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Peking University Official Website
Pkunews
Home
Academic honor
Frequently used links
Once honored
Scientific Research
Research Field
Paper Publications
Patents
Published Books
Research Projects
Teaching Research
Teaching Resources
Teaching Information
Teaching Achievement
Awards and Honours
Enrollment Information
Student Information
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Blog
王海洋
Researcher Supervisor of Doctorate Candidates Supervisor of Master's Candidates
Email:
45da8b5111fbf0a1393d342a215eac35dedb9dc173f940b52ca5db306d45a03764d57451b69274a3204c674600c821153b70c3391f0f44bb6fcb65855421c37d311246955a74827a6c9a8d8464361d2726332f43a0a8da1abaae1715553f8b2306905f236fcd080c12a4a1213ef9b5866759774a40e9c4023509ec916cffdba3
Business Address: Xinao Engineering Building Room 3060
Educational Experience:
2006.9-2010.6
南京理工大学 , 安全工程 , 学士 , 本科
2012.9-2014.3
马里兰大学帕克分校 , 机械工程 , Research Assistant , 联合培养博士研究生
2010.9-2015.6
南京理工大学 , 力学 , 博士 , 博士研究生
Background:
2016.3-2019.1 化学工程系 , 马里兰大学帕克分校 
2019.1-2021.1 环境与化学工程系 , 加州大学河滨分校 
2021.1-2022.5 环境与化学工程系 , 加州大学河滨分校 
2022.5-2024.6 Defect COE , 美国应用材料公司 
2024.7-2030.5 工学院航空航天系 , 北京大学 
Research Focus:
高能密度高固含量3D打印
高能添加剂的多尺度燃烧机制
高能量密度材料的物质传输和能量转化
Award:
Paper:
1.
陈际洋, , 韩志伟 and 解立峰.
民用炸药敏感度试验方法的研究与探讨
.爆破器材,40,8-10,2011
2.
陈际洋, , 韩志伟, 解立峰 and 李斌.
激波驱动下固体颗粒抛撒的实验研究
.实验力学,27,715-720,2012
3.
韩志伟, 李斌, 解立峰 and .
激波抛撒水膜成雾参数实验研究
.实验流体力学,27,50-55,2013
4.
MR Zachariah, H Wang, S Yan and G Jian.
Burning behavior of energetic composite nanofibers
.8th US National C...,2013,1300-1308,2013
5.
MR Zachariah, C Huang, JB DeLisio, S Yan, G Jian and H Wang.
Electrospray formation of gelled nano-aluminum microspheres with superior reactivity
.ACS applied mater...,5,6797-6801,2013
6.
MR Zachariah, JB DeLisio, G Jian and H Wang.
Microsphere Composites of Nano-Al and Nanothermite: An Approach to Better Utilization of Nanomaterials
.52nd Aerospace Sc...,0647,2014
7.
L Xie, G Jian, G Rao, X Sun and H Wang.
The Critical Energy of Direct Initiation in Liquid Fuel‐Air and Liquid Fuel‐RDX Powder‐Air Mixtures in a Vertical Detonation Tube
.Propellants, Expl...,39,597-603,2014
8.
MR Zachariah, GC Egan, G Jian and H Wang.
Assembly and reactive properties of Al/CuO based nanothermite microparticles
.Combustion and Fl...,161,2203-2208,2014
9.
孙晓雄, 饶国宁, 解立峰 and .
气-液-固三相体系云雾爆轰特性的实验研究
.高压物理学报,28,671-679,2014
10.
MR Zachariah, H Wang, JB DeLisio, G Jian and C Huang.
Electrospray deposition of energetic polymer nanocomposites with high mass particle loadings: a prelude to 3D printing of rocket motors
.Advanced Engineer...,17,95-101,2015
11.
G Rao, L Xie, MR Zachariah and H Wang.
Ignition and combustion characterization of nano-Al-AP and nano-Al-CuO-AP micro-sized composites produced by electrospray technique
.Energy Procedia,66,109-112,2015
12.
, 王翠华, 解立峰 and 王栋.
纳米 CeO_2 改性环氧树脂抗紫外老化
.中国有色金属学报,25,3530-3534,2015
13.
.
纳米含能材料的静电喷雾法制备与燃烧特性表征
.南京: 南京理工大学,2015
14.
MR Zachariah, W Zhou, G Jian, JB DeLisio and H Wang.
Electrospray formation and combustion characteristics of iodine-containing Al/CuO nanothermite microparticles
.Combustion and Fl...,162,2823-2829,2015
15.
MR Zachariah, H Wang and G Young.
Application of nano‐aluminum/nitrocellulose mesoparticles in composite solid rocket propellants
.Propellants, Expl...,40,413-418,2015
16.
MR Zachariah, VT Lee, JB DeLisio, W Zhou, G Jian and H Wang.
Metal iodate-based energetic composites and their combustion and biocidal performance
.ACS applied mater...,7,17363-17370,2015
17.
C Henkes, H Wang, D Wang and Z Han.
Electrospray formation of RDX/ceria mixture and its thermal decomposition performance
.Journal of Therma...,123,449-455,2016
18.
L Xie, H Wang, B Li and Z You.
Water aerosol formation: Transient process induced by shock waves
.Journal of Aeroso...,106,100-110,2017
19.
MR Zachariah, JB DeLisio, RJ Jacob and H Wang.
Assembly and encapsulation of aluminum NP's within AP/NC matrix and their reactive properties
.Combustion and Fl...,180,175-183,2017
20.
李斌, 朱祥东, 王永旭, 王翠华, and 姚箭.
油箱明火烤燃燃爆特性实验研究
.爆炸与冲击,37,779-784,2017
21.
MR Zachariah, X Wang, T Wu, JB DeLisio and H Wang.
One-step solvent-free mechanochemical synthesis of metal iodate fine powders
.Powder Technology,324,62-68,2018
22.
MR Zachariah, J Hu, Y Yang, T Wu, S Holdren, JB DeLisio and H Wang.
Mesoporous silica spheres incorporated aluminum/poly (vinylidene fluoride) for enhanced burning propellants
.Advanced Engineer...,20,1700547,2018
23.
MR Zachariah, S Holdren, H Wang, Y Yang and MC Rehwoldt.
Ignition of nanoscale titanium/potassium perchlorate pyrotechnic powder: reaction mechanism study
.The Journal of Ph...,122,10792-10800,2018
24.
MR Zachariah, H Wang, JB DeLisio, PY Zavalij, X Wang and T Wu.
Performance of iodine oxides/iodic acids as oxidizers in thermite systems
.Combustion and Fl...,191,335-342,2018
25.
SR Raghavan, KC DeMella, S Hou, H Wang, G Ji, X Fan and J Zheng.
Manipulating electrolyte and solid electrolyte interphase to enable safe and efficient Li-S batteries
.Nano energy,50,431-440,2018
26.
H Wang, X Liao, Z Li, J Chen, G Yang, J Wang, Z Qiao and J Shen.
Reaction mechanism of Al-CuO nanothermites with addition of multilayer graphene
.Thermochimica Act...,666,60-65,2018
27.
MR Zachariah, M Rehwoldt, DJ Kline and H Wang.
Ignition and Combustion Characterization of Ca(IO3)2‐based Pyrotechnic Composites with B, Al, and Ti
.Propellants, Expl...,43,977-985,2018
28.
MR Zachariah, S Holdren and H Wang.
Preparation and combustion of laminated iodine containing aluminum/polyvinylidene fluoride composites
.Combustion and Fl...,197,120-126,2018
29.
MR Zachariah, Y Yang, JB DeLisio, H Wang, T Wu and X Wang.
Boron ignition and combustion with doped δ-Bi2O3: Bond energy/oxygen vacancy relationships
.Combustion and Fl...,197,127-133,2018
30.
MR Zachariah, S Hou, H Wang, X Ji, G Ji, X Fan, Y Yang and J Zheng.
Extremely stable antimony–carbon composite anodes for potassium-ion batteries
.Energy & Environm...,12,615-623,2019
31.
MR Zachariah, Y Yang, X Wang, MC Rehwoldt and H Wang.
On the promotion of high temperature AP decomposition with silica mesoparticles
.Combustion and Fl...,200,296-302,2019
32.
MR Zachariah, P Wang, T Wu, DJ Kline, M Rehwoldt and H Wang.
Comparison study of the ignition and combustion characteristics of directly-written Al/PVDF, Al/Viton and Al/THV composites
.Combustion and Fl...,201,181-186,2019
33.
MR Zachariah, X Wang, W Zhao, T Wu, M Rehwoldt, DJ Kline and H Wang.
Architecture can significantly alter the energy release rate from nanocomposite energetics
.ACS Applied Polym...,1,982-989,2019
34.
KC DeMella, Y Yang, H Wang, Q Li, J Chen, X Fan, G Ji and J Zheng.
High‐fluorinated electrolytes for Li–S batteries
.Advanced energy m...,9,1803774,2019
35.
P Wang, T Wu, NR Agrawal, N Eckman, DJ Kline, J Shen and H Wang.
Direct writing of a 90 wt% particle loading nanothermite
.Advanced Material...,31,1806575,2019
36.
MR Zachariah, DJ Kline and H Wang.
In-operando high-speed microscopy and thermometry of reaction propagation and sintering in a nanocomposite
.Nature communicat...,10,3032,2019
37.
MR Zachariah, NE Eckman, H Wang, MC Rehwoldt and DJ Kline.
Why does adding a poor thermal conductor increase propagation rate in solid propellants?
.Applied Physics L...,115,2019
38.
MR Zachariah, H Wang, R Shen, Y Ye, Y Tai, J Dai, C Wang, Y Shen and J Xu.
Controlling the energetic characteristics of micro energy storage device by in situ deposition Al/MoO3 nanolaminates with varying internal structure
.Chemical Engineer...,373,345-354,2019
39.
MR Zachariah, DJ Kline, H Wang, RJ Jacob and PM Guerieri.
Droplet combustion of kerosene augmented by stabilized nanoaluminum/oxidizer composite mesoparticles
.Combustion and Fl...,211,1-7,2020
40.
NR Agrawal, P Wang, N Eckman, T Wu, DJ Kline, H Wang and MC Rehwoldt.
Ignition and combustion analysis of direct write fabricated aluminum/metal oxide/PVDF films
.Combustion and Fl...,211,260-269,2020
41.
H Ren, M Rehwoldt, DJ Kline, T Wu, H Wang, X Wang and W Zhao.
Titanium enhanced ignition and combustion of Al/I2O5 mesoparticle composites
.Combustion and Fl...,212,245-251,2020
42.
MR Zachariah, L Hu, H Wang, P Ghildiyal, T Li, DJ Kline, Y Yao and Y Yang.
Rapid laser pulse synthesis of supported metal nanoclusters with kinetically tunable size and surface density for electrocatalytic hydrogen evolution
.ACS Applied Nano ...,3,2959-2968,2020
43.
T Wu, M Rehwoldt, X Wang, Y Yang, DJ Kline, H Wang and J Shen.
Combustion of 3D printed 90 wt% loading reinforced nanothermite
.Combustion and Fl...,215,86-92,2020
44.
C Rossi, MC Rehwoldt, Z Alibay, DJ Kline, B Julien and H Wang.
Probing the reaction zone of nanolaminates at∼ μs time and∼ μm spatial resolution
.The Journal of Ph...,124,13679-13687,2020
45.
Y Ye, H Wang, LT DeLuca, W Guo, R Shen, W Zhang, H Yu and S Chen.
Sponge-like Al/PVDF films with laser sensitivity and high combustion performance prepared by rapid phase inversion
.Chemical Engineer...,396,124962,2020
46.
MR Zachariah, DJ Kline, H Wang, Q Jiao, Y Ou, T Yan, H Ren and W Zhao.
Tailoring energy release of nano-Si based thermites via incorporation of Ti nanoparticles
.Chemical Engineer...,396,124559,2020
47.
H Wang, DJ Kline, F Xu, J Schwan, G Nava, P Biswas, X Ke and P Ghildiyal.
Silicon nanoparticles for the reactivity and energetic density enhancement of energetic-biocidal mesoparticle composites
.ACS applied mater...,13,458-467,2020
48.
MR Zachariah, A Esteve, S Pelloquin, E Tichtchenko, H Wang and B Julien.
Elucidating the dominant mechanisms in burn rate increase of thermite nanolaminates incorporating nanoparticle inclusions
.Nanotechnology,32,215401,2021
49.
Z Alibay, H Wang, SC Barron, JB DeLisio, MC Rehwoldt and DJ Kline.
In-operando thermophysical properties and kinetics measurements of Al-Zr-C composites
.Combustion and Fl...,228,250-258,2021
50.
MR Zachariah, MC Rehwoldt, DJ Kline and H Wang.
Carbon fibers enhance the propagation of high loading nanothermites: in situ observation of microscopic combustion
.ACS applied mater...,13,30504-30511,2021
51.
H Wang, S Herrera, P Biswas, MC Rehwoldt, DJ Kline and Z Alibay.
Mechanism of microwave-initiated ignition of sensitized energetic nanocomposites
.Chemical Engineer...,415,128657,2021
52.
MR Zachariah, P Biswas, DJ Kline and H Wang.
Connecting agglomeration and burn rate in a thermite reaction: Role of oxidizer morphology
.Combustion and Fl...,231,111492,2021
53.
Y Wang, F Xu, Z Alibay, H Wang, H Kwon, P Ghildiyal and P Biswas.
Rerouting pathways of solid-state ammonia borane energy release
.The Journal of Ph...,126,48-57,2021
54.
M Zachariah, P Biswas, M Rehwoldt, D Kline and H Wang.
Engineering agglomeration and propagation of high Al/CuO nanothermite loading composites with reactive and non-reactive fibers
.AIAA SCITECH 2022...,1256,2022
55.
M Zachariah, H Wang and E Hagen.
Macroscopic and microscopic imaging of aluminum-HTPB in a counter flow system
.APS Shock Compres...,2022
56.
M Zachariah, H Wang, E Hagen and Y Wang.
Combustion characteristics study of 90 wt % Al/B/Ti-KClO4 loading nanothermites with high-speed videography and pyrometry
.APS Shock Compres...,2022
57.
A Sehirlioglu, H Wang, Y Yang, DJ Kline, P Biswas, B Hirt and F Xu.
Superior reactivity of ferroelectric Bi2WO6/aluminum metastable intermolecular composite
.Chemical Engineer...,247,116898,2022
58.
DJ Kline, M Gale, Z Alibay, H Wang, I Dulalia, P Biswas, G Nava and F Xu.
Energetic characteristics of hydrogenated amorphous silicon nanoparticles
.Chemical Engineer...,430,133140,2022
59.
C Rossi, MR Zachariah, A Estève, S Pelloquin, H Wang, B Julien and T Wu.
Engineered porosity-induced burn rate enhancement in dense Al/CuO nanothermites
.ACS Applied Energ...,5,3189-3198,2022
60.
H Wang, Y Wang, Z Alibay, F Xu, S Herrera, P Biswas and P Ghildiyal.
Vaporization-controlled energy release mechanisms underlying the exceptional reactivity of magnesium nanoparticles
.ACS Applied Mater...,14,17164-17174,2022
61.
MR Zachariah, DJ Kline, P Biswas and H Wang.
Flame stand-off effects on propagation of 3D printed 94 wt% nanosized pyrolants loading composites
.Chemical Engineer...,434,134487,2022
62.
MR Zachariah, P Biswas and H Wang.
Direct imaging and simulation of the interface reaction of metal/metal oxide nanoparticle laminates
.The Journal of Ph...,126,8684-8691,2022
63.
MR Zachariah, H Ren, J Xu, T Wu, X Wang, DJ Kline, H Wang and W Zhao.
Influence of titanium addition on performance of boron-based thermites
.Chemical Engineer...,438,134837,2022
64.
X Shi, CC Wu, JL Gottfried, H Wang, J Baek, Y Wang and Y Jiang.
Ignition and combustion of Perfluoroalkyl-functionalized aluminum nanoparticles and nanothermite
.Combustion and Fl...,242,112170,2022
65.
MR Zachariah, Y Wang, AH Huynh, D Ka, J Baek, H Wang and Y Jiang.
Perfluoroalkyl-functionalized graphene oxide as a multifunctional additive for promoting the energetic performance of aluminum
.ACS nano,16,14658-14665,2022
66.
MR Zachariah, JS Moore, M Garg, Y Wang and H Wang.
Unzipping polymers significantly enhance energy flux of aluminized composites
.Combustion and Fl...,244,112242,2022
67.
MR Zachariah, P Ghildiyal, F Xu, H Wang and Y Wang.
Effect of alkali metal perchlorate and iodate type on boron ignition: The role of oxidizer phase change
.Chemical Engineer...,446,136786,2022
68.
MR Zachariah, X Zheng, DJ Kline, Y Wang, Y Jiang and H Wang.
Do we need perfect mixing between fuel and oxidizer to maximize the energy release rate of energetic nanocomposites?
.Applied Physics L...,122,2023
69.
M Zachariah and H Wang.
Engineering Particle Agglomerate and Flame Propagation in 3D -printed Al/ CuO Nanocomposites
.Nano and Micro‐S...,2023
70.
MR Zachariah, F Xu, S Herrera, K Shi, E Hagen and H Wang.
Carbon fibers as additives to engineer agglomeration and propagation of aluminized propellants
.Chemical Engineer...,460,141653,2023
71.
MR Zachariah, H Wang, P Biswas, E Hagen and Y Wang.
Imaging the combustion characteristics of Al, B, and Ti composites
.Combustion and Fl...,252,112747,2023
72.
MR Zachariah, H Wang, Y Wang, A Rojas, P Ghildiyal and M Chowdhury.
High-yield spray drying assembly and reactive properties of nanoenergetic mesoparticle composites
.Advanced Powder T...,34,104075,2023
73.
C Rossi, MR Zachariah, DJ Kline, H Wang, E Hagen and T Wu.
Achieving superior ignition and combustion performance of Al/I2O5 biocidal nanoenergetic materials by CuO addition
.Combustion and Fl...,259,113190,2024
74.
MR Zachariah, X Zheng, J Baek, Y Wang, Y Jiang and H Wang.
Enhanced energy delivery of direct-write fabricated reactive materials with energetic graphene oxide
.Combustion and Fl...,260,113095,2024
75.
MR Zachariah, Y Wang and H Wang.
Observing coalescence of aluminum nanoparticles during burning using aluminum/ammonia perchlorate sandwiched films
.Combustion and Fl...,260,113117,2024
76.
MR Zachariah, H Wang, E Hagen, GI Paul and Y Wang.
Combustion behavior of aluminized metal iodate composites. Part 2: Iodine and energy release rate
.Combustion and Fl...,262,113373,2024
77.
, 洪百禧 and 安熠.
硼颗粒点火燃烧模型及微观界面反应机制研究进展
.固体火箭技术,48,343-355,2025
78.
H Wang and B Hong.
Gallium-assisted rapid granulation from bulk aluminum to fine powder for high-loading thermite 3D printing
.Chemical Engineer...,178052,2026