1 |
MEHRALI M, ELSHOF J E, SHAHI M, et al. Simultaneous solar-thermal energy harvesting and storage via shape stabilized salt hydrate phase change material[J]. Chemical Engineering Journal, 2021, 405: doi: 10.1016/j.cej.2020.126624.
|
2 |
包信和. 纳米限域及能源分子的催化转化[J]. 科学通报, 2018, 63(14): 1266-1274, 1265.
|
|
BAO X H. Nano confinement and catalytic conversion of energy molecules[J]. Chinese Science Bulletin, 2018, 63(14): 1266-1274, 1265.
|
3 |
邢晓红, 欧阳金波, 周利民, 等. 限域空间内的结晶研究进展[J]. 化学工业与工程, 2022, 39(5): 39-48.
|
|
XING X H, OUYANG J B, ZHOU L M, et al. Research progress of crystallization in confined space[J]. Chemical Industry and Engineering, 2022, 39(5): 39-48.
|
4 |
UVANESH K, SAGIRI S S, SENTHILGURU K, et al. Effect of span 60 on the microstructure, crystallization kinetics, and mechanical properties of stearic acid oleogels: An in-depth analysis[J]. Journal of Food Science, 2016, 81(2): E380-E387.
|
5 |
PIELICHOWSKA K, PIELICHOWSKI K. Kinetics of isothermal and nonisothermal crystallization of poly(ethylene oxide) (PEO) in PEO/fatty acid blends[J]. Journal of Macromolecular Science, Part B, 2011, 50(9): 1714-1738.
|
6 |
周卫兵, 张磊, 朱教群, 等. 硬脂酸/膨胀石墨复合相变储热的动力学研究[J]. 武汉理工大学学报, 2012, 34(7): 9-13.
|
|
ZHOU W B, ZHANG L, ZHU J Q, et al. Kinetics study of phase change on stearic acid/expanded graphite composite as heat storage material[J]. Journal of Wuhan University of Technolgy, 2012, 34(7): 9-13.
|
7 |
HA J M, HAMILTON B D, HILLMYER M A, et al. Phase behavior and polymorphism of organic crystals confined within nanoscale chambers[J]. Crystal Growth & Design, 2009, 9(11): 4766-4777.
|
8 |
WANG L P, SUI J, ZHAI M, et al. Physical control of phase behavior of hexadecane in nanopores[J]. The Journal of Physical Chemistry C, 2015, 119(32): 18697-18706.
|
9 |
LI B X, LIU T X, HU L Y, et al. Facile preparation and adjustable thermal property of stearic acid-graphene oxide composite as shape-stabilized phase change material[J]. Chemical Engineering Journal, 2013, 215/216: 819-826.
|
10 |
LIU Z F, CHEN Z H, YU F. Preparation and characterization of microencapsulated phase change materials containing inorganic hydrated salt with silica shell for thermal energy storage[J]. Solar Energy Materials and Solar Cells, 2019, 200: doi: 10.1016/j.solmat.2019.110004
|
11 |
KADOONO T, OGURA M. Heat storage properties of organic phase-change materials confined in the nanospace of mesoporous SBA-15 and CMK-3[J]. Physical Chemistry Chemical Physics: PCCP, 2014, 16(12): 5495-5498.
|
12 |
ZHANG Y Z, ZHENG S L, ZHU S Q, et al. Evaluation of paraffin infiltrated in various porous silica matrices as shape-stabilized phase change materials for thermal energy storage[J]. Energy Conversion and Management, 2018, 171: 361-370.
|
13 |
WANG J J, ZHANG T, SHEN Y X, et al. Polyethylene glycol/nanofibrous Kevlar aerogel composite: Fabrication, confinement effect, thermal energy storage and insulation performance[J]. Materials Today Communications, 2022, 32: doi: 10.1016/j.mtcomm.2022.104011.
|
14 |
YU K Y, LIU Y S, YANG Y Z. Review on form-stable inorganic hydrated salt phase change materials: Preparation, characterization and effect on the thermophysical properties[J]. Applied Energy, 2021, 292: doi: 10.1016/j.apenergy.2021.116845.
|
15 |
MO Z J, MO P J, YI M M, et al. Ti3C2Tx@Polyvinyl alcohol foam-supported phase change materials with simultaneous enhanced thermal conductivity and solar-thermal conversion performance[J]. Solar Energy Materials and Solar Cells, 2021, 219: doi: 10.1016/j.solmat.2020.110813
|
16 |
牛慧, 秦亚伟, 董金勇. 用DSC方法研究β-定向结晶聚丙烯树脂的结晶动力学[J]. 石油化工, 2014, 43(11): 1240-1245.
|
|
NIU H, QIN Y W, DONG J Y. Study of crystallization kinetics of β-crystalline-specified polypropylene resins by DSC[J]. Petrochemical Technolgy, 2014, 43(11): 1240-1245.
|
17 |
WINSECK M M, CHENG H Y, SANTALA M K. Characterization of low temperature crystal growth parameters of the growth-dominated phase change materials GeSb6Te[J]. Journal of Non-Crystalline Solids, 2020, 547: doi: 10.1016/j.jnoncrysol. 2020.120317.
|
18 |
张予东, 崔新盼, 邹易谙, 等. 聚乳酸/可分散性纳米二氧化硅复合材料等温结晶行为研究[J]. 化学研究, 2018, 29(6): 614-620.
|
|
ZHANG Y D, CUI X P, ZOU Y A, et al. Isothermal crystallization behavior of PLA/dispersible nano-SiO2 composites[J]. Chemical Research, 2018, 29(6): 614-620.
|
19 |
AVRAMI M. Kinetics of phase change. I: general theory[J]. The Journal of Chemical Physics, 1939, 7(12): 1103-1112.
|
20 |
JEZIORNY A. Parameters characterizing the kinetics of the non-isothermal crystallization of poly(ethylene terephthalate) determined by D.S.C[J]. Polymer, 1978, 19(10): 1142-1144.
|
21 |
OZAWA T. Kinetics of non-isothermal crystallization[J]. Polymer, 1971, 12(3): 150-158.
|
22 |
LIU T X, MO Z S, WANG S E, et al. Nonisothermal melt and cold crystallization kinetics of poly(aryl ether ether ketone ketone)[J]. Polymer Engineering & Science, 1997, 37(3): 568-575.
|
23 |
KISSINGER H E. Reaction kinetics in differential thermal analysis[J]. Analytical Chemistry, 1957, 29(11): 1702-1706.
|
24 |
LAYACHI A, MAKHLOUF A, FRIHI D, et al. Non-isothermal crystallization kinetics and nucleation behavior of isotactic polypropylene composites with micro-talc[J]. Journal of Thermal Analysis and Calorimetry, 2019, 138(2): 1081-1095.
|
25 |
何曼君, 张红东, 陈维孝. 高分子物理[M]. 3版. 上海: 复旦大学出版社, 2007.
|
|
HE M J, ZHANG H D, CHEN W X. Polymer physics[M]. 3rd. Shanghai: Fudan University Press, 2007.
|
26 |
ZHISHEN M. A method for the non-isothermal crystallization kinetics of polymers[J]. Acta Polymerica Sinica, 2008, 1(7): 656-661.
|
27 |
MAFFEZZOLI A, KENNY J, TORRE L. On the physical dimensions of the Avrami constant[J]. Thermochimica Acta, 1995, 269/270: 185-190.
|
28 |
MORENO E, CORDOBILLA R, CALVET T, et al. Polymorphism of even saturated carboxylic acids from n-decanoic to n-eicosanoic acid [J]. New Journal of Chemistry, 2007, 31(6):947-957.
|
29 |
KANEKO F, KOBAYASHI M, KITAGAWA Y, et al. Structure of stearic acid form[J]. Acta Crystallgr. C, 1990, 46: 1490-1492.
|
30 |
YONG D. Effect of Ag nanowires on crystallization behavior of polyethylene glycol/expanded vermiculite composite phase change material[J]. Journal of Energy Storage, 2021, 34: doi: 10.1016/j.est.2020.102223.
|
31 |
ZHANG S D, WANG S S, ZHANG J, et al. Increasing phase change latent heat of stearic acid via nanocapsule interface confinement[J]. The Journal of Physical Chemistry C, 2013, 117(44): 23412-23417.
|