〓, 4), meso-5, 10, 15, 20-Tetra [4-(4'-heptylpiperazinyl) phenyl] porphine (TEPPH〓, 5), 5- [4-(4'-ethylpiperazinyl) phenyl] -10, 15, 20-triphenylporphine (MEPPH〓, 6), 5- [4-(4'-buthylpiperazinyl) phenyl] -10, 15, 20-triphenylporphine (MUPPH〓, 7) and N, N'-di (meso-5, 10, 15, 20-tetraphenylporphinato) piperazine (DiPPH〓, 8) have been designed and synthesized. These porphyrins are never reported except TAPPH〓.

设计并合成了8种卟啉化合物,分别为meso-5,10,15,20-四(4-氨基苯基)卟啉(TAPPH〓,1),meso-5,10,15,20-四卟啉(TBPPH〓,2),meso-5,10,15,20-四[4-(4'-乙基哌嗪基)苯基]卟啉(TEPPH〓,3),meso-5,10,15,20-四[4-(4'-丁基哌嗪基)苯基]卟啉(TUPPH〓,4),meso-5,10,15,20-四[4-(4'-庚基哌嗪基)苯基]卟啉(THPPH〓,5),5,10,15-三苯基-20-[4-(4'-乙基哌嗪基)苯基]卟啉(MEPPH〓,6),5,10,15-三苯基-20-[4-(4'-丁基哌嗪基)苯基]卟啉(MUPPH〓,7)和N,N'-二(meso-5,10,15,20-四苯基卟啉基)哌嗪(DiPPH〓,8)。

The biomechanical tests showed that two kinds of artificial bones had not significant difference on compressive strength and Young\'s modulus(P>0.05),while the flexural strength of nano-nacre artificial bone was less than the control group(P<0.05).3.The results of CCK-8 showed that the difference were not significant in each group,the proliferation of osteoblast reached the peak at the 5th day;7 days after being co-cultured,the total protein content of study group was higher than control group and blank group(P<0.05),while the difference between control group and blank group was not significantP>0.05The difference of alkaline phosphatase activities among three groups was not significant(P>0.05The SEM view showed that osteoblast attached and grew well in two kinds of artificial bone.4.X-ray photography showed that two kinds of powder started to degrade in 2 weeks;this phenomenon became more appear in 4 weeks,nano-nacre powder degraded faster than micron-nacre powder,while the hole shadow was easy to be found;in 8 weeks,all the femoral holes recovered and returned to normal bone mineral density in all groups.Analysis of tetracycline fluorescent double marks in the hard tissue grinding slices indicated that new bone grew fastest around the bone defect area in study group,while most slowly in blank groupP<0.05 SEM(scanning electron microscope observation showed that nano-nacre powder degraded more quickly.The same result can be found through the demineralized sections morphometric analysis,and both of the composite artificial bones made from those two kinds of nacre powder had the good connection with the adjacent tissue in rats body without apparent inflammatory response.5.X-ray photography showed that rabbit\'s bone defects healed faster in study group since NNAB implanted than in control group since MNAB implanted.At 24 weeks after operation,bone density in radial defects had nearly accessed to the normal area,while lower in control group,and turned up nonunion in blank group;The checking of BMD showed that results in study group were higher than those in control group at 8,16 and 24 week(P<0.05), and the difference between the BMD values in study group at 24 week and those in blank group was not significant(P>0.05).The gross specimens showed satisfactory histocompatibility both in study group and in control group,with bone tissue growing from two sides into the center of implanted materials; Normal slices in HE stain and hard tissue grinding slices in Stevenel\'s blue/Van Geison\'s picro-fuchsin stain showed that the bone growth tendency was better in study group than that in control group,and the medullary cavity had been penetrated to the implanted materials in study group at 24 week;Analysis of tetracycline fluorescent double marks in the hard tissue grinding slices indicated that new bone in both groups grew fastest 8 weeks after surgery,while slow down at 16 week.

纳米珍珠层/消旋聚乳酸复合人工骨与微米珍珠层/消旋聚乳酸复合人工骨分别与成骨细胞共培养后,其各时间点CCK-8法检测值与空白对照无显著差异(P>0.05),成骨细胞均在第5天达到增殖高峰期;培养7天后,实验组细胞蛋白含量高于对照组及空白组(P<0.05),后两者之间则无显著差异P>0.05碱性磷酸酶活性在三组间均无显著差异(P>0.05电镜下可见成骨细胞在两种人工骨上都有良好生长贴附能力。4.X-ray显示两种粉体在大鼠股骨骨洞植入第2周时都开始出现了降解,第4周时更为明显,纳米珍珠层粉较之微米珍珠层粉降解更快,而空白对照组骨洞阴影仍可见,至8周时,则所有组骨洞均己闭合修复,X-ray下已不可见原钻孔痕迹,恢复正常骨质密度;硬组织磨片四环素荧光双标记结果显示纳米珍珠层粉植入组较其余两组在骨缺损区周围新骨生长速度更快,空白组速度最慢P<0.05电镜观察及常规脱钙切片亦可见到纳米粉体降解较快;由以上两种原材料制得的纳米珍珠层/消旋聚乳酸复合人工骨与微米珍珠层/消旋聚乳酸复合人工骨在大鼠体内均与周围组织结合良好,无明显炎症反应。5.X-ray显示纳米珍珠层/消旋聚乳酸复合人工骨植入兔桡骨缺损区后其骨愈合速度较对照组微米珍珠层/消旋聚乳酸复合人工骨植入的快,至植入术后24周,实验组骨缺损区接近正常骨密度,对照组骨缺损区密度较低,空白组则呈现骨不连状态;骨密度测量结果显示术后8周、16周、24周实验组的骨密度值高于对照组(P<0.05,24周实验组的骨密度值与术前所测得的正常值无显著性差异P>0.05动物取材大体所见均显示组织相容性良好,骨组织逐渐由植入材料两端向中央生长;常规切片HE染色及硬组织磨片Stevenel\'s blue/Van Geison\'s picro-fuchsin联合染色均可见实验组骨缺损区长势优于对照组,至术后24周,实验组骨髓腔与材料已呈相交通状;硬组织磨片荧光显微镜下观察,两组材料在术后8周处于骨生长最快速时期,16周时速度开始减慢,术后4、8、16周时实验组的新骨生长速度均较对照组的快

更多网络解释 与phenyl group相关的网络解释 [注:此内容来源于网络,仅供参考]

phenyl salicylate; Salol:柳酸苯酯;沙洛;羟苯甲酸苯酯

硫氰酸苯酯 phenyl rhodanate; phenyl rhodanide; phenyl sulfocyanide; phenylsulfocyanate | 柳酸苯酯;沙洛;羟苯甲酸苯酯 phenyl salicylate; Salol | 二苯硒 phenyl selenide

phenyl sulfocyanide:硫氰酸苯酯

丙基苯基醚;丙氧苯 phenyl propyl ether | 硫氰酸苯酯 phenyl rhodanate; phenyl rhodanide; phenyl sulfocyanide; phenylsulfocyanate | 柳酸苯酯;沙洛;羟苯甲酸苯酯 phenyl salicylate; Salol

phenyl hexachloride:六氯代苯

phenyl hexachloride 六氯代苯 | phenyl hydrate 苯酚 | phenyl isothiocyanate 异硫氰酸苯酯