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《分析化学》下册
/ Z& O0 @5 F, C6 M7 [; R5 l仪器分析 概述' w) z! _, J; j$ T$ z! ~
物理分析:physical analysis# ]9 _9 A) r# k d& K
物理化学分析:physicochemical analysis
8 v: V: l" D {+ u% o仪器分析:instrumental analysis+ ]* {' p% H" Y( u4 `
7 M2 q0 O- A# D5 s+ `# d
第十章 电位法及永停滴定法
6 y( D' f$ R# R f+ D1 F9 E电化学分析:electrochemical analysis
# Z/ @! N6 C8 ]) X& B电解法:electrolytic analysis method
' F( O9 s! X' t4 S; Q4 c3 }电重量法:electtogravimetry
' M- z4 z( b5 Y9 L库仑法:coulometry
. ]6 E! L. x1 Y" \8 d库仑滴定法:coulometric titration
" J3 [2 e! e% o) o# i8 T2 H电导法:conductometry0 `2 f8 \; G# x$ s, u$ y- ~
电导分析法:conductometric analysis1 Q3 m3 ?1 T4 i5 x, j/ ^ _
电导滴定法:conductometric titration
5 B4 \! S% a! h" T* y& q电位法:potentiometry2 {# q+ x! Q) O$ q+ B& P$ K# v
直接电位法:dirext potentiometry
! t- I# G/ d3 _: o; i2 `电位滴定法:potentiometric titration7 ]& D* }0 u9 ?( }1 S3 E
伏安法:voltammetry5 r5 e6 y( E( U1 {) o; g
极谱法:polarography9 _3 }6 V! S+ C6 @+ @& {7 @ z
溶出法:stripping method% a/ e+ D; L+ {0 H8 q
电流滴定法:amperometric titration' p; W5 a: n. g/ D
化学双电层:chemical double layer- p* ^1 }, p- x6 }4 j4 l. s
相界电位:phase boundary potential
" l$ _. O6 O5 T9 J( ^金属电极电位:electrode potential
$ U; e6 H2 Y# _化学电池:chemical cell
: A$ w+ I6 M9 f. p1 E液接界面:liquid junction boundary
" z! ^ V" N% W原电池:galvanic cell6 `1 w- V# n4 a' k
电解池:electrolytic cell
2 w& Y: P3 m1 m# D$ @2 q! S负极:cathrode$ P7 I" M* O0 ?8 S
正极:anode
9 s4 B3 \. ?2 i电池电动势:eletromotive force
M2 g3 |& d; T' Z$ g指示电极:indicator electrode- ~2 a! _* M# T% F" H0 v' n
参比电极:reference electroade
/ n2 x0 @+ Y7 `7 X标准氢电极:standard hydrogen electrode
$ S* U# O- W+ X- Y; U6 e+ y一级参比电极:primary reference electrode
! | e* E- i7 e0 O饱和甘汞电极:standard calomel electrode
( j3 e$ g- j) A3 T9 r2 ]" h银-氯化银电极:silver silver-chloride electrode
) \) E) ~7 m! h1 j液接界面:liquid junction boundary
, ?/ X; H4 F# J& a不对称电位:asymmetry potential
/ K. T2 H' W. u表观PH值:apparent PH
' ^6 ^4 ~5 H) }; ?9 k Q复合PH电极:combination PH electrode
0 r; j3 m5 f$ q1 S* d离子选择电极:ion selective electrode
/ i# R3 O! @$ p5 d. i* k敏感器:sensor
7 ?1 E; r' K2 ~9 t" t9 `" B' t晶体电极:crystalline electrodes
0 I# ^& q; N6 m均相膜电极:homogeneous membrance electrodes2 I! f: r* I' K3 d+ j
非均相膜电极:heterog eneous membrance electrodes
3 g3 Y( A9 n2 I非晶体电极:non- crystalline electrodes/ q1 d: U- O, ?+ e
刚性基质电极:rigid matrix electrode4 C) u# E% _5 V- J
流流体载动电极:electrode with a mobile carrier0 i) \" n' s8 n- j2 b
气敏电极:gas sensing electrodes) ?( h8 ?; y% s J' Q, m
酶电极:enzyme electrodes. N& j. Z/ E9 w) {
金属氧化物半导体场效应晶体管:MOSFET8 G) u) a X" Y3 G, O- K# _. }0 E
离子选择场效应管:ISFET; N8 B+ O |/ p8 l4 H3 O
总离子强度调节缓冲剂:total ion strength adjustment buffer,TISAB# O4 @: w5 D7 r% }0 F
永停滴定法:dead-stop titration
1 g* m7 Q2 W3 R/ d% Y双电流滴定法(双安培滴定法):double amperometric titration
$ \, B" T7 a( R6 L: C, E- D% g8 p: V. p, `) ?: `. x
第十一章 光谱分析法概论
6 v5 t) s/ }2 D% l; F6 I- T7 {; w* D普朗克常数:Plank constant
; e: N1 M6 \: S, ]电磁波谱:electromagnetic spectrum
6 i& L+ ^% A+ ~8 _+ r3 V光谱:spectrum$ _. E( i9 f" D3 y/ m: x6 k
光谱分析法:spectroscopic analysis, Y1 I" E' W; g+ u
原子发射光谱法:atomic emission spectroscopy
9 f8 C7 ?: @' Z. ]/ E0 [质量谱:mass spectrum
- F( O4 D) y( s质谱法:mass spectroscopy,MS
1 ]3 r: M# e# j' G4 E* Z; O" a: @. W0 j5 ^5 Z
第十二章 紫外-可见分光光度法/ o ~& X/ k0 ^1 M/ u8 H
紫外-可见分光光度法:ultraviolet and visible spectrophotometry;UV-vis
0 ]4 @; H/ ^! s# H. Q肩峰:shoulder peak; q% _. t% d2 b
末端吸收:end absorbtion
% i+ L4 h z# i$ C6 N* {生色团:chromophore& q& B$ f2 \2 B, ?2 W- G+ w
助色团:auxochrome5 ?9 [" d! n$ }7 F7 r4 f
红移:red shift. Q/ F. k& D& {+ {# l
长移:bathochromic shift
9 x; l9 S# q0 Z, {4 X% C3 h0 ?短移:hypsochromic shift, p! |: U1 I: x# O* i. i
蓝(紫)移:blue shift
" h& ?9 n# G- q4 R6 O3 c/ G) q& E" A增色效应(浓色效应):hyperchromic effect+ F4 V% l0 X: H+ \
减色效应(淡色效应):hypochromic effect! \8 }% t n0 s2 j$ q, T' u! D
强带:strong band- B% h0 Y. Y3 c% M
弱带:weak band: d- T1 @8 Q3 U0 {& N2 o% \
吸收带:absorption band' V* u, q: ]! F: K( Z9 J
透光率:transmitance,T2 t% c. v& J+ d4 c
吸光度:absorbance
8 a8 s3 _1 \) |$ |谱带宽度:band width
# C6 t8 G, ^! v" R" A: C/ p ]/ y杂散光:stray light
, v' e+ X7 E: X6 b* D& l1 A$ c噪声:noise ' K/ b) O8 [* O! E
暗噪声:dark noise5 f9 S3 h e1 w
散粒噪声:signal shot noise- W: b. l9 M6 ?# K' P6 N- f. O
闪耀光栅:blazed grating( b! G5 J( z# ?6 z- {
全息光栅:holographic graaing% J" ^4 k8 C3 |% K6 _! e I. b, h
光二极管阵列检测器:photodiode array detector' K& K2 t4 u. a
偏最小二乘法:partial least squares method ,PLS- n* f+ ^4 ]; }8 r: j3 s$ z" ?
褶合光谱法:convolution spectrometry
. ?4 ` \' D; q: r7 p4 ], w. F褶合变换:convolution transform,CT( C' h# m6 b8 x+ w& j
离散小波变换:wavelet transform,WT4 J! o% g! n0 ^ @" T6 c0 o" k; U
多尺度细化分析:multiscale analysis
% {" U0 l4 ?4 F8 q2 n供电子取代基:electron donating group+ _- j1 Y, @2 s9 X6 d* S
吸电子取代基:electron with-drawing group
7 ?5 i7 c: j% P2 Q9 N5 `& v" K: t6 [: Z+ T: r
第十三章 荧光分析法
! [. h( o0 z+ B$ {# D荧光:fluorescence
. P6 J( C$ ]$ o) t& ?3 b6 L荧光分析法:fluorometry
5 R& [! a2 }; r% u# H; b9 m; Y' pX-射线荧光分析法:X-ray fulorometry
1 Y! i/ ^& q9 W" t/ S原子荧光分析法:atomic fluorometry
+ v' i$ r# S' i/ u分子荧光分析法:molecular fluorometry
1 g/ a: X$ Z, U4 U5 n振动弛豫:vibrational relexation
+ d4 i$ O; W9 C3 a% P! i内转换:internal conversion' s f( A0 D' P1 d
外转换:external conversion. s; ` Q0 F/ F
体系间跨越:intersystem crossing, S2 n) x+ |& W
激发光谱:excitation spectrum
/ d0 z! F/ x4 `荧光光谱:fluorescence spectrum
; E* c+ \8 E) g) w5 c斯托克斯位移:Stokes shift) O" w7 x2 d1 A" s: r8 A+ O5 b
荧光寿命:fluorescence life time0 H/ Q7 P$ ~- q- y8 m) v, E
荧光效率:fluorescence efficiency
* G4 C' Q7 j; z! Y' _+ u" |荧光量子产率:fluorescence quantum yield
! v' z1 @+ v+ l2 p6 G( D荧光熄灭法:fluorescence quemching method" ?2 t$ R/ I2 E2 ^
散射光:scattering light
* Y2 K$ I6 L$ o" |: l& K瑞利光:Reyleith scanttering light/ a4 z) i) K# x8 }' z9 S4 Y3 ~- S6 n9 H
拉曼光:Raman scattering light
# s' d- H4 p( |* w, {( l5 U第十四章 红外分光光度法7 b6 P) X2 @( H) j. i
红外线:infrared ray,IR
. V' k$ [! W. y+ e" d中红外吸收光谱:mid-infrared absorption spectrum,Mid-IR
& b. G$ f3 k: n- a远红外光谱:Far-IR0 `# l# s- d% N: p: e
微波谱:microwave spectrum,MV) p* Y) }: E8 u7 s, t8 J
红外吸收光谱法:infrared spectroscopy
6 y2 C& \1 l( U# D4 ~红外分光光度法:infrared spectrophotometry
; N1 B9 }$ C0 h3 @( G& R3 o) b% w, C振动形式:mode of vibration# @9 M% s1 | i- A
伸缩振动:stretching vibration% N3 a6 a- D: S
对称伸缩振动:symmetrical stretching vibration
6 q1 ], M& f& C0 s- X) W不对称伸缩振动:asymmetrical stretching vibration' d2 N" E7 w7 O; N8 v
弯曲振动:bending vibration+ F. L0 z; L" [+ R. R( h
变形振动:formation vibration2 V) u" f+ v, w1 d; }) H: P# g
面内弯曲振动:in-plane bending vibration,β
5 N/ Q; P( \0 Z1 Y0 |) \: R剪式振动:scissoring vibration,δ
0 L' J8 K/ n) v2 a! c/ H4 {+ `面内摇摆振动:rocking vibration,ρ: G/ B2 F/ n% Z! c4 M: c+ F
面外弯曲振动:out-of-plane bending vibration,γ/ k5 p. `$ f5 X9 [; P) q% |
面外摇摆振动:wagging vibration,ω* I2 l2 H7 L2 s& l9 Z) P
蜷曲振动:twisting vibration ,τ6 v6 O# c) z7 a
对称变形振动:symmetrical deformation vibration ,δs
1 w( ~4 H8 w+ L& G9 \2 q+ p不对称变形振动:asymmetrical deformation vibration, δas
0 |$ U6 p1 V1 w, z& z, K特征吸收峰:charateristic avsorption band6 M" @. r% w5 T
特征频率:characteristic frequency0 | h J$ W# O& N
相关吸收峰:correlation absorption band
- ~( [( H2 c2 e/ x" w; Q( h杂化影响:hybridization affect
- O: H1 o/ z3 o! e0 i" S" A环大小效应:ring size effect
; I7 d8 \/ u/ |6 u" }) S9 H吸收峰的强度:intensity of absorption band2 P2 S. e F7 ^7 p& m1 B
环折叠振动:ring prckering vibration
4 h% T% a4 k3 k# G* P* ^% l
" W" a! P; K# O第十五章 原子吸收分光光度法
9 [$ k* d7 v: n, ?8 ~4 S2 p; b原子光谱法:atomic spectroscopy
/ f( E: F/ } w. N原子吸收分光光度法:atomic absorption spectrophotometry,AAS
: M0 ]5 F! n8 U) T& i6 j5 V) z, j原子发射分光光度法:atomic emmsion spectrophotometry,AES6 j2 w- C. E/ I
原子荧光分光光度法:atomic fluorescence spectrophotometry,AFS
, t/ B% w& A( [- T" H) m% q' ?2 U* f1 l
第十六章 核磁共振波谱法
! O' |) U$ ?0 F5 O$ i* N核磁共振:nuclear magnetic resonance,NMR1 ]* `) v. T9 |! l9 [. t5 K
核磁共振波谱:NMR spectrum/ e, e5 d( X0 A, y9 Z3 q/ q) i0 o
核磁共振波谱法:NMR spectroscopy
/ |! T3 _$ p' t; J8 b! l* p: a l扫场:swept field# y1 v" w! Y2 Z j% n/ h
扫频:seept frequency. Y9 W% B- F) ]1 D$ v- q! [
连续波核磁共振:continuous wave NMR,CW NMR" T4 F0 ~ p0 H3 r3 E3 }
Fourier变换NMR:PFT-NMR,FT-NMR
' \# K" T1 r3 f5 O; ^8 d二维核磁共振谱:2D-NMR
8 ] {& U j+ J" V* Z* }2 ~质子核磁共振谱:proton magnetic resonance spectrum,PMR# c% p* P- F* P' @3 q- A( Z x
氢谱:1H-NMR
% w# A& R: N5 E- Z8 f E碳-13核磁共振谱:13C-NMR spectrum,13CNMR7 x* Q; ^% j. \4 C: y1 O$ Y
自旋角动量:spin angular momentum
6 H1 a5 t# G! Y磁旋比:magnetogyric ratio/ i6 \' @, G: a0 M8 G; c& u, q
磁量子数:magnetic quantum number,m
) v. x8 Y2 D2 V" M) F' @% d进动:precession+ E3 q' `# D+ ]$ u1 H2 O: u8 w
弛豫历程:relaxation mechanism
5 g9 W" y& K, }( C: c* W局部抗磁屏蔽:local diamagnetic shielding) a+ Q3 y4 L8 ]+ o* }
屏蔽常数:shielding constant* Y% f9 W9 ]( p K$ _; S1 T
化学位移:chemical shift
* D _6 I& s% u3 \7 t& K9 k国际纯粹与应用化学协会:IUPAC
8 m1 O4 F8 C" g9 B/ ]) E0 X磁各向异性:magnetic anisotropy9 R+ p- M6 X$ R! d
远程屏蔽效应:long range shielding effect
8 u4 I. w# V$ W8 ?: k结面:nodal plane
9 N0 ~, t( t+ Q9 j" d" J- c自旋-自旋偶合:spin-spin coupling
. W% a" m- N( u0 v自旋-自旋分裂:spin=spin splitting
1 f% i H* o' _, a' {单峰:singlet,s
8 ^# ~& B+ J9 z: Y3 g$ Y2 f$ E双峰:doublet,d
Z, R H$ _# v. j. p& B三重峰:triplet,t
+ [) }; Q6 `; P' {四重峰:quartet
6 i( M; r( k+ `$ l0 _3 M, i8 O五重峰:quintet, r* C: J% M& C" [; E
六重峰:sextet
7 q' \: \9 d+ j0 x偕偶:geminal coupling9 L9 b1 a: M! }1 T- m
邻偶:vicinal coupling
?2 `+ f& h# @" N. J远程偶合:long range coupling4 c% @7 `, Z! n8 `2 e$ R: r
磁等价:magnetic eqivalence8 K% I5 K- D y' P" i
自旋系统:spin system: t/ f* f) g _" c% A; W5 I: p
一级光谱:first order spectrum+ n! W4 l% L3 s& X$ I
二级光谱(二级图谱):second order spectrum) b6 ?0 k2 f; _, C. k" o
C-H光谱:C-H correlated spectroscopy,C-H COSY+ y" H$ n% v% z
$ w" D) k) g9 D6 e, f9 V: ^第十七章 质谱法7 e/ [/ r$ T- I: b0 K* h
质谱分析法:mass spectrometry1 _" c1 E% J$ g, U1 ?" ^9 {' o
质谱:mass spectrum,MS9 [3 O5 m" _6 U9 g9 _1 x; K
棒图:bar graph
- u# x/ G# T' G选择离子检测:selected ion monitoring ,SIM
z$ x% Z: v {直接进样:direct probe inlet ,DPI
8 M6 h, q, O+ b6 v接口:interface
l& e8 p+ N: _气相色谱-质谱联用:gas chromatography-mass spectrometry,GC-MS
* P! X( W8 j& q5 O+ Q( z% A, }* f1 g- U9 a高效液相色谱-质谱联用:high performance liquid chromatography-mass spectrometry,HPLC-MS% _- {' G6 g4 h+ t
电子轰击离子源:electron impact source,EI
) P0 M: V: \8 S& j2 O d( C: b离子峰:quasi-molecular ions
8 l& a9 B/ r! v* O* @/ J& b化学离子源:chemical ionization source,CI
! ?% q& Y( h* _1 i6 O* P/ j场电离:field ionization,FI% Z+ g9 i+ \6 v: a7 p4 f" m
场解析:field desorptiion,FD$ o. D+ P% ~ H. M& x+ f- S
快速原子轰击离子源:fast stom bombardment ,FAB I2 d' u5 B7 e: @" ]/ v4 n) Z
质量分析器:mass analyzer
. T! J! |4 Q# p/ B" m! P! I磁质谱仪:magnetic-sector mass spectrometer
; d$ a4 l' W, i5 e+ s) h' L四极杆质谱仪(四极质谱仪):quadrupole mass spectrometer' n5 m7 d1 `) {% ^6 v5 R! I
原子质量单位:amu: u# U1 v& \6 D; n: o, u3 r
离子丰度:ion abundance& t2 T; Y/ b: |* Y$ ~
相对丰度(相对强度):relative avundance7 U9 O# C8 Q2 a1 i" q7 M
基峰:base peak
! m w9 d' U: O! r* S& G6 y质量范围:mass range+ I- w9 P' F: ]9 `& R
分辨率:resolution
, f# R% i3 {$ k3 Z) }+ w" e4 j( {灵敏度:sensitivity
2 Q0 m( [& O" F信噪比:S/N" k. S* @; `4 ^5 ]8 f
分子离子:molecular ion
: z1 b3 g/ Q( c, @( _碎片离子:fragment ion
" \/ \5 }5 @6 f+ J+ y; k: ?* B( t同位素离子:isotopic ion
' f7 ?8 f; F. D& U, T) q; b1 k亚稳离子:metastable ion
! X+ [: |0 Q8 Q9 x6 t亚稳峰:metastable peak
# ]( s7 o: h$ `7 e! }- @5 f- R母离子:paren ion
7 v8 J. s8 n' ^6 B8 i子离子:daughter& Z' \; S) N8 U$ J" z7 ? [
含奇数个电子的离子:odd electron! v+ r3 c* c! e( {( r
含偶数个电子的离子:even eletron,EE
* ~) r. a# R3 F2 o) S) z. N5 T均裂:homolytic cleavage
4 Q- f! G% K- z* X# U9 w: ]! c3 i异裂(非均裂):heterolytic cleavage
$ w% ?9 @3 a" q' U半均裂:hemi-homolysis cleavage
7 g+ ~7 N l0 R重排:rearragement, v8 l! ~! v- G- ]7 A4 @+ R6 l& \
分子量:MW
2 I% @3 ^) f0 e8 P1 U2 c4 P# {α-裂解:α-cleavage
! }) [3 g/ [! f0 ~" h' }( S8 t- f; D8 M; q
第十八章 色谱分析法概论
3 b; h3 p5 a% L& I+ s% B色谱法(层析法):chromatography9 I4 u% m0 y# [0 V
固定相:stationary phase# ]! S% f7 v- S3 M( J
流动相:mobile phase
( b: T! Q5 f/ {7 d0 c. _% W x超临界流体色谱法:SFC
7 Q& P0 k. E e# d9 A高效毛细管电泳法:high performance capillary electroporesis,HPEC. U8 t4 w4 L( p0 c4 u1 n
气相色谱法:gas chromatography,GC
8 @ x8 }$ @3 q9 Y液相色谱法:liquid cromatography,LC% }" Y$ f; K2 [, v9 E! }
超临界流体色谱法:supercritical fluid chromatography,SFC1 n& S, j/ `2 r* x* n( J+ l
气-固色谱法:GSC, l0 Q0 i( i! \% z8 [/ s$ p
气-液色谱法:GLC
: h# a1 l. T. W" J液-固色谱法:LSC1 ]7 r& ` b! l& }4 Z
液-液色谱法:LLC
& \6 D" v2 C4 d8 R8 a柱色谱法:column chromatography
) V3 T2 g; ?( d9 P! H填充柱:packed column
2 x4 F# E$ [) Q) c1 g毛细管柱:capillary column
7 b0 j1 y7 C5 A `" n5 N微填充柱:icrobore packed column$ x6 @. U: i2 `. f- N& d" e/ k
高效液相色谱法:high performance liquid chromatography,HPLC
5 M$ n; ^* n, T$ }平板色谱法:planar) r" V3 f$ F$ C7 v
平板色谱法:plane chromatography
, t1 M$ D# m" K i; l2 c4 O纸色谱法:paper chromatography
: f7 H/ z! P" \ p; b1 j8 d5 g薄层色谱法:thin layer chromatography,TLC, _1 p8 c/ B4 T# f |1 V
薄膜色谱法;thiin film chomatography
1 d7 ]' R E1 A( ^$ i# V$ E毛细管电泳法:capillary electrophoresis,CE b, ^5 u$ }3 h" b$ ?7 R; \
分配色谱法:partition chromatography
9 w( s) w' S. z' A! C, T9 \: [吸附色谱法:adsorpion chromaography7 f# U/ w/ v. G% e4 |
离子交换色谱法:ion exchange chromatography,IEC0 \3 H% q0 r8 S% c; V) D& y& u. ]& O
空间排阻色谱法:steric exclusion chromatography,SEC
& ]- p7 \; Y) a$ A2 Y2 G0 {亲和色谱法:affinity chromatography1 y6 f* S7 I" L1 F
分配系数:distribution cofficient l! W8 u# W6 W
狭义分配系数:partition coefficient
9 n: r4 W9 M" V5 x凝胶色谱法:gel chromatography
; b- W! Y0 X" u凝胶渗透色谱法:gel permeation chromatography,GPC
# R+ M( d! s- b凝胶过滤色谱法:gel filtration chromatography,GFC
. r. ?$ M! j9 e1 [渗透系数:permeation coefficien;Kp& G) S. G7 z R6 L1 V6 J
化学键合相色谱法:chemically bonded-phase chromatography3 H3 W0 R' K+ r
分配系数:distribution coefficient+ Q* E" c- d4 X, ]
靛菁绿:indocyanine( E6 X/ F3 L- b. E0 r0 O
气相色谱-傅立叶变换红外光谱:GC-FTIR. }, X% L+ Q. M2 _- q
7 u5 s! V! `( ^, a$ h9 N
第十九章 经典液相色谱法8 Y% c1 x& X& t3 J6 `* f/ ~
薄层色谱法:TLC
* c$ r- S( [1 Y1 Y! \1 i9 w吸附:adsorption9 u# s# h$ ?7 s+ b' f l) S. Y3 W
活化:activation
/ e& q/ Z( h% r" m& V) k' F- P脱活性:deactivation
. o E! W" y, ^2 F7 ^交联度:degree of cross linking
" j0 M6 U) W6 [! N' h( I) u4 ?交换容量:exchange capacity5 V3 m! S1 [5 h5 E# i
薄层板:thin layer plate) ~5 D2 u n, G
展开剂:developing solvent ,developer: L4 \( l+ f: d/ E
临界胶束浓度:criticak micolle concentration ,CMC- V- r: q: g2 z* G7 Q- w
相对比移值:relative Rf, Rr1 W, t V/ Q7 Q$ y# H
分离度:resolution ,R) v- G- L, K# E7 i8 e
分离数:separation number,SN
' P8 A2 R* d( K6 z" `煅石膏:Gypsum! N2 n/ \$ ~% Z; @, p- D
羧甲基纤维素钠:CMC-Na9 r/ f+ m! G0 x. O5 p @+ Z
吸收光谱联用:TLC-UV4 I7 \" N- O/ `" O( Y( }2 w) E' q
薄层色谱-荧光联用:TLC-F& [4 V- n, C4 k- v0 t
薄层色谱-红外吸收光谱联用:TLC-IR
0 R6 c% @0 S: p9 N8 m薄层色谱法:TLC-MS' x0 P& G* S+ a/ e
纸色谱法:paper chromatography
2 I9 k: N9 n/ `$ {1 F+ {7 x' g4 e上行展开:ascending development - a$ u: J/ z# y: i9 k/ o/ b
下行法展开:descending development
: L7 T% B' c2 [# J k双向展开:two dimensional develoooment
$ Q7 k3 I q: x7 F( H1 c6 `6 Q+ E7 |. |9 i! |3 ?% b1 j
第二十章 气相色谱法! q' i6 e4 {' N9 G
气相色谱法:gas chromatography
3 U0 R7 b+ G8 b% U& m2 y前延峰:leading peak; Q* Y2 U9 n4 @2 U; i2 @
拖尾峰:tailing peak
3 f: R7 H; A0 D h- o) \对称因子:symmetry factor,fs
. g. V4 K7 o# V: f+ [; h保留时间:retention time& X |) p. ` I5 v: ^
保留体积:retention volume0 k# J1 s( o7 t- E2 q: b) T& k: e7 m
死时间:dead time
! G: n$ F3 y% X4 T* F调整保留时间:asjusted retention time" j& m. J4 {& Y
半峰宽:peak width at half height,W1/2 or Y1/2! [' W, e) o) t; F$ o
峰宽:peak width,W
' ^, K4 X4 O; Z( J( x) p- z. L等温线:isotherm
& K$ l# q) {5 e; `4 O3 @+ T& q; w理论塔板高度:height equivalent to atheoretical plate
( ]: q# s( \0 p5 I/ T5 o化学键合相:chemically bonded phase2 B( l3 i- u# q: ^9 G# B" W3 B
丁二酸二乙二醇聚酯:polydiethylene glycol succinate,PDEGS,DEGS8 H6 m4 s. X! Z9 i$ {4 E# \
高分子多孔微球:GDX
7 J0 v" k7 Z+ s7 P' W3 R苯乙烯:STY) v) A# y }: n; }/ U$ B
乙基乙烯苯:EST( f/ a1 p& z; g |( \2 w/ ?. ^
二乙烯苯:DVB
4 Y8 u& |/ A2 j8 g* ]涂壁毛细管柱:wall coated open tubular column,WCOT
( d* y4 ~" H: ]1 y: C! S; w% }载体涂层毛细管柱:supprot coated open tubular column,SCOT5 t9 R" `5 @0 K: d, a0 b4 C8 K% i
热导检测器:thermal conductivity detector,TCD) y4 [& d0 v1 |7 ? e: z
氢焰离子化检测器:hydrogen flame ionization detector,FID
$ [6 b) F' I* R' ]% Q, N电子捕获检测器:electron capture detector ,ECD
& R- x0 m) C0 m" c噪声:noise,N
6 I6 o- D8 {# U. z$ {! _! g漂移:drift,d
9 ^* V; Q. y, t9 }& S+ d8 _2 n灵敏度:sensitivity
: f9 M/ W4 e9 ~& T2 D7 c7 @检测限(敏感度):detectability,D,M; A/ W( Q! ~5 `+ w1 ?) l
分离度:resolution
( j, T- B# J$ c/ X4 w5 o归一化法:normalization method
' e, E! e) L Y& C外标法:external standardization
) d; P1 r4 m2 J5 P* @4 I4 a7 B6 c& r2 Z
第二十一章 高效液相色谱法
2 i) a2 J' J% s, e2 R高效液相色谱法:high performance liquid chromatography,HPLC
3 F2 r& T0 w6 ~9 T3 I高速液相色谱法:high speed LC,HSLC' t: o- \% Y7 r# X5 r- I
高压液相色谱法:high pressure LC,HPLC, ], }- P' O/ m, u C/ c3 G
高分辨液相色谱法:high resolution LC,HRLC! ?/ G8 \6 A6 d7 j% j" F! O$ x
液固吸附色谱法(液固色谱法):liquid-solid adsorption chromatography,LSC2 X( l6 n* V5 u7 f, ?
液液色谱法:liquid-liquid chromatography,LLC
; T! p/ p1 @( o P% r4 U正相:normal phase,NP
Y+ R. n2 F( o$ m4 v反相:reversed phase,RP& A) f) Y$ u A, Q, b$ C* l+ n0 T% P) _# u
化学键合相色谱法:bonded phase chromatography,BPC- r% {; v& b! {, v2 i5 `
十八烷基:octadecylselyl,ODS
* q( ]& S( U& N离子对色谱法:paired ion chromatography,PIC7 T K* Q. G! p- e+ b
反相离子对色谱法:RPIC( S& B% M, A+ _ y. |, J: p/ d
离子抑制色谱法:ion suppression chromatography,ISC$ m/ W8 K: O# q9 D. K# X, k
离子色谱法:ion chromatography,IC
7 n# n9 F% |: W! Y+ V# k, h% P手性色谱法:chiral chromatography,CC( a& p8 ]9 N' U' f y5 j
环糊精色谱法:cyclodextrin chromatography,CDC l" g- h4 Y( N. t
胶束色谱法:micellar chromatography,MC
9 d/ D) F) S/ t6 t( p9 u亲和色谱法:affinity chromatography,AC
- E+ B. t4 Q5 ~6 ^& p C, h2 _" p固定相:stationary phase6 x1 N- D t$ Y
化学键合相:chemically bonde phase
; R' ?' h: ]: M# p封尾、封顶、遮盖:end capping- O6 m! o, p( S3 e
手性固定相:chiral stationary phase,CSP7 N( _: t5 c6 }
恒组成溶剂洗脱:isocraic elution. n: j$ x0 Z; [$ s7 U% v4 b; ]
梯度洗脱:gradient elution' b9 O5 I# ?) i' ^# ~" ^& C7 A
紫外检测器:ultraviolet detector,UVD
& n4 \. S4 R& c7 g/ `% i* r# L荧光检测器:fluorophotomeric detector,FD
4 f' z6 H6 J. ?' {电化学检测器:ECD
+ o) D8 W, t8 N e h示差折光检测器:RID6 P) u% Z3 x; l, N% O
光电二极管检测器:photodiode array detector ,DAD' k& P6 K) Y. w. U' Q1 L
三维光谱-波谱图:3D-spectrochromatogram8 |1 ~5 r# ~: f8 @; H7 G& L
蒸发光散射检测器:evaporative light scattering detector,ELSD! a- I. W1 v' w# f8 |
安培检测器:ampere detector,AD0 a% B$ y: ]1 {+ m! `3 f, ]; p
高效毛细管电泳法:high performance capillary electrophoresis,HPCE, D$ T' k8 p% E [! Y
淌度:mobility# d/ a% \3 S3 i4 p, l, @0 z
电泳:electrophoresis+ O7 a" G6 D' R6 u+ L- N3 H1 _
电渗:electroosmosis9 ]. @, I; R& B+ L! |- Z) H1 D
动力进样:hydrodynamic injection, A& \% z% n" `$ }. Q
电动进样:electrokinetic injection7 `! D$ g: W9 A2 S. p) Q. L6 {
毛细管区带电泳法:capillary zone electrophoresis,CZE
1 o7 S$ @. E% Q5 x胶束电动毛细管色谱:micellar electrokinetic capillary chromatography,MECC9 U9 p) m& M; t' ~! Y+ G, t
毛细管凝胶电泳:capillary gel electrophoresis,CGE! h* d0 I1 i& i4 X
筛分:sieving( o/ v5 ~6 d6 O3 U
; G( i" @* N/ P$ i T3 Y+ [
绪论
* a$ k. T5 v+ ?& G释药系统(drug delivery system,DDS)
- I9 l1 ?4 a+ ~中国药典(Chinese Pharmacopoeia,ChP)
% ]% B( I2 {( `: f! g7 w美国药典(The United States Pharmacopoeia,USP)- O% r4 g8 ?! Y2 J$ `" B0 m5 k
美国国家处方集(The National Formulary,NF)
( ]) D2 F3 [ n; h5 r2 y# U- H英国药典(British Pharmacopoeia,BP)
; |5 L# o; f( X+ C7 |欧洲药典(European Pharmacopoeia,Ph.Eup)4 Z' i9 B" A9 n3 c+ v
国际药典(The International Pharmacopoeia,Ph.Int)9 D! ]; b* \2 ?7 J! A* C! M; M
良好药品实验研究规范(Good Laboratory Practice,GLP)
4 e+ p, [5 g4 k Z. c. J" E- y良好药品生产规范(Good Manufacture Practice,GMP)+ N+ O+ Y* c0 Z+ r& Y2 D7 Y
良好药品供应规范(Good Supply Practice,GSP)& _: J4 B6 [4 i B" S2 P
良好药品临床试验规范(Good Clinical Practice,GCP)
% G2 d* ]. F7 `" S, \7 z分析质量管理(Analytical Quality Control,AQC)
# J5 n" F3 Z" r1 P: j; f- a* [3 w第1章 药物的鉴别试验. x2 Z1 U" s1 v) H: M
药物的鉴别试验identification test' K& h7 K/ g& n* j
一般鉴别试验general identification test' j2 S( x9 k/ k/ p
专属鉴别试验specific identification test3 f3 @! R8 m- x+ z
灵敏度sensitivity
( U- ~3 u1 _* J6 K' b7 C9 \" ]& A最低检出量minimum detectable quantity G( P4 w4 m' [, o' J: P2 j
最低检出浓度minimum detectable concentration
5 z' {+ B. h1 x1 f1 c/ F第2章 药物的杂质检查 y# l2 g- K& ]
巯基醋酸mercaptoacetic acid. u+ m. X! u# H
古蔡Gutzeit* g6 s( Q+ C# v* \9 n* n6 X {4 g( q
二乙基二硫代氨基甲酸银siliver diethyldithio-carbamate$ _8 t# t5 h+ ]- E s) ~0 n" U
硫酸灰分sulphated ash
% \$ ?/ c' i F- G炽灼残渣residue on ignition
5 p' e$ D1 g6 u热重分析法thermogravimetric analysis,TGA
% H7 e+ b9 P) P2 H5 u9 Z差示热分析法differential thermal analysis,DTA
2 p/ ^) v) E: d/ i, d3 n7 F/ M差示扫描量热法differential scanning calorimetry,DSC
: G# ~3 C& t9 |% X+ o$ |/ [3 `碱性酒石酸铜试验Fehling’s reagent, V' q' v6 @/ d- N
异红紫酸盐isopurpurate/ Y" k. e% W5 ]
2,3-二氨基萘2,3-diaminonaphthalene
# e9 d* Q) h4 l+ [4,5-苯并苯硒二唑4,5-benzopiazselenol
% p1 ~1 r' h8 Z* f; t5 p0 D: O第三章 定量分析样品前处理与测定方法的效能指标- d9 A; P/ K: @
汞齐化法amalgamation method, |) s {+ D. o! O4 @
氧瓶燃烧法oxygen flask combustion method1 c H/ i- q. a5 U; T O d# ]$ o
葡萄糖醛酸甙glucuronides
( | V F. M! p2 k9 R硫酸酯sulphates
( S( e! w; R; P9 c Y$ p9 a+ A& W血浆plasma
( t8 ` ]7 J* A# }血清serum W* C0 y. o1 [' g9 c: W
全血whole blood
1 M, a& Y" Z8 l, f7 f3 W治疗药物浓度监测therapeutic drug monitoring,TDM k' T2 s2 v. w2 A2 f
结合bound
+ d" N/ Y0 u3 l+ l游离free
/ j8 r& j( j9 m" T# T6 S缀合物conjugate, m. V' t% L9 F; F/ W6 ]
液-液提取法liquid-liquid extraction,LLE* z2 N% K/ S* R7 h) y# D1 J* Z+ G
离子对试剂ion pair reagent, g Q& E+ V) U7 i3 ^6 R& X" u3 S
离子对提取法ion pair extraction method
; t" c! E! |2 R9 s反离子counter+ Y2 S# Q8 ?6 M
液-固提取法liquid-solid extraction LSE
0 j4 x, c+ x( M4 a半自动样品制备系统advanced automated sample processor,AASP; b0 ?: Q Q7 B
烷基化alkylations( O* r! ?+ \3 N# R) ?# F
酰基化acylations/ v% y1 @- h3 {6 D, s4 K
硅烷化silylations% y, R3 l! l! |% I* x
精密度precision U4 c( y& C8 g0 F' D
标准差standard deviation,SD orS5 R0 y R% W2 C% x' p
相对标准差relative standard deviation,RSD
1 U- z) r+ p" G% C, B& H变异系数coefficient of variation,CV/ t, Y8 g% p; H' P$ s
批内精密度within-run precision
?, e4 G. ~4 e7 n8 J! h日内精密度within-day precision" g7 @1 l! v( F
批间精密度between-run precision; H5 l7 Z: ~ k! Y
日间精密度day to day precision
: s4 o% C I/ C8 Z p& \准确度accuracy) Z% s. F f* e' p) Y7 I
定量限limit of quantitation,LOQ- A. ~0 ?' v6 p* L6 h
检测限limit of detection,LOD
8 y) {0 _' L( {8 _选择性selectivity
% }$ D& c3 }3 B" m专属性specificity
1 r2 }7 Z. u: E+ ^线性与范围linearity and range! x# u+ C n8 g* f5 l7 U
重现性ruggedness' g6 X) @- o# g
耐用性robustness' p1 q9 h3 I8 q( P9 l. n& ~
散布图scatter diagram
, x3 p' {4 [* X4 l9 \, g2 Q荧光偏振免疫测定法fluorescence polarization immunoassay,FPIA" J) r, `+ L: n! i# G O" I" P0 d
第4章 巴比妥类药物的分析
2 A4 [! O/ |; {8 f$ x溴化十六烷基三甲基苄铵cetyltrimethylbenzylammonium bromide,CTMA" q; l4 B$ V: p# A
氯化四癸基二甲基苄铵Tetradacyldimethybenzylammonium chloride,TDBA! a" A" r/ G& V0 W# D# G
第5章 芳酸及其酯类药物的分析
4 ~1 ?# D/ E/ B, v/ w苯甲酸及其钠盐benzoic acid and sodium benzoate3 w& H; x% _' }2 ]. Y
布美他尼bumetanide
. i$ { Z4 i. h羟苯乙酯ethylparoben
+ ^4 Z9 C6 Q/ y- }& X丙磺舒probenecid
# b9 B7 s& p- x/ w酚黄乙胺etamsylate
3 E7 I# G$ Z# H第6章 胺类药物的分析 x8 |6 Z1 i H& M" p0 V
第七章 杂环类药物的分析
! k' Y) Q$ _+ H/ v% c二硝基氯苯反应Vongerichten反应
5 G2 U C& V: r% F/ [1 ~戊烯二醛反应K?nig反应
( P) c; e0 O5 s. S第8章 生物碱类药物的分析3 v4 _$ ?6 N, r5 u1 K% @
生物碱alkaloids0 R4 P9 }: [& T3 _- C4 G7 M
阿片gum opium3 R" V* g# a. F. L
扫尾剂tailing-suppressing reagent
2 y2 B! \0 O/ F& {& q蒂巴因thebaine
5 K# G1 d5 M }' K& t: _; ?& P诺司卡品noscapine" X0 a& f3 g, P2 o7 k" p6 j6 f6 M
竞争离子competing ions
1 R" h0 B+ C+ z& i- |+ U亲脂性lipophicity* a# H+ @9 W+ P! k
拖尾因子tailing factor% N( o& O# _9 e& T+ X. S5 w( y
金刚烷adamantane) ]9 c1 Z$ H( k* O' ?8 J
第9章 维生素类药物的分析* }0 C! Q d. x$ F6 T [2 S) e3 R; h0 X
维生素vitamin) p1 ]" ]( i( H3 w- C5 V* G
去氢维生素A dehydroretinol( J9 Y, T8 }9 d7 L9 ]
去水维生素A anhydroretinol
B! \7 B. \% o/ v" y S2 v, d4 \ z2 C鲸醇kitol
; g3 ]) w% ]2 \$ ?/ z5 n% {三氯化锑反应Carr-Price反应8 h. V" U) ^* [
维生素B1 thiamine hydrochloride;盐酸硫胺* ]6 V4 `7 U% W2 \
2,3,5-三苯基氯化四氮唑 2,3,5-triphenyltetrazolium chlorid,TTC
4 X/ T5 f5 T. Y/ [8 z( {# U- K红四氮唑red tetrazoline,RT5 e8 a) a4 U8 H5 h2 j; F
蓝四氮唑blue tetrazoline,BT9 A0 p# G- N, }% u1 ?9 Y. c
3,3’-二甲基氧苯基-双-4,4’-(3,5-二苯基)氯化四氮唑{3,3’-dianisole-bis[4,4’-(3,5-dipheny)tetrazolium chloride]}
' N# w; I7 B, z6 Z% j; M" ?有色甲 ……formazan
4 P5 n h/ j$ T; _铁-酚试剂iron-phenol reagent
; R/ S8 @! \) a0 r- B铁-柯柏试剂iron-Kober reagent( l3 s% J4 W- L5 I5 ?5 \
第十一章 抗生素类药物的分析0 i1 I2 R7 _3 i2 x1 g/ |
6-氨基青霉烷酸6-aminopenicillanic acid,6-APA: g* ~! Z: ]& w- T
7-氨基头孢菌烷酸7-aminocephalosporanic acid,7-ACA
( `8 D8 a, } B" u% x* }& P* p3 t氨苄西林ampicillin2 O8 }7 m* J0 z: `: A; M' L
5-甲基-3-邻氯苯基-4-异……唑青霉素钠cloxacillin sodium
* ]9 N3 E) [- _6 q e. K羟氨苄青霉素amoxicillin7 K) ~7 s$ p6 N; u) n8 R( L
氨基糖甙类抗生素aminoglycosides antibiotics
. U% c1 Z1 v; s8 b5 q$ @5 L7 `链霉素streptomycin
( T4 g- z |) q- h8 K% N麦芽酚maltol
b k: F7 W% J+ w( v4 |0 tN-甲基葡萄糖胺反应Elson-Morgan反应
" e+ u. c8 n7 n* \$ b坂口反应 Sakaguchi反应
+ t! |" E S ^; o7 i3 C庆大霉素gentamycin6 x% E1 k# f# S7 L" z
四环素类tetracyclines
$ B% {7 T& c+ j$ w$ C% n. h3 z4-差向脱水四环素 4-ejpianhydrotetracycline,EATC/ @+ Z% Q4 \ l# X% N6 c
第十二章 药物制剂分析 % v& x" X: y) P5 y) R, M! t
含量均匀度content uniformity& F7 Q- K, V9 s
溶出度dissulution
0 ]( _# m9 ~ ]% f& ~" }' X离子对高效液相色谱法ion-pair,HPLC% T$ B4 d7 s" a! t$ {, L# {
第十三章 生化药物分析概论
3 U! s$ B6 ?3 x, o& w3 a, A7 {, f( N1 ?第十四章 中药制剂分析概论
1 \& ]7 @0 B& r0 E S超临界流体萃取supercritical fluid extraction,SFE
/ |: `0 ~. n6 O过弗罗里Florisil. U' X# ^5 t( [7 Y; Z. L
第十五章 药品质量标准的制定2 _% S; c. Y0 x8 C! y& h m# d& V7 E
国际非专利药名International Names for Pharmaceutical Substances,INN
3 f( R: X1 i0 N& v- r去氧麻黄碱Metamfetaminum
& l: ~8 U" O/ L' ~$ g1 Q% {: z; `国际理论和应用化学联合会International Union of Pure and Applied Chemistry,IUPAC
E* ^. ~1 Q% U2 _! u; M1 d( F9 I有机化学命名原则Nomenclature of Organic Chemistry
# _5 ^, N# u- y, k" w可待因Codeinum6 B- [9 c8 f K* l9 T
地塞米松Dexamethasonum' F1 e0 d" o M9 w
氯……Chloroquinum
6 |% ]& c ?7 {) G青蒿素Artemisininum5 D: n8 _3 P; l) m+ o2 W
吗啡Morphinum
. a' y3 B+ o& T$ P$ ]9 H苯扎溴铵Benzalkonii Bromidum! L% G) t) p/ x
1-(3,4-二羟苯基)-2-氨基乙醇重酒石酸盐一水合物[1-(3,4-Dihydroxyphenyl)-2-Aminoethanol Bitartrate mono-hydrate]: I5 M% t+ D, s3 ]; |; p0 n
第十六章 药品质量控制中的新方法与新技术8 h. T- ]) M+ Z9 z. h
填充柱packed column
. _2 ?4 T7 D! ^4 m; W开管柱open tubular column/ h; ~* t3 Z( @6 [. E0 _
空心柱capillary column
+ \* l! S( t/ r( o, @) [熔融石英开管柱fused silica open tubular column,FSOT
7 b5 R5 J0 z' U- G: P6 r4 ?, |# O高分辨率气相色谱法high resolution gas chromatography,HRGC7 r# _) @( i! q& t+ v/ y
壁涂开管柱wall-coated open tubular column,WCOT柱
" @4 M- B3 u' Y固定化相开管柱immobilized phase open tubular column ,IPOT柱
6 {; S* _+ q$ c* W交联柱crosslinking column
$ x _6 b7 ~$ }7 ^* T键合相柱bonding phase column! \, B$ {; D |) n
不可提取相开管柱nonextractable phase open tubular column,NPOT柱' x5 C) N) m: F& ~, w
多孔层开管柱porous-layer open tubular column,PLOT柱, ~% N2 X2 j; S3 q4 H
担体涂渍开管柱support-coated open tubular column,SCOT柱
9 r% t, J6 m! c- V% |% \4 y分流进样split injection
, m' o5 O$ b1 a# B; ?* _不分流进样splitless injection, y8 F7 K W7 X1 H
柱头进样on-column injection
/ d7 e4 @; c5 p0 B- i直接进样direct injection0 R S G/ C* ^: c* h; V+ O
手性分离色谱chiral separation chromatography,CSC/ n( X5 Q9 ~6 U. c: e: n9 l V; z
普萘洛尔propranolol! w( G4 [% | v. l Q* L G8 j
沙粒度胺thalidomide
) m* i4 B+ X: }3 t测定对映体enantiomer
: H5 S9 N' K8 u; a) u手性固定化chiralstationary phase,CSP% R" }* W }/ E
手性衍生试剂chiral derivatization reagent,CDR
+ p8 f+ h# h9 Z9 {! Q# y非对映异构体diastereoisomer,DSTM
. L3 B: k& F; X% w! Q8 p, i% v6 D$ Q配基交换型手性添加剂chiral ligand-exchange complexes,CLEC: e' W/ C X1 o" @% Z
手性离子对络合剂chiralion pair complex,CIPC+ Z5 r: f# x: \: ~1 b; {
环糊精cyclodextrins,CD
1 ^. ^. P/ o; i; x* y! `葡聚糖sephadex- R1 A6 j4 `" z$ c G
配基交换剂ligand exchanger j' r. V) v& [ H4 Y
手性传荷charge transfer: g; q1 ]- S. U! F) J
(R)-N-3,5-二硝基苯甲酰苯基苷氨酸dimitrobenzyl phenylglycin;DNBPG
( t6 _1 O6 H2 e7 I6 @1 {9 `三点手性识别模式three-point chiral recognition model# _+ ^, s6 |% ~( s3 Q
噻吗洛尔thimolol
' z& l1 e, ]6 K3 [8 q% D$ ?9 ?曲洛磷胺trofosfamide8 V4 {1 d# ]" C+ j6 J4 O1 B) e
乙酰葡萄糖异硫氰酸酯(2,3,4,6-tetra-O-acetyl-β-D-glucopyranosylisothiocyanate,GITC
8 A6 N4 i3 N3 C a) q' f左旋比喹酮L-praziquantel
, J. g/ }0 W0 V比喹胺praziquanamine
3 y0 `. R2 ?. C4 S0 {7 J. `苯丙胺phenylpropamine
, _. x. Y9 u, Z3 m8 @# p9 Z异氰酸-α-萘酯(α-naphthylisocyanae,NI# b2 l6 W U+ I# i1 N* q8 B. i- g
美西律mexiletine
# R R( V+ Y; f! G& q" V5 U8 v氯胺酮ketamine
/ Y5 K, b7 t7 i0 T; |# n' O4 O本芴醇benflumelol$ W0 k7 ^+ k: ~: y5 n
苯丙醇phenyl propanol
5 z5 x+ {6 e" K$ l" X( A: {烯丙洛尔alprenolol
2 g2 w) ~5 M! M" L普萘洛尔propranolol, Y' l9 A) [& D+ z
氧烯洛尔 oxyprenolol8 X. {! g3 M7 \
麻黄碱ephedrine. J. P- h+ K8 i0 N7 ^) P# ^, J
毛细管电泳capillary electrophoresis,CE
# o( ~ J1 `& F6 y毛细管区带电泳capillary zone electrophoresis,CZE. |' i# H3 d) N s+ H% _
胶束动电毛细管色谱mcellar electrokinetic capillary chromatography,MECC% G& K) x4 E( i3 A1 H
胶束动电色谱miccellar electrokinetic chromatography,MEKC
* Z- f6 l# N: t0 s7 Q2 P0 V环糊精动电色谱cyclodextrins electrokinetic chromatography,CDEKC
" {: S& O" W9 j0 O离子交换动电色谱ion-exchange electrokinetic chromatography,IEEKC
$ s- R& P2 o" L5 m/ A0 q+ |8 B微滴乳状液动电色谱microemulsion electrokinetic chromatography,MEEKC
% d5 @+ I/ e5 d( i毛细管凝胶电泳capillary gel electrophoresis,CGE
0 v( `4 p# B- v' @) n( |毛细管等电聚焦capillary isoelectric focusing,CIEF1 g) d! D* h1 L/ N
毛细管等速电泳capillary isotachorphoresis,CITP6 S) V& k5 `9 _% `$ L6 |+ l
毛细管电色谱capillary electrochromatography ,CEC/ x6 q* \* g+ M. h' L
色谱响应函数chromatographic response function,CRF
; Y% I, {6 D6 j' t0 _6 l色谱优化函数chromatographic optimization function,COF
: _+ P( W' d$ J% a" Z% r2 b: ^5 p& {等级色谱响应函数hierarchical chromatographic response function,HCRF" B* s, \- ]; e$ X4 Y9 J6 v. u$ O
差示分光光度法difference spectrophotometry
8 @6 b3 [( k0 l近红外光谱near infra-red spectrum,NIRS
0 @5 j% a1 Q% J( B# R9 a中红外光谱mid infra-red spectrum,MIRS
# x& c) V# [) Y合谱combinations+ \$ Q+ W9 C& |
光谱匹配法spectral matching
2 R/ a0 G1 D, M# f4 J3 D匹配指数match index,M.I.
" A9 D6 [0 G. U' o0 O4 {* `, U主成分分析法principal component regression,PCR/ F9 }- |4 {7 ]% F; v3 O
人工神经网络方法artificial neural networks,ANN
' Y4 h Q- V2 ^8 |核磁共振nuclear magnetic resonance,NMR4 M* ^6 u7 d! c/ s' I
二维NMR two dimensional NMR
% E* k; G9 g1 K3 e六甲基三硅氧烷hexam ethylcyclotrisiloxane
. D2 j" d/ c6 R3 _) y吡嗪pyrazine
+ i5 c5 C$ d( w) ~普鲁卡因procaine. T; p) ?; G0 y6 b. N
色谱联用技术hyphenated techniques chromatography,HTC
" ~3 R) f P9 _* N! k# F% N1 Q7 `* t+ J接口interface
7 X4 }0 M4 M/ o. B% d+ V+ ]' Q重建色谱图reconstructive chromatogram
- {+ P' F! K3 Z1 r2 d* z4 T+ a, H* H( ? l+ A
命中质量系数hit quality index,HQI
1 j1 V7 j& S1 ^4 c5 j最小二乘方程序least squares algothm! `: ?* l6 n% s% g0 \: ~* B( ~( s
导数绝对值程序absolute derivative algothm: K ?* ^' Y$ d- ~0 x& S9 F
导数平方程序square derivative algothm
8 K+ \% K2 U8 w& @. t {8 P空心柱open tubular column,OTC5 X1 S) s" V8 z0 y9 D, U# d
总离子流total ion carrent,TIC
3 h8 \: S1 T* w* t+ f. `' i选择性离子监测xelected ion monitoring,SIM$ A, o3 m8 C4 ~& M% O6 p# |
多离子检测multiple ion detection,MID
1 B" s" ^% ~: U4 z& W6 m# G& y质量碎片图谱法mass fragmentography
. M7 [7 Z! b/ N2 I3 f* i冰片borneal
. _4 a# {; `/ o& T5 Z. A; `川芎嗪tetram ethyloyrazine,TMP
/ t6 R- T1 l( }) O0 y电子轰击离子化electron impact ionization,EI: [2 Q; {* L8 [" H/ |
化学离子化chemical ionization,CI( G0 ~9 }6 @; t" I
场解吸field desorption,EI
, f0 |* e# O% M快原子轰击fast atom bombardment,FAB
+ Z4 U: F. ~6 Z# V" D( |- y7 r1 @: ?热喷雾thermospray,TSP
& N" Y5 Z2 z1 F A* m! Y& R电喷雾electrospray,ESP
. K# W$ j; V5 w! v" Y大气压离子化atmospheric pressure ionization,API+ d: N* p+ Z6 \
粒子束接口partical beam
/ I4 }0 i% r' Z动态快原子轰击法FAB8 `% @5 ^, [/ g" E' y
离子喷雾接口ISP
2 M; {: ^3 X X4 c2 J- ?( e! V电子喷雾法ESP& W1 x# [& ^8 E- t$ Y P
大气压离子化接口API/ r1 B) k* a: }. k2 X# E
大气压化学电离APCI, I( V) c9 m, i1 H6 V( C
串联质谱MS-MS
, U. q" S; v9 { F/ Q7 a( N丽江山慈姑Iphigenia indica Kunth et Benth
( B. c9 o4 ~6 Y2 ~; F托非索泮tofisopam |
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